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SECTION I I
MATERIALS
Par t D
Proper t ies (Met r ic)
ASME BPVC. I I .D.M-2019
2019 ASME Boiler andPressure Vessel Code
An International Code
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Markings  such as  “ASME,”  “ASME Standard,” or any other marking  including  “ASME,” ASME 
logos, or the ASME Single Certification Mark shall not be used on any item that is not constructed 
in accordance with all of the applicable requirements of the Code or Standard. Use of ASME’s 
name or logos or of the ASME Single Certification Mark requires formal ASME certification; if no 
certification program is available, such ASME markings may not be used. (For Certification and 
Accreditation Programs, see https://www.asme.org/shop/certification‐accreditation.) 
 
Items produced by parties not formally possessing an ASME Certificate may not be described, 
either explicitly or implicitly, as ASME certified or approved in any code forms or other document. 
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II
MATERIALS
Part D
Properties (Metric)
ASME Boiler and Pressure Vessel Committee
on Materials
AN INTERNATIONAL CODE
2019 ASME Boiler &
Pressure Vessel Code
2019 Edition July 1, 2019
Two Park Avenue • New York, NY • 10016 USA
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Date of Issuance: July 1, 2019
This international code or standard was developed under procedures accredited as meeting the criteria for
American National Standards and it is an American National Standard. The Standards Committee that approved
the code or standard was balanced to assure that individuals from competent and concerned interests have
had an opportunity to participate. The proposed code or standard was made available for public review and com-
ment that provides an opportunity for additional public input from industry, academia, regulatory agencies, and
the public-at-large.
ASME does not “approve," "certify," “rate,” or “endorse” any item, construction, proprietary device, or activity.
ASME does not take any position with respect to the validity of any patent rights asserted in connection with any
items mentioned in this document, and does not undertake to insure anyone utilizing a standard against liability
for infringement of any applicable letters patent, nor assume any such liability. Users of a code or standard are
expressly advised that determination of the validity of any such patent rights, and the risk of infringement of such
rights, is entirely their own responsibility.
Participation by federal agency representative(s) or person(s) affiliated with industry is not to be interpreted as
government or industry endorsement of this code or standard.
ASME accepts responsibility for only those interpretations of this document issued in accordance with the es-
tablished ASME procedures and policies, which precludes the issuance of interpretations by individuals.
The endnotes and preamble in this document (if any) are part of this American National Standard.
ASME Collective Membership Mark
ASME Single Certification Mark
"ASME" and the above ASME symbols are registered trademarks of The American Society of Mechanical Engineers.
No part of this document may be reproduced in any form, in an electronic
retrieval system or otherwise, without the prior written permission of the
publisher.
Library of Congress Catalog Card Number: 56-3934
Printed in the United States of America
Adopted by the Council of The American Society of Mechanical Engineers, 1914; latest edition 2019.
The American Society of Mechanical Engineers
Two Park Avenue, New York, NY 10016-5990
Copyright © 2019 by
THE AMERICAN SOCIETY OF MECHANICAL ENGINEERS
All rights reserved
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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TABLE OF CONTENTS
List of Sections . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . xiv
Foreword . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . xvi
Statement of Policy on the Use of the ASME Single Certification Mark and Code Authorization in Advertising xviii
Statement of Policy on the Use of ASME Marking to Identify Manufactured Items . . . . . . . . . . . . . . . . . . . . . . xviii
Submittal of Technical Inquiries to the Boiler and Pressure Vessel Standards Committees . . . . . . . . . . . . . . . xix
Personnel . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . xxii
Summary of Changes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . xliv
List of Changes in Record Number Order . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . lxi
Cross-Referencing and Stylistic Changes in the Boiler and Pressure Vessel Code . . . . . . . . . . . . . . . . . . . . . . . lxiv
Subpart 1 Stress Tables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
Statement of Policy on Information Provided in the Stress Tables . . . . . . . . 1
Guideline on Locating Materials in Stress Tables, and in Tables of Mechanical
and Physical Properties . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3
Subpart 2 Physical Properties Tables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 860
Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 860
Subpart 3 Charts and Tables for Determining Shell Thickness of Components Un-
der External Pressure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 901
Mandatory Appendix 1 Basis for Establishing Stress Values in Tables 1A and 1B . . . . . . . . . . . . 1034
1-100 Derivation of Allowable Stress Values . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1034
Mandatory Appendix 2 Basis for Establishing Design Stress Intensity Values for Tables 2A, 2B,
and 4, and Allowable Stress Values for Table 3 . . . . . . . . . . . . . . . . . . . 1036
2-100 Derivation of StressIntensity Values . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1036
2-110 Criteria for Materials Other than Bolting: Tables 2A and 2B . . . . . . . . . . . . . 1036
2-120 Criteria for Bolting Materials in Table 3 for Use With Section III (Class 2 and 3
Rules); Section VIII, Division 1; Section VIII, Division 2 (Part 4.16 Rules);
and Section XII . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1036
2-130 Criteria for Bolting Materials in Table 4 for Use With Section VIII, Division 2,
Part 5 and Annex 5.F; and With Section III, Subsections NB and WB . . . 1037
Mandatory Appendix 3 Basis for Establishing External Pressure Charts . . . . . . . . . . . . . . . . . . . . 1039
3-100 General . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1039
3-200 Basis of Charts in Subpart 3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1039
3-300 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1039
3-400 Background and Development of Theory . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1039
3-500 Design Basis . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1039
3-600 Criteria for Allowable Stresses . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1040
3-700 Procedure and Responsibility for Chart Development . . . . . . . . . . . . . . . . . . 1042
3-800 Alternate Procedure for Determining Allowable Compressive Stresses . . . . 1045
3-900 References . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1045
Mandatory Appendix 5 Guidelines on the Approval of NewMaterials Under the ASME Boiler and
Pressure Vessel Code . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1046
5-100 Code Policy . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1046
5-200 Application . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1046
5-300 Chemical Composition . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1048
5-400 Metallurgical Structure and Heat Treatment . . . . . . . . . . . . . . . . . . . . . . . . . . 1048
5-500 Mechanical Properties . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1048
iii
Copyright ASME International (BPVC) 
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5-600 Definitions for Data Collection Purposes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1048
5-700 Required Sampling . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1048
5-800 Time-Independent Properties . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1049
5-900 Time-Dependent Properties . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1049
5-1000 Low-Temperature Properties . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1051
5-1100 Toughness Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1051
5-1200 Stress–Strain Curves . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1051
5-1300 Fatigue Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1051
5-1400 Physical Properties . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1051
5-1500 Data Requirements for Welds, Weldments, and Weldability . . . . . . . . . . . . . 1052
5-1600 Long-Term Properties Stability . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1052
5-1700 Requests for Additional Data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1052
5-1800 New Materials Checklist . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1052
5-1900 Requirements for Recognized National or International Specifications . . . . 1054
5-2000 Publication of Recognized National or International Specifications . . . . . . . 1054
5-2100 CEN Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1054
Mandatory Appendix 6 Basis for Establishing Stress Values in Tables 6A, 6B, 6C, and 6D . . . . 1056
6-100 Derivation of Allowable Stress Values . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1056
Mandatory Appendix 7 Guidelines on Multiple Marking of Materials . . . . . . . . . . . . . . . . . . . . . . . 1058
7-100 Background . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1058
7-200 Guidelines . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1058
Mandatory Appendix 9 Standard Units for Use in Equations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1060
Mandatory Appendix 10 Basis for Establishing Maximum Allowable Stress Values for Tables 5A
and 5B . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1061
10-100 Derivation of Allowable Stress Values . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1061
Nonmandatory Appendix A Issues Associated With Materials Used in ASME Code Construction . . . 1063
A-100 General . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1063
A-200 Metallurgical Changes That Can Occur in Service . . . . . . . . . . . . . . . . . . . . . . 1064
A-300 Uniform Corrosion . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1071
A-400 Localized Corrosion . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1074
A-500 Metallurgically Influenced Corrosion . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1075
A-600 Mechanically Assisted Corrosion . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1076
A-700 Environmmentally Induced Embrittlement and Cracking . . . . . . . . . . . . . . . 1077
A-800 Mechanical Damage Mechanisms . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1081
Nonmandatory Appendix B Developing Nominal Composition Designations for ASME Code
Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1083
B-100 Background . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1083
B-200 General Guideline for All Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1083
B-300 Guidelines for Developing Nominal Composition Designations for Ferrous
Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1084
B-400 Guidelines for Developing Nominal Composition Designations for Nonferrous
Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1084
B-500 Summary . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1085
NonmandatoryAppendix C Guidance for the Use of U.S. Customary and SI Units in the ASME Boiler
and Pressure Vessel Code . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1086
C-100 Use of Units in Equations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1086
C-200 Guidelines Used to Develop SI Equivalents . . . . . . . . . . . . . . . . . . . . . . . . . . . 1086
C-300 Soft Conversion Factors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1088
Nonmandatory Appendix D Guidelines for Rounding Minimum Specified Tensile and Yield Strength
Values and for Establishing Anchor Points for Tensile and Yield
Strength Trend Curves in Tables 1A, 1B, 2A, 2B, 3, 4, 5A, 5B, U, U-2,
and Y-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1089
iv
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
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D-100 Minimum Tensile Strength and Minimum Yield Strength Columns . . . . . . . 1089
D-200 Selecting Anchor Point for Tensile and Yield Strength Trend Curves for All
Situations in Which the Minimum RT Specified Values in One Unit System
Are Not Precise Conversions of the Units in the Other System . . . . . . . . . 1089
D-300 Significant Figures in the Allowable Stress, Tensile Strength, and Yield
Strength Tables in Section II, Part D and in Code Cases . . . . . . . . . . . . . . 1090
Nonmandatory Appendix E Material Data for Stress Analysis in the Time-Dependent Regime . . . . 1091
E-100 Introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1091
FIGURES
G Geometric Chart for Components Under External or Compressive Loadings (for All Materials) 902
CS-1 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Carbon or Low Alloy Steels With Specified Minimum Yield Strength Less Than 207 MPa . 904
CS-2 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Carbon or Low Alloy Steels With Specified Minimum Yield Strength 207 MPa and Higher 905
CS-3 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Carbon Steel and Low Alloy Steels With Specified Minimum Yield Strength 260 MPa and
Higher for Temperatures 150°C and Less . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 906
CS-4 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
SA-537 Thickness 64 mm and Less . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 907
CS-5 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
SA-508 Class 1, Grades 2 and 3; SA-508 Class 2, Grade 2; SA-533 Class 1, Grades A, B, C, and
D; SA-533 Class 2, Grades A, B, C, and D; or SA-541 Grades 2 and 3 . . . . . . . . . . . . . . . . . . . 908
CS-6 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Carbon Steel With Specified Minimum Yield Strength of 138 MPa . . . . . . . . . . . . . . . . . . . . . 909
HT-1 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Quenched and Tempered Low Alloy Steel With Specified Minimum Yield Strength of
689 MPa and Thickness 64 mm and Less . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 910
HT-2 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
SA-508 Grade 4N, Class 2 or SA-543 Types B and C, Class 2 With Specified Minimum Yield
Strength of 689 MPa . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 911
HA-1 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Austenitic Steel 18Cr–8Ni, Type 304 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 912
HA-2 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Austenitic Steel 16Cr–12Ni–2Mo, Type 316 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 913
HA-3 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Austenitic Steel 18Cr–8Ni–0.035 Maximum Carbon, Type 304L . . . . . . . . . . . . . . . . . . . . . . . 914
HA-4 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Austenitic Steel 18Cr–8Ni–Mo–0.035 Maximum Carbon, Type 316L . . . . . . . . . . . . . . . . . . . 915
HA-5 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Austenitic–Ferritic Steel 18Cr–5Ni–3Mo S31500 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 916
HA-6 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Austenitic Steel 21Cr–11Ni–N S30815 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 917
HA-7 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
SA-564 Type 630 H1150 (17Cr–4Ni–4Cu S17400) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 918
HA-8 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Austenitic–Ferritic Steel 25Cr–7Ni–3Mo–2W–0.28N S39274 . . . . . . . . . . . . . . . . . . . . . . . . . 919
HA-9 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Austenitic Steel 25Cr–7.5Ni–3.5Mo–N–Cu–W S32760 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 920
HA-10 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Austenitic Stainless Steel 24Cr–17Ni–6Mn–4.5Mo–N S34565 . . . . . . . . . . . . . . . . . . . . . . . . . 921
CI-1 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Cast Iron . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 922
CD-1 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Cast Ductile Iron With a Specified Minimum Yield Strength of 275 MPa . . . . . . . . . . . . . . . . 923
v
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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CD-2 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Cast Ductile Iron With a Specified Minimum Yield Strength of 200 MPa . . . . . . . . . . . . . . . . 924
NFA-1 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Alloy 3003 in O Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 925
NFA-2 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Alloy 3003 in H14 Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 926
NFA-3 Chart for Determining Shell Thickness of Components Under External Pressure Developed forAluminum Alloy 3004 in O Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 927
NFA-4 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Alloy 3004 in H34 Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 928
NFA-5 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Alloy 5154 in O Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 929
NFA-6 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Alloy 5454 in O Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 930
NFA-7 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Alloy 1060 in O Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 931
NFA-8 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Alloy 5052 in O Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 932
NFA-9 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Alloy 5086 in O Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 933
NFA-10 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Alloy 5456 in O Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 934
NFA-11 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Alloy 5083 in O Temper . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 935
NFA-12 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Welded Aluminum Alloy 6061‐T6 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 936
NFA-13 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Welded Aluminum Alloy 6061‐T4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 937
NFC-1 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed Copper, Type DHP . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 938
NFC-2 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Copper–Silicon Alloy C65500 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 939
NFC-3 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed 90–10 Copper–Nickel Alloy . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 940
NFC-4 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed 70–30 Copper–Nickel Alloy . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 941
NFC-5 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Welded Copper–Iron Alloy Tube C19400 (SB‐543 Welded) . . . . . . . . . . . . . . . . . . . . . . . . . . 942
NFC-6 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
SB‐75 and SB‐111 Light Drawn Seamless Copper Tubes, Alloys C10200, C12000, C12200,
and C14200 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 943
NFC-7 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed Copper, SB‐75, UNS C12200, Temper O50 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 944
NFC-8 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Aluminum Bronze Alloy C61400 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 945
NFN-1 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed Low Carbon Nickel N02201 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 946
NFN-2 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed Nickel N02200 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 947
NFN-3 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed Nickel–Copper Alloy N04400 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 948
NFN-4 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed Nickel–Chromium–Iron Alloy N06600 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 949
NFN-5 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Nickel–Molybdenum Alloy N10001 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 950
vi
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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NFN-6 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Nickel–Molybdenum–Chromium–Iron Alloy N10003 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 951
NFN-7 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Nickel–Iron–Chromium–Molybdenum–Copper Alloy N08825 . . . . . . . . . . . . . . . . . . . . . . . . . 952
NFN-8 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed Nickel–Iron–Chromium Alloy N08800 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 953
NFN-9 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed Nickel–Iron–Chromium Alloy N08810 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 954
NFN-10 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Low Carbon Nickel–Molybdenum–Chromium Alloy N10276 . . . . . . . . . . . . . . . . . . . . . . . . . . 955
NFN-11 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Solution Treated Nickel–Chromium–Iron–Molybdenum–Copper Alloy N06007 . . . . . . . . . . 956
NFN-12 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Chromium–Nickel–Iron–Molybdenum–Copper–Columbium Alloy N08020 . . . . . . . . . . . . . . 957
NFN-13 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Nickel–Iron–Chromium–Silicon Alloy N08330 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 958
NFN-14 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Nickel–Chromium–Molybdenum Alloy N06455 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 959
NFN-15 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Nickel–Molybdenum Alloy N06002 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 960
NFN-16 Chartfor Determining Shell Thickness of Components Under External Pressure Developed for
Nickel–Molybdenum Alloy N10665 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 961
NFN-17 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Annealed Nickel–Chromium–Molybdenum–Columbium Alloy N06625 (SB‐443, SB‐444, and
SB‐446) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 962
NFN-18 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Nickel–Molybdenum–Chromium–Iron–Copper Alloy N06985 Having a Minimum Yield
Strength of 240 MPa . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 963
NFN-19 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Nickel–Molybdenum–Chromium–Iron–Copper Alloy N06985 Having a Minimum Yield
Strength of 207 MPa . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 964
NFN-20 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Work‐Hardened Nickel . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 965
NFN-21 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Nickel–Chromium–Iron Alloy N06600 (Specified Minimum Yield Strength 276 MPa) . . . . . 966
NFN-22 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Solution Annealed Ni–Cr–Mo–Cb Alloy, Grade 2 N06625 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 967
NFN-23 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Cold Worked Nickel–Iron–Chromium Alloy N08800 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 968
NFN-24 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Nickel Alloy N06230 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 969
NFN-25 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Stress Relieved Nickel Alloy N02200 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 970
NFN-26 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Alloy S31277 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 971
NFN-27 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Alloy N06035 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 972
NFT-1 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Unalloyed Titanium Grade 3 (UNS R50550) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 973
NFT-2 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Unalloyed Titanium Grade 2 (UNS R50400) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 974
NFT-3 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Titanium Grade 1 (UNS R50250) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 975
NFT-4 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Titanium Grade 9 Alloy (UNS R56320) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 976
vii
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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NFT-5 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Titanium Grade 12 Alloy (UNS R53400) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 977
NFT-6 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Titanium Grade 38 (UNS R54250) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 978
NFZ-1 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Zirconium Alloy (UNS R60702) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 979
NFZ-2 Chart for Determining Shell Thickness of Components Under External Pressure Developed for
Zirconium Alloy (UNS R60705) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 980
3-500.1 Temperature Limits for Application of Section II External Pressure Charts for Cylinder Under
External Pressure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1041
3-500.2 Temperature Limits for Application of Section II External Pressure Charts for Cylinder Under
Axial Compression . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1042
3-500.3 Temperature Limits for Application of Section II External Pressure Charts for Sphere Under
External Pressure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1043
3-700.1 Normalization of Test σ–ε to σy min and E code . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1044
E-100.2-1 Permissible Time/Temperature Conditions for Material That Has Been Cold Worked >5%
and <20% and Subjected to Short‐Time High Temperature Transients . . . . . . . . . . . . . . . . . 1094
E-100.4-1 Smt — Allowable Stress Intensity Values, MPa, Type 304 SS — 207-YS, 518-UTS (207-YS,
483-UTS) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1097
E-100.4-2 Smt — Allowable Stress Intensity Values, MPa, Type 316 SS — 207-YS, 518-UTS (207-YS,
483-UTS) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1098
E-100.4-3 Smt — Allowable Stress Intensity Values, MPa, Ni–Fe–Cr (Alloy 800H) . . . . . . . . . . . . . . . . . . 1099
E-100.4-4 Smt — Allowable Stress Intensity Values, MPa, 2
1/4Cr–1Mo . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1101
E-100.4-5 Smt — Allowable Stress Intensity Values, MPa, 9Cr–1Mo–V . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1102
E-100.5-1 St — Allowable Stress Intensity Values, MPa, Type 304 SS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1103
E-100.5-2 St — Allowable Stress Intensity Values, MPa, Type 316 SS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1104
E-100.5‐3 St — Allowable Stress Intensity Values, MPa, Ni–Fe–Cr (Alloy 800H) . . . . . . . . . . . . . . . . . . . . 1105
E-100.5-4 St — Allowable Stress Intensity Values, MPa, 2
1/4Cr–1Mo . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1106
E-100.5-5 St — Allowable Stress Intensity Values, MPa, 9Cr–1Mo–V . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1107
E-100.7-1 Expected Minimum Stress-to-Rupture Values, MPa, Type 304 SS . . . . . . . . . . . . . . . . . . . . . . . . 1109
E-100.7-2 Expected MinimumStress-to-Rupture Values, MPa, Type 316 SS . . . . . . . . . . . . . . . . . . . . . . . . 1110
E-100.7-3 Expected Minimum Stress‐to‐Rupture Values, MPa, Ni–Fe–Cr (Alloy 800H) . . . . . . . . . . . . . . . 1111
E-100.7-4 Expected Minimum Stress-to-Rupture Values, MPa, 21/4Cr–1Mo . . . . . . . . . . . . . . . . . . . . . . . . . 1112
E-100.7-5 Expected Minimum Stress-to-Rupture Values, MPa, Ni–Cr–Fe–Mo–Cb (Alloy 718) . . . . . . . . . 1113
E-100.7-6 Expected Minimum Stress-to-Rupture Values, MPa, 9Cr–1Mo–V . . . . . . . . . . . . . . . . . . . . . . . . 1114
E-100.15-1 Smt — Allowable Stress Intensity, Type 304 SS, Bolting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1121
E-100.15-2 Smt — Allowable Stress Intensity, Type 316 SS, Bolting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1121
E-100.15-3 Smt — Allowable Stress Values, MPa, Alloy 718, Bolting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1122
E-100.16-1 Design Fatigue Strain Range, ϵ t , for 304 SS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1123
E-100.16-2 Design Fatigue Strain Range, ϵ t , for 316 SS . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1124
E-100.16-3 Design Fatigue Strain Range, ϵ t , for Ni–Fe–Cr Alloy 800H . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1125
E-100.16-4 Design Fatigue Strain Range, ϵ t , for 2
1/4Cr–1Mo Steel . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1126
E-100.16-5 Design Fatigue Strain Range, ϵ t , for 9Cr–1Mo–V Steel . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1127
E-100.17-1 Time–Temperature Limits for Application of Section II External Pressure Charts for Cylinder
Under Axial Compression . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1128
E-100.17-2 Time–Temperature Limits for Application of Section II External Pressure Charts for Sphere
Under External Pressure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1129
E-100.17-3 Temperature Limits for Application of Section II External Pressure Charts for Cylinder Under
External Pressure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1130
E-100.18-1 Average Isochronous Stress–Strain Curves for Type 304 SS at 427°C . . . . . . . . . . . . . . . . . . . . 1131
E-100.18-2 Average Isochronous Stress–Strain Curves for Type 304 SS at 454°C . . . . . . . . . . . . . . . . . . . . 1132
E-100.18-3 Average Isochronous Stress–Strain Curves for Type 304 SS at 482°C . . . . . . . . . . . . . . . . . . . . 1133
E-100.18-4 Average Isochronous Stress–Strain Curves for Type 304 SS at 510°C . . . . . . . . . . . . . . . . . . . . 1134
E-100.18-5 Average Isochronous Stress–Strain Curves for Type 304 SS at 538°C . . . . . . . . . . . . . . . . . . . . 1135
E-100.18-6 Average Isochronous Stress–Strain Curves for Type 304 SS at 566°C . . . . . . . . . . . . . . . . . . . . 1136
E-100.18-7 Average Isochronous Stress–Strain Curves for Type 304 SS at 593°C . . . . . . . . . . . . . . . . . . . . 1137
viii
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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E-100.18-8 Average Isochronous Stress–Strain Curves for Type 304 SS at 621°C . . . . . . . . . . . . . . . . . . . . 1138
E-100.18-9 Average Isochronous Stress–Strain Curves for Type 304 SS at 649°C . . . . . . . . . . . . . . . . . . . . 1139
E-100.18-10 Average Isochronous Stress–Strain Curves for Type 304 SS at 677°C . . . . . . . . . . . . . . . . . . . . 1140
E-100.18-11 Average Isochronous Stress–Strain Curves for Type 304 SS at 704°C . . . . . . . . . . . . . . . . . . . . 1141
E-100.18-12 Average Isochronous Stress–Strain Curves for Type 304 SS at 732°C . . . . . . . . . . . . . . . . . . . . 1142
E-100.18-13 Average Isochronous Stress–Strain Curves for Type 304 SS at 760°C . . . . . . . . . . . . . . . . . . . . 1143
E-100.18-14 Average Isochronous Stress–Strain Curves for Type 304 SS at 788°C . . . . . . . . . . . . . . . . . . . . 1144
E-100.18-15 Average Isochronous Stress–Strain Curves for Type 304 SS at 816°C . . . . . . . . . . . . . . . . . . . . 1145
E-100.19-1 Average Isochronous Stress–Strain Curves for Type 316 SS at 427°C . . . . . . . . . . . . . . . . . . . . 1146
E-100.19-2 Average Isochronous Stress–Strain Curves for Type 316 SS at 454°C . . . . . . . . . . . . . . . . . . . . 1147
E-100.19-3 Average Isochronous Stress–Strain Curves for Type 316 SS at 482°C . . . . . . . . . . . . . . . . . . . . 1148
E-100.19-4 Average Isochronous Stress–Strain Curves for Type 316 SS at 510°C . . . . . . . . . . . . . . . . . . . . 1149
E-100.19-5 Average Isochronous Stress–Strain Curves for Type 316 SS at 538°C . . . . . . . . . . . . . . . . . . . . 1150
E-100.19-6 Average Isochronous Stress–Strain Curves for Type 316 SS at 566°C . . . . . . . . . . . . . . . . . . . . 1151
E-100.19-7 Average Isochronous Stress–Strain Curves for Type 316 SS at 593°C . . . . . . . . . . . . . . . . . . . . 1152
E-100.19-8 Average Isochronous Stress–Strain Curves for Type 316 SS at 621°C . . . . . . . . . . . . . . . . . . . . 1153
E-100.19-9 Average Isochronous Stress–Strain Curves for Type 316 SS at 649°C . . . . . . . . . . . . . . . . . . . . 1154
E-100.19-10 Average Isochronous Stress–Strain Curves for Type 316 SS at 677°C . . . . . . . . . . . . . . . . . . . . 1155
E-100.19-11 Average Isochronous Stress–Strain Curves for Type 316 SS at 704°C . . . . . . . . . . . . . . . . . . . . 1156
E-100.19-12 Average Isochronous Stress–Strain Curves for Type 316 SS at 732°C . . . . . . . . . . . . . . . . . . . . 1157
E-100.19-13 Average Isochronous Stress–Strain Curves for Type 316 SS at 760°C . . . . . . . . . . . . . . . . . . . . 1158
E-100.19-14 Average Isochronous Stress–Strain Curves for Type 316 SS at 788°C . . . . . . . . . . . . . . . . . . . . 1159
E-100.19-15 Average Isochronous Stress–Strain Curves for Type 316 SS at 816°C . . . . . . . . . . . . . . . . . . . . 1160
E-100.20-1 Average Isochronous Stress–Strain Curves for Alloy 800H at 427°C and 454°C . . . . . . . . . . . . 1161
E-100.20-2 Average Isochronous Stress–Strain Curves for Alloy 800H at 482°C . . . . . . . . . . . . . . . . . . . . . 1162
E-100.20-3 Average Isochronous Stress–Strain Curves for Alloy 800H at 510°C . . . . . . . . . . . . . . . . . . . . . 1163
E-100.20-4 Average Isochronous Stress–Strain Curves for Alloy 800H at 538°C . . . . . . . . . . . . . . . . . . . . . 1164
E-100.20-5 Average Isochronous Stress–Strain Curves for Alloy 800H at 566°C . . . . . . . . . . . . . . . . . . . . . 1165
E-100.20-6 Average Isochronous Stress–Strain Curves for Alloy 800H at 593°C . . . . . . . . . . . . . . . . . . . . . 1166
E-100.20-7 Average Isochronous Stress–Strain Curves for Alloy 800H at 621°C . . . . . . . . . . . . . . . . . . . . . 1167
E-100.20-8 Average Isochronous Stress–Strain Curves for Alloy 800H at 649°C . . . . . . . . . . . . . . . . . . . . . 1168
E-100.20-9 Average Isochronous Stress–Strain Curves for Alloy 800H at 677°C . . . . . . . . . . . . . . . . . . . . . 1169
E-100.20-10 Average Isochronous Stress–Strain Curves for Alloy 800H at 704°C . . . . . . . . . . . . . . . . . . . . . 1170
E-100.20-11 Average Isochronous Stress–Strain Curves for Alloy 800H at 732°C . . . . . . . . . . . . . . . . . . . . . 1171
E-100.20-12 Average Isochronous Stress–Strain Curves for Alloy 800H at 760°C . . . . . . . . . . . . . . . . . . . .. 1172
E-100.21-1 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 371°C . . . . . . . . . . . . 1173
E-100.21-2 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 399°C . . . . . . . . . . . . 1174
E-100.21-3 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 427°C . . . . . . . . . . . . 1175
E-100.21-4 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 454°C . . . . . . . . . . . . 1176
E-100.21-5 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 482°C . . . . . . . . . . . . 1177
E-100.21-6 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 510°C . . . . . . . . . . . . 1178
E-100.21-7 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 538°C . . . . . . . . . . . . 1179
E-100.21-8 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 566°C . . . . . . . . . . . . 1180
E-100.21-9 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 593°C . . . . . . . . . . . . 1181
E-100.21-10 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 621°C . . . . . . . . . . . . 1182
E-100.21-11 Average Isochronous Stress–Strain Curves for Annealed 21/4Cr–1Mo at 649°C . . . . . . . . . . . . 1183
E-100.22-1 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 371°C . . . . . . . . . . . . . . . . . . . . . 1184
E-100.22-2 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 399°C . . . . . . . . . . . . . . . . . . . . . 1184
E-100.22-3 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 426°C . . . . . . . . . . . . . . . . . . . . . 1185
E-100.22-4 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 454°C . . . . . . . . . . . . . . . . . . . . . 1185
E-100.22-5 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 482°C . . . . . . . . . . . . . . . . . . . . . 1186
E-100.22-6 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 510°C . . . . . . . . . . . . . . . . . . . . . 1186
ix
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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E-100.22-7 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 538°C . . . . . . . . . . . . . . . . . . . . . 1187
E-100.22-8 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 566°C . . . . . . . . . . . . . . . . . . . . . 1187
E-100.22-9 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 593°C . . . . . . . . . . . . . . . . . . . . . 1188
E-100.22-10 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 621°C . . . . . . . . . . . . . . . . . . . . . 1188
E-100.22-11 Average Isochronous Stress–Strain Curves for 9Cr–1Mo–V at 649°C . . . . . . . . . . . . . . . . . . . . . 1189
TABLES
1A Section I; Section III, Classes 2 and 3; Section VIII, Division 1; and Section XII Maximum Al-
lowable Stress Values S for Ferrous Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
1B Section I; Section III, Classes 2 and 3; Section VIII, Division 1; and Section XII Maximum Al-
lowable Stress Values S for Nonferrous Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 156
2A Section III, Division 1, Classes 1 and MC; Section III, Division 3, Classes TC and SC; and Section
VIII, Division 2, Class 1 Design Stress Intensity Values Sm for Ferrous Materials . . . . . . . . . 284
2B Section III, Division 1, Class 1; Section III, Division 3, Classes TC and SC; and Section VIII, Di-
vision 2, Class 1 Design Stress Intensity Values Sm for Nonferrous Materials . . . . . . . . . . . . 370
3 Section III, Classes 2 and 3; Section VIII, Divisions 1 and 2; and Section XII Maximum Allowable
Stress Values S for Bolting Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 398
4 Section III, Classes 1, TC, and SC; and Section VIII, Division 2 Design Stress Intensity Values Sm
for Bolting Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 424
5A Section VIII, Division 2 Maximum Allowable Stress Values S for Ferrous Materials . . . . . . . . . 436
5B Section VIII, Division 2 Maximum Allowable Stress Values S for Nonferrous Materials . . . . . . 498
6A Section IV FOR INFORMATION ONLY — Maximum Allowable Stress Values, S , for Ferrous
Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 524
6B Section IV FOR INFORMATION ONLY — Maximum Allowable Stress Values, S , for Nonferrous
Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 532
6C Section IV FOR INFORMATION ONLY — Maximum Allowable Stress Values, S , for Lined Water
Heater Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 540
6D Section IV FOR INFORMATION ONLY—Maximum Allowable Stress Values, S , for UnlinedWater
Heater Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 546
U Tensile Strength Values Su for Ferrous and Nonferrous Materials . . . . . . . . . . . . . . . . . . . . . . . . 552
U-2 Section VIII, Division 3 Tensile Strength Values Su for Ferrous Materials . . . . . . . . . . . . . . . . . . 653
Y-1 Yield Strength Values Sy for Ferrous and Nonferrous Materials . . . . . . . . . . . . . . . . . . . . . . . . . . 654
Y-2 Factors for Limiting Permanent Strain in Austenitic Stainless Steels, High-Nickel Alloy Steels,
Nickel, and Nickel Alloys . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 859
TE-1 Thermal Expansion for Ferrous Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 861
TE-2 Thermal Expansion for Aluminum Alloys . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 866
TE-3 Thermal Expansion for Copper Alloys . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 867
TE-4 Thermal Expansion for Nickel Alloys . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 868
TE-5 Thermal Expansion for Titanium Alloys . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 878
TCD Nominal Coefficients of Thermal Conductivity (TC) and Thermal Diffusivity (TD) . . . . . . . . . . . 879
TM-1 Moduli of Elasticity E of Ferrous Materials for Given Temperatures . . . . . . . . . . . . . . . . . . . . . . 893
TM-2 Moduli of Elasticity E of Aluminum and Aluminum Alloys for Given Temperatures . . . . . . . . . 896
TM-3 Moduli of Elasticity E of Copper and Copper Alloys for Given Temperatures . . . . . . . . . . . . . . . 897
TM-4 Moduli of Elasticity E of High Nickel Alloys for Given Temperatures . . . . . . . . . . . . . . . . . . . . . 898
TM-5 Moduli of Elasticity E of Titanium and Zirconium for Given Temperatures . . . . . . . . . . . . . . . . 899
PRD Poisson’s Ratio and Density of Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 899
G Tabular Values for Figure G . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 981
CS-1 Tabular Values for Figure CS-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .. 983
CS-2 Tabular Values for Figure CS-2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 984
CS-3 Tabular Values for Figure CS-3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 985
CS-4 Tabular Values for Figure CS-4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 986
CS-5 Tabular Values for Figure CS-5 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 986
CS-6 Tabular Values for Figure CS-6 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 987
HT-1 Tabular Values for Figure HT-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 987
HT-2 Tabular Values for Figure HT-2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 988
HA-1 Tabular Values for Figure HA-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 988
x
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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HA-2 Tabular Values for Figure HA-2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 989
HA-3 Tabular Values for Figure HA-3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 989
HA-4 Tabular Values for Figure HA-4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 990
HA-5 Tabular Values for Figure HA-5 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 990
HA-6 Tabular Values for Figure HA-6 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 991
HA-7 Tabular Values for Figure HA-7 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 992
HA-8 Tabular Values for Figure HA-8 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 992
HA-9 Tabular Values for Figure HA-9 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 993
HA-10 Tabular Values for Figure HA-10 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 994
CI-1 Tabular Values for Figure CI-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 995
CD-1 Tabular Values for Figure CD-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 995
CD-2 Tabular Values for Figure CD-2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 995
NFA-1 Tabular Values for Figure NFA-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 996
NFA-2 Tabular Values for Figure NFA-2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 997
NFA-3 Tabular Values for Figure NFA-3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 998
NFA-4 Tabular Values for Figure NFA-4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 999
NFA-5 Tabular Values for Figure NFA-5 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 999
NFA-6 Tabular Values for Figure NFA-6 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1000
NFA-7 Tabular Values for Figure NFA-7 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1000
NFA-8 Tabular Values for Figure NFA-8 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1001
NFA-9 Tabular Values for Figure NFA-9 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1001
NFA-10 Tabular Values for Figure NFA-10 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1002
NFA-11 Tabular Values for Figure NFA-11 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1002
NFA-12 Tabular Values for Figure NFA-12 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1003
NFA-13 Tabular Values for Figure NFA-13 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1004
NFC-1 Tabular Values for Figure NFC-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1004
NFC-2 Tabular Values for Figure NFC-2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1005
NFC-3 Tabular Values for Figure NFC-3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1005
NFC-4 Tabular Values for Figure NFC-4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1006
NFC-5 Tabular Values for Figure NFC-5 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1006
NFC-6 Tabular Values for Figure NFC-6 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1007
NFC-7 Tabular Values for Figure NFC-7 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1007
NFC-8 Tabular Values for Figure NFC-8 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1008
NFN-1 Tabular Values for Figure NFN-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1008
NFN-2 Tabular Values for Figure NFN-2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1009
NFN-3 Tabular Values for Figure NFN-3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1009
NFN-4 Tabular Values for Figure NFN-4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1010
NFN-5 Tabular Values for Figure NFN-5 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1010
NFN-6 Tabular Values for Figure NFN-6 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1011
NFN-7 Tabular Values for Figure NFN-7 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1011
NFN-8 Tabular Values for Figure NFN-8 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1012
NFN-9 Tabular Values for Figure NFN-9 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1013
NFN-10 Tabular Values for Figure NFN-10 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1014
NFN-11 Tabular Values for Figure NFN-11 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .. . . . . . . . . . . . . . . . . . . . 1014
NFN-12 Tabular Values for Figure NFN-12 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1015
NFN-13 Tabular Values for Figure NFN-13 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1015
NFN-14 Tabular Values for Figure NFN-14 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1016
NFN-15 Tabular Values for Figure NFN-15 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1017
NFN-16 Tabular Values for Figure NFN-16 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1018
NFN-17 Tabular Values for Figure NFN-17 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1019
NFN-18 Tabular Values for Figure NFN-18 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1020
NFN-19 Tabular Values for Figure NFN-19 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1021
NFN-20 Tabular Values for Figure NFN-20 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1022
NFN-22 Tabular Values for Figure NFN-22 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1023
NFN-23 Tabular Values for Figure NFN-23 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1024
NFN-24 Tabular Values for Figure NFN-24 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1025
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NFN-25 Tabular Values for Figure NFN-25 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1026
NFN-26 Tabular Values for Figure NFN-26 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1026
NFN-27 Tabular Values for Figure NFN-27 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1027
NFT-1 Tabular Values for Figure NFT-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1028
NFT-2 Tabular Values for Figure NFT-2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1029
NFT-3 Tabular Values for Figure NFT-3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1029
NFT-4 Tabular Values for Figure NFT-4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1030
NFT-5 Tabular Values for Figure NFT-5 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1031
NFT-6 Tabular Values for Figure NFT-6 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1032
NFZ-1 Tabular Values for Figure NFZ-1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1033
NFZ-2 Tabular Values for Figure NFZ-2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1033
1-100 Criteria for Establishing Allowable Stress Values for Tables 1A and 1B . . . . . . . . . . . . . . . . . . . 1035
2-100(a) Criteria for Establishing Design Stress Intensity Values for Tables 2A and 2B . . . . . . . . . . . . . . 1037
2-100(b) Criteria for Establishing Allowable Stress Values for Table 3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1038
2-100(c) Criteria for Establishing Allowable Stress or Design Stress Intensity Values for Table 4 . . . . . 1038
5-100 Hot Isostatically Pressed Component Requirements for Austenitic Stainless Steels, Austenitic–
Ferritic (Duplex) Stainless Steels, Martensitic Stainless Steels, Ferritic Steels, and Nickel
Alloys . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1047
5-800 ASTM Test Methods and Units for Reporting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1050
5-1500 Example of a Comparison of Allowable Stresses of Base Metals With Compositions Similar to
Those of Selected Welding Consumables and the Proposed New Base Metal . . . . . . . . . . . . . 1053
6-100(a) Criteria for Establishing Allowable Stress Values for Tables 6A and 6B . . . . . . . . . . . . . . . . . . . 1057
6-100(b) Criteria for Establishing Allowable Stress Values for Table 6C . . . . . . . . . . . . . . . . . . . . . . . . . . . 1057
6-100(c) Criteria for Establishing Allowable Stress Values for Table 6D . . . . . . . . . . . . . . . . . . . . . . . . . . . 1057
9-100 Standard Units for Use in Equations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1060
10-100 Criteria for Establishing Allowable Stress Values for Tables 5A and 5B . . . . . . . . . . . . . . . . . . . 1062
E-100.1-1 Tensile Strength Values, Su . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1091
E-100.1-2 Tensile and Yield Strength Reduction Factor Due to Long Time Prior Elevated Temperature
Service . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1092
E-100.1-3 Yield Strength Reduction Factors for 21/4Cr–1Mo . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1092
E-100.1-4 Tensile Strength Reduction Factors for 21/4Cr–1Mo . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1093
E-100.1-5 Tensile Strength Reduction Factors for 9Cr–1Mo–V . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1093
E-100.3-1 Permissible Base Materials for Structures Other Than Bolting . . . . . . . . . . . . . . . . . . . . . . . . . . . 1095
E-100.3-2 Permissible Weld Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1096
E-100.3-3 So — Maximum Allowable Stress Intensity, MPa, for Design Condition Calculations . . . . . . . . . 1096
E-100.6-1 Yield Strength Values, Sy , Versus Temperature . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1108
E-100.8-1 Stress Rupture Factors for Type 304 Stainless Steel Welded With SFA-5.22 E308T and E308LT,
SFA-5.4 E308 and E308L, and SFA-5.9 ER308 and ER308L . . . . . . . . . . . . . . . . . . . . . . . . . . . 1115
E-100.8-2 Stress Rupture Factors for Type 304 Stainless Steel Welded With SFA-5.22 EXXXT‐G (16‐8‐2
Chemistry), SFA-5.4 E16‐8‐2, and SFA-5.9 ER16‐8‐2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1115
E-100.8-3 Stress Rupture Factors for Type 304 Stainless Steel Welded With SFA-5.22 E316T and
E316LT‐1, ‐2, and ‐3; SFA-5.4 E316 and E316L; and SFA-5.9 ER316 and ER316L . . . . . . . . . 1116
E-100.9-1 Stress Rupture Factors for Type 316 Stainless Steel Welded With SFA-5.22 E308T and E308LT,
SFA-5.4 E308 and E308L, and SFA-5.9 ER308 and ER308L . . . . . . . . . . . . . . . . . . . . . . . . . . . 1116
E-100.9-2 Stress Rupture Factors for Type 316 Stainless Steel Welded With SFA-5.22 EXXXT‐G (16‐8‐2
Chemistry), SFA-5.4E16‐8‐2, and SFA-5.9 ER16‐8‐2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1117
E-100.9-3 Stress Rupture Factors for Type 316 Stainless Steel Welded With SFA-5.22 E316T and
E316LT‐1 and ‐2, SFA-5.4 E316 and E316L, and SFA-5.9 ER316 and ER316L . . . . . . . . . . . . 1117
E-100.10-1 Stress Rupture Factors for Alloy 800H Welded With SFA-5.11 ENiCrFe‐2 (INCO A) . . . . . . . . . 1118
E-100.10-2 Stress Rupture Factors for Alloy 800H Welded With SFA-5.14 ERNiCr‐3 (INCO 82) . . . . . . . . . 1118
E-100.11-1 Stress Rupture Factors for 21/4Cr‐1Mo (415/205) Welded With SFA-5.28 E90C‐B3, SFA-5.28
ER90S‐B3, SFA-5.5 E90XX‐B3 (>0.05C), SFA-5.23 EB3, SFA-5.23 ECB3 (>0.05C), and SFA-5.29
E90T1‐B3 (>0.05C) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1119
E-100.12-1 Stress Rupture Factors for 9Cr–1Mo–V Welded With SFA-5.28 ER90S‐B9, SFA-5.5 E90XX‐B9,
and SFA-5.23 EB9 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1119
E-100.13-1 Permissible Materials for Bolting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1120
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E-100.14-1 So — Maximum Allowable Stress Intensity, MPa, for Design Condition Calculations of Bolting
Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1120
E-100.23-1 Recommended Restrictions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1190
E-100.24-1 Cross-Reference Table of Section II, Part D and Section III, Subsection NH 2015 Edition . . . . . 1191
ENDNOTES . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1195
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ð19Þ LIST OF SECTIONS
SECTIONS
I Rules for Construction of Power Boilers
II Materials
• Part A — Ferrous Material Specifications
• Part B — Nonferrous Material Specifications
• Part C — Specifications for Welding Rods, Electrodes, and Filler Metals
• Part D — Properties (Customary)
• Part D — Properties (Metric)
III Rules for Construction of Nuclear Facility Components
• Subsection NCA — General Requirements for Division 1 and Division 2
• Appendices
• Division 1
– Subsection NB — Class 1 Components
– Subsection NC — Class 2 Components
– Subsection ND — Class 3 Components
– Subsection NE — Class MC Components
– Subsection NF — Supports
– Subsection NG — Core Support Structures
• Division 2 — Code for Concrete Containments
• Division 3 — Containment Systems for Transportation and Storage of Spent Nuclear Fuel and High-Level
Radioactive Material
• Division 5 — High Temperature Reactors
IV Rules for Construction of Heating Boilers
V Nondestructive Examination
VI Recommended Rules for the Care and Operation of Heating Boilers
VII Recommended Guidelines for the Care of Power Boilers
VIII Rules for Construction of Pressure Vessels
• Division 1
• Division 2 — Alternative Rules
• Division 3 — Alternative Rules for Construction of High Pressure Vessels
IX Welding, Brazing, and Fusing Qualifications
X Fiber-Reinforced Plastic Pressure Vessels
XI Rules for Inservice Inspection of Nuclear Power Plant Components
• Division 1 — Rules for Inspection and Testing of Components of Light-Water-Cooled Plants
• Division 2 — Requirements for Reliability and Integrity Management (RIM) Programs for Nuclear Power
Plants
XII Rules for Construction and Continued Service of Transport Tanks
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INTERPRETATIONS
Interpretations are issued in real time in ASME’s Interpretations Database at http://go.asme.org/Interpretations. His-
torical BPVC interpretations may also be found in the Database.
CODE CASES
The Boiler and Pressure Vessel Code committees meet regularly to consider proposed additions and revisions to the
Code and to formulate Cases to clarify the intent of existing requirements or provide, when the need is urgent, rules for
materials or constructions not covered by existing Code rules. Those Cases that have been adopted will appear in the
appropriate 2019 Code Cases book: “Boilers and Pressure Vessels” or “Nuclear Components.” Each Code Cases book
is updated with seven Supplements. Supplements will be sent or made available automatically to the purchasers of
the Code Cases books up to the publication of the 2021 Code. Code Case users can check the current status of any Code
Case at http://go.asme.org/BPVCCDatabase. Code Case users can also view an index of the complete list of Boiler and
Pressure Vessel Code Cases and Nuclear Code Cases at http://go.asme.org/BPVCC.
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ð19Þ FOREWORD*
In 1911, The American Society of Mechanical Engineers established the Boiler and Pressure Vessel Committee to for-
mulate standard rules for the construction of steam boilers and other pressure vessels. In 2009, the Boiler and Pressure
Vessel Committee was superseded by the following committees:
(a) Committee on Power Boilers (I)
(b) Committee on Materials (II)
(c) Committee on Construction of Nuclear Facility Components (III)
(d) Committee on Heating Boilers (IV)
(e) Committee on Nondestructive Examination (V)
(f) Committee on Pressure Vessels (VIII)
(g) Committee on Welding, Brazing, and Fusing (IX)
(h) Committee on Fiber-Reinforced Plastic Pressure Vessels (X)
(i) Committee on Nuclear Inservice Inspection (XI)
(j) Committee on Transport Tanks (XII)
(k) Technical Oversight Management Committee (TOMC)
Where reference is made to “the Committee” in this Foreword, each of these committees is included individually and
collectively.
The Committee’s function is to establish rules of safety relating only to pressure integrity, which govern the
construction** of boilers, pressure vessels, transport tanks, and nuclear components, and the inservice inspection of nu-
clear components and transport tanks. The Committee also interprets these rules when questions arise regarding their
intent. The technical consistency of the Sections of the Code and coordination ofstandards development activities of the
Committees is supported and guided by the Technical Oversight Management Committee. This Code does not address
other safety issues relating to the construction of boilers, pressure vessels, transport tanks, or nuclear components, or
the inservice inspection of nuclear components or transport tanks. Users of the Code should refer to the pertinent codes,
standards, laws, regulations, or other relevant documents for safety issues other than those relating to pressure integ-
rity. Except for Sections XI and XII, and with a few other exceptions, the rules do not, of practical necessity, reflect the
likelihood and consequences of deterioration in service related to specific service fluids or external operating environ-
ments. In formulating the rules, the Committee considers the needs of users, manufacturers, and inspectors of pressure
vessels. The objective of the rules is to afford reasonably certain protection of life and property, and to provide a margin
for deterioration in service to give a reasonably long, safe period of usefulness. Advancements in design and materials
and evidence of experience have been recognized.
This Code contains mandatory requirements, specific prohibitions, and nonmandatory guidance for construction ac-
tivities and inservice inspection and testing activities. The Code does not address all aspects of these activities and those
aspects that are not specifically addressed should not be considered prohibited. The Code is not a handbook and cannot
replace education, experience, and the use of engineering judgment. The phrase engineering judgment refers to technical
judgments made by knowledgeable engineers experienced in the application of the Code. Engineering judgments must
be consistent with Code philosophy, and such judgments must never be used to overrule mandatory requirements or
specific prohibitions of the Code.
The Committee recognizes that tools and techniques used for design and analysis change as technology progresses
and expects engineers to use good judgment in the application of these tools. The designer is responsible for complying
with Code rules and demonstrating compliance with Code equations when such equations are mandatory. The Code
neither requires nor prohibits the use of computers for the design or analysis of components constructed to the
* The information contained in this Foreword is not part of this American National Standard (ANS) and has not been processed in accordance
with ANSI's requirements for an ANS. Therefore, this Foreword may contain material that has not been subjected to public review or a con-
sensus process. In addition, it does not contain requirements necessary for conformance to the Code.
** Construction, as used in this Foreword, is an all-inclusive term comprising materials, design, fabrication, examination, inspection, testing,
certification, and pressure relief.
xvi
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Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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requirements of the Code. However, designers and engineers using computer programs for design or analysis are cau-
tioned that they are responsible for all technical assumptions inherent in the programs they use and the application of
these programs to their design.
The rules established by the Committee are not to be interpreted as approving, recommending, or endorsing any pro-
prietary or specific design, or as limiting in any way the manufacturer’s freedom to choose any method of design or any
form of construction that conforms to the Code rules.
The Committee meets regularly to consider revisions of the rules, new rules as dictated by technological development,
Code Cases, and requests for interpretations. Only the Committee has the authority to provide official interpretations of
this Code. Requests for revisions, new rules, Code Cases, or interpretations shall be addressed to the Secretary in writing
and shall give full particulars in order to receive consideration and action (see Submittal of Technical Inquiries to the
Boiler and Pressure Vessel Standards Committees). Proposed revisions to the Code resulting from inquiries will be pre-
sented to the Committee for appropriate action. The action of the Committee becomes effective only after confirmation
by ballot of the Committee and approval by ASME. Proposed revisions to the Code approved by the Committee are sub-
mitted to the American National Standards Institute (ANSI) and published at http://go.asme.org/BPVCPublicReview to
invite comments from all interested persons. After public review and final approval by ASME, revisions are published at
regular intervals in Editions of the Code.
The Committee does not rule on whether a component shall or shall not be constructed to the provisions of the Code.
The scope of each Section has been established to identify the components and parameters considered by the Committee
in formulating the Code rules.
Questions or issues regarding compliance of a specific component with the Code rules are to be directed to the ASME
Certificate Holder (Manufacturer). Inquiries concerning the interpretation of the Code are to be directed to the Commit-
tee. ASME is to be notified should questions arise concerning improper use of the ASME Single Certification Mark.
When required by context in this Section, the singular shall be interpreted as the plural, and vice versa, and the fem-
inine, masculine, or neuter gender shall be treated as such other gender as appropriate.
xvii
Copyright ASME International (BPVC) 
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Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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ð19Þ
ð19Þ
STATEMENT OF POLICY ON THE USE OF THE ASME SINGLE
CERTIFICATION MARK AND CODE AUTHORIZATION IN
ADVERTISING
ASME has established procedures to authorize qualified organizations to perform various activities in accordance
with the requirements of the ASME Boiler and Pressure Vessel Code. It is the aim of the Society to provide recognition
of organizations so authorized. An organization holding authorization to perform various activities in accordance with
the requirements of the Code may state this capability in its advertising literature.
Organizations that are authorized to use the ASME Single Certification Mark for marking items or constructions that
have been constructed and inspected in compliance with the ASME Boiler and Pressure Vessel Code are issued Certifi-
cates of Authorization. It is the aim of the Society to maintain the standing of the ASME Single Certification Mark for the
benefit of the users, the enforcement jurisdictions, and the holders of the ASME Single Certification Mark who comply
with all requirements.
Based on these objectives, the following policy has been established on the usage in advertising of facsimiles of the
ASME Single Certification Mark, Certificates of Authorization, and reference to Code construction. The American Society
of Mechanical Engineers does not “approve,” “certify,” “rate,” or “endorse” any item, construction, or activity and there
shall be no statements or implications that might so indicate. An organization holding the ASME Single Certification Mark
and/or a Certificate of Authorization may state in advertising literature that items, constructions,or activities “are built
(produced or performed) or activities conducted in accordance with the requirements of the ASME Boiler and Pressure
Vessel Code,” or “meet the requirements of the ASME Boiler and Pressure Vessel Code.”An ASME corporate logo shall not
be used by any organization other than ASME.
The ASME Single Certification Mark shall be used only for stamping and nameplates as specifically provided in the
Code. However, facsimiles may be used for the purpose of fostering the use of such construction. Such usage may be
by an association or a society, or by a holder of the ASME Single Certification Mark who may also use the facsimile
in advertising to show that clearly specified items will carry the ASME Single Certification Mark.
STATEMENT OF POLICY ON THE USE OF ASME MARKING TO
IDENTIFY MANUFACTURED ITEMS
The ASME Boiler and Pressure Vessel Code provides rules for the construction of boilers, pressure vessels, and nuclear
components. This includes requirements for materials, design, fabrication, examination, inspection, and stamping. Items
constructed in accordance with all of the applicable rules of the Code are identified with the ASME Single Certification
Mark described in the governing Section of the Code.
Markings such as “ASME,” “ASME Standard,” or any other marking including “ASME” or the ASME Single Certification
Mark shall not be used on any item that is not constructed in accordance with all of the applicable requirements of the
Code.
Items shall not be described on ASME Data Report Forms nor on similar forms referring to ASME that tend to imply
that all Code requirements have been met when, in fact, they have not been. Data Report Forms covering items not fully
complying with ASME requirements should not refer to ASME or they should clearly identify all exceptions to the ASME
requirements.
xviii
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Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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ð19ÞSUBMITTAL OF TECHNICAL INQUIRIES TO THE BOILER AND
PRESSURE VESSEL STANDARDS COMMITTEES
1 INTRODUCTION
(a) The following information provides guidance to Code users for submitting technical inquiries to the applicable
Boiler and Pressure Vessel (BPV) Standards Committee (hereinafter referred to as the Committee). See the guidelines
on approval of new materials under the ASME Boiler and Pressure Vessel Code in Section II, Part D for requirements for
requests that involve adding new materials to the Code. See the guidelines on approval of new welding and brazing ma-
terials in Section II, Part C for requirements for requests that involve adding new welding and brazing materials (“con-
sumables”) to the Code.
Technical inquiries can include requests for revisions or additions to the Code requirements, requests for Code Cases,
or requests for Code Interpretations, as described below:
(1) Code Revisions. Code revisions are considered to accommodate technological developments, to address admin-
istrative requirements, to incorporate Code Cases, or to clarify Code intent.
(2) Code Cases. Code Cases represent alternatives or additions to existing Code requirements. Code Cases are writ-
ten as a Question and Reply, and are usually intended to be incorporated into the Code at a later date. When used, Code
Cases prescribe mandatory requirements in the same sense as the text of the Code. However, users are cautioned that
not all regulators, jurisdictions, or Owners automatically accept Code Cases. The most common applications for Code
Cases are as follows:
(-a) to permit early implementation of an approved Code revision based on an urgent need
(-b) to permit use of a new material for Code construction
(-c) to gain experience with new materials or alternative requirements prior to incorporation directly into the
Code
(3) Code Interpretations
(-a) Code Interpretations provide clarification of the meaning of existing requirements in the Code and are pre-
sented in Inquiry and Reply format. Interpretations do not introduce new requirements.
(-b) If existing Code text does not fully convey the meaning that was intended, or conveys conflicting require-
ments, and revision of the requirements is required to support the Interpretation, an Intent Interpretation will be issued
in parallel with a revision to the Code.
(b) Code requirements, Code Cases, and Code Interpretations established by the Committee are not to be considered
as approving, recommending, certifying, or endorsing any proprietary or specific design, or as limiting in any way the
freedom of manufacturers, constructors, or Owners to choose any method of design or any form of construction that
conforms to the Code requirements.
(c) Inquiries that do not comply with the following guidance or that do not provide sufficient information for the Com-
mittee’s full understanding may result in the request being returned to the Inquirer with no action.
2 INQUIRY FORMAT
Submittals to the Committee should include the following information:
(a) Purpose. Specify one of the following:
(1) request for revision of present Code requirements
(2) request for new or additional Code requirements
(3) request for Code Case
(4) request for Code Interpretation
(b) Background. The Inquirer should provide the information needed for the Committee’s understanding of the In-
quiry, being sure to include reference to the applicable Code Section, Division, Edition, Addenda (if applicable), para-
graphs, figures, and tables. Preferably, the Inquirer should provide a copy of, or relevant extracts from, the specific
referenced portions of the Code.
xix
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(c) Presentations. The Inquirer may desire to attend or be asked to attend a meeting of the Committee to make a for-
mal presentation or to answer questions from the Committee members with regard to the Inquiry. Attendance at a BPV
Standards Committee meeting shall be at the expense of the Inquirer. The Inquirer’s attendance or lack of attendance at
a meeting will not be used by the Committee as a basis for acceptance or rejection of the Inquiry by the Committee. How-
ever, if the Inquirer’s request is unclear, attendance by the Inquirer or a representative may be necessary for the Com-
mittee to understand the request sufficiently to be able to provide an Interpretation. If the Inquirer desires to make a
presentation at a Committee meeting, the Inquirer should provide advance notice to the Committee Secretary, to ensure
time will be allotted for the presentation in the meeting agenda. The Inquirer should consider the need for additional
audiovisual equipment that might not otherwise be provided by the Committee. With sufficient advance notice to the
Committee Secretary, such equipment may be made available.
3 CODE REVISIONS OR ADDITIONS
Requests for Code revisions or additions should include the following information:
(a) Requested Revisions or Additions. For requested revisions, the Inquirer should identify those requirements of the
Code that they believe should be revised, and should submit a copy of, or relevant extracts from, the appropriate require-
ments as they appear in the Code, marked up with the requested revision. For requested additions to the Code, the In-
quirer should provide the recommended wording and should clearly indicate where they believe theadditions should be
located in the Code requirements.
(b) Statement of Need. The Inquirer should provide a brief explanation of the need for the revision or addition.
(c) Background Information. The Inquirer should provide background information to support the revision or addition,
including any data or changes in technology that form the basis for the request, that will allow the Committee to ade-
quately evaluate the requested revision or addition. Sketches, tables, figures, and graphs should be submitted, as appro-
priate. The Inquirer should identify any pertinent portions of the Code that would be affected by the revision or addition
and any portions of the Code that reference the requested revised or added paragraphs.
4 CODE CASES
Requests for Code Cases should be accompanied by a statement of need and background information similar to that
described in 3(b) and 3(c), respectively, for Code revisions or additions. The urgency of the Code Case (e.g., project un-
derway or imminent, new procedure) should be described. In addition, it is important that the request is in connection
with equipment that will bear the ASME Single Certification Mark, with the exception of Section XI applications. The pro-
posed Code Case should identify the Code Section and Division, and should be written as a Question and a Reply, in the
same format as existing Code Cases. Requests for Code Cases should also indicate the applicable Code Editions and Ad-
denda (if applicable) to which the requested Code Case applies.
5 CODE INTERPRETATIONS
(a) Requests for Code Interpretations should be accompanied by the following information:
(1) Inquiry. The Inquirer should propose a condensed and precise Inquiry, omitting superfluous background infor-
mation and, when possible, composing the Inquiry in such a way that a “yes” or a “no” Reply, with brief limitations or
conditions, if needed, can be provided by the Committee. The proposed question should be technically and editorially
correct.
(2) Reply. The Inquirer should propose a Reply that clearly and concisely answers the proposed Inquiry question.
Preferably, the Reply should be “yes” or “no,” with brief limitations or conditions, if needed.
(3) Background Information. The Inquirer should provide any need or background information, such as described in
3(b) and 3(c), respectively, for Code revisions or additions, that will assist the Committee in understanding the proposed
Inquiry and Reply.
If the Inquirer believes a revision of the Code requirements would be helpful to support the Interpretation, the In-
quirer may propose such a revision for consideration by the Committee. In most cases, such a proposal is not necessary.
(b) Requests for Code Interpretations should be limited to an Interpretation of a particular requirement in the Code or
in a Code Case. Except with regard to interpreting a specific Code requirement, the Committee is not permitted to con-
sider consulting-type requests such as the following:
(1) a review of calculations, design drawings, welding qualifications, or descriptions of equipment or parts to de-
termine compliance with Code requirements
xx
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Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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(2) a request for assistance in performing any Code-prescribed functions relating to, but not limited to, material
selection, designs, calculations, fabrication, inspection, pressure testing, or installation
(3) a request seeking the rationale for Code requirements
6 SUBMITTALS
(a) Submittal. Requests for Code Interpretation should preferably be submitted through the online Interpretation Sub-
mittal Form. The form is accessible at http://go.asme.org/InterpretationRequest. Upon submittal of the form, the In-
quirer will receive an automatic e-mail confirming receipt. If the Inquirer is unable to use the online form, the
Inquirer may mail the request to the following address:
Secretary
ASME Boiler and Pressure Vessel Committee
Two Park Avenue
New York, NY 10016-5990
All other Inquiries should be mailed to the Secretary of the BPV Committee at the address above. Inquiries are unlikely
to receive a response if they are not written in clear, legible English. They must also include the name of the Inquirer and
the company they represent or are employed by, if applicable, and the Inquirer’s address, telephone number, fax num-
ber, and e-mail address, if available.
(b) Response. The Secretary of the appropriate Committee will provide a written response, via letter or e-mail, as ap-
propriate, to the Inquirer, upon completion of the requested action by the Committee. Inquirers may track the status of
their Interpretation Request at http://go.asme.org/Interpretations.
xxi
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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ð19Þ PERSONNEL
ASME Boiler and Pressure Vessel Standards Committees,
Subgroups, and Working Groups
January 1, 2019
TECHNICAL OVERSIGHT MANAGEMENT COMMITTEE (TOMC)
T. P. Pastor, Chair
S. C. Roberts, Vice Chair
S. J. Rossi, Staff Secretary
R. W. Barnes
R. J. Basile
T. L. Bedeaux
D. L. Berger
D. A. Bowers
J. Cameron
A. Chaudouet
D. B. DeMichael
R. P. Deubler
P. D. Edwards
J. G. Feldstein
N. A. Finney
J. A. Hall
T. E. Hansen
G. W. Hembree
J. F. Henry
R. S. Hill III
W. M. Lundy
R. E. McLaughlin
G. C. Park
M. D. Rana
R. F. Reedy, Sr.
F. J. Schaaf, Jr.
G. Scribner
B. F. Shelley
W. J. Sperko
D. Srnic
R. W. Swayne
J. E. Batey, Contributing Member
Subgroup on Research and Development (TOMC)
R. W. Barnes, Chair
S. J. Rossi, Staff Secretary
D. A. Canonico
J. F. Henry
R. S. Hill III
W. Hoffelner
B. Hrubala
T. P. Pastor
S. C. Roberts
D. Andrei, Contributing Member
Subgroup on Strategic Initiatives (TOMC)
S. C. Roberts, Chair
S. J. Rossi, Staff Secretary
R. W. Barnes
T. L. Bedeaux
G. W. Hembree
J. F. Henry
R. S. Hill III
B. Hrubala
M. H. Jawad
R. E. McLaughlin
G. C. Park
T. P. Pastor
R. F. Reedy, Sr.
Special Working Group on High Temperature Technology (TOMC)
D. Dewees, Chair
F. W. Brust
T. D. Burchell
P. R. Donavin
B. F. Hantz
J. F. Henry
R. I. Jetter
P. Smith
HONORARY MEMBERS (MAIN COMMITTEE)
F. P. Barton
T. M. Cullen
G. E. Feigel
O. F. Hedden
M. H. Jawad
A. J. Justin
W. G. Knecht
J. LeCoff
T. G. McCarty
G. C. Millman
R. A. Moen
R. F. Reedy, Sr.
ADMINISTRATIVE COMMITTEE
T. P. Pastor, Chair
S. C. Roberts, Vice Chair
S. J. Rossi, Staff Secretary
R. J. Basile
D. A. Bowers
J. Cameron
D. B. DeMichael
J. A. Hall
G. W. Hembree
R. S. Hill III
R. E. McLaughlin
M. D. Rana
B. F. Shelley
R. R. Stevenson
R. W. Swayne
MARINE CONFERENCE GROUP
H. N. Patel, Chair
S. J. Rossi, Staff Secretary
J. G. Hungerbuhler, Jr.
G. Nair
N. Prokopuk
J. D. Reynolds
xxii
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Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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CONFERENCE COMMITTEE
C. B. Cantrell — Nebraska, Chair
J. T. Amato — Minnesota, Vice
Chair
D. A. Douin — Ohio, SecretaryM. J. Adams — Ontario, Canada
W. Anderson — Mississippi
R. Becker — Colorado
R. J. Brockman — Missouri
R. J. Bunte — Iowa
J. H. Burpee — Maine
M. J. Byrum — Alabama
S. Chapman — Tennessee
D. C. Cook — California
B. J. Crawford — Georgia
E. L. Creaser — New Brunswick,
Canada
J. J. Dacanay — Hawaii
C. Dautrich — North Carolina
R. DeLury — Manitoba, Canada
D. Eastman — Newfoundland and
Labrador, Canada
D. A. Ehler — Nova Scotia, Canada
J. J. Esch — Delaware
T. J. Granneman II — Oklahoma
E. G. Hilton — Virginia
C. Jackson — City of Detroit,
Michigan
M. L. Jordan — Kentucky
E. Kawa, Jr. — Massachusetts
A. Khssassi — Quebec, Canada
J. Klug — City of Milwaukee,
Wisconsin
K. J. Kraft — Maryland
K. S. Lane — Alaska
L. C. Leet — City of Seattle,
Washington
J. LeSage, Jr. — Louisiana
A. M. Lorimor — South Dakota
M. Mailman — Northwest
Territories, Canada
D. E. Mallory — New Hampshire
W. McGivney — City of New York,
New York
A. K. Oda — Washington
L. E. Parkey — Indiana
M. Poehlmann — Alberta, Canada
J. F. Porcella — West Virginia
C. F. Reyes — California
M. J. Ryan — City of Chicago,
Illinois
D. A. Sandfoss — Nevada
M. H. Sansone — New York
A. S. Scholl — British Columbia,
Canada
T. S. Seime — North Dakota
C. S. Selinger — Saskatchewan,
Canada
J. E. Sharier — Ohio
N. Smith — Pennsylvania
R. Spiker — North Carolina
D. J. Stenrose — Michigan
R. J. Stimson II — Kansas
R. K. Sturm — Utah
D. K. Sullivan — Arkansas
R. Tomka — Oregon
S. R. Townsend — Prince Edward
Island, Canada
R. D. Troutt — Texas
M. C. Vogel — Illinois
T. J. Waldbillig — Wisconsin
D. M. Warburton — Florida
M. Washington — New Jersey
INTERNATIONAL INTEREST REVIEW GROUP
V. Felix
Y.-G. Kim
S. H. Leong
W. Lin
O. F. Manafa
C. Minu
Y.-W. Park
A. R. R. Nogales
P. Williamson
COMMITTEE ON POWER BOILERS (BPV I)
R. E. McLaughlin, Chair
E. M. Ortman, Vice Chair
U. D’Urso, Staff Secretary
D. I. Anderson
J. L. Arnold
D. L. Berger
K. K. Coleman
P. D. Edwards
J. G. Feldstein
G. W. Galanes
T. E. Hansen
J. F. Henry
J. S. Hunter
G. B. Komora
F. Massi
L. Moedinger
P. A. Molvie
Y. Oishi
J. T. Pillow
M. Slater
J. M. Tanzosh
D. E. Tompkins
D. E. Tuttle
J. Vattappilly
M. Wadkinson
R. V. Wielgoszinski
F. Zeller
H. Michael, Delegate
D. A. Canonico, Honorary Member
D. N. French, Honorary Member
J. Hainsworth, Honorary Member
C. Jeerings, Honorary Member
W. L. Lowry, Honorary Member
J. R. MacKay, Honorary Member
T. C. McGough, Honorary Member
B. W. Roberts, Honorary Member
R. D. Schueler, Jr., Honorary
Member
R. L. Williams, Honorary Member
L. W. Yoder, Honorary Member
Subgroup on Design (BPV I)
J. Vattappilly, Chair
G. B. Komora, Vice Chair
D. I. Anderson, Secretary
D. Dewees
H. A. Fonzi, Jr.
J. P. Glaspie
L. Krupp
P. A. Molvie
L. S. Tsai
M. Wadkinson
C. F. Jeerings, Contributing Member
Subgroup on Fabrication and Examination (BPV I)
J. L. Arnold, Chair
P. F. Gilston, Vice Chair
P. Becker, Secretary
D. L. Berger
S. Fincher
G. W. Galanes
J. Hainsworth
T. E. Hansen
P. Jennings
C. T. McDaris
R. E. McLaughlin
R. J. Newell
Y. Oishi
J. T. Pillow
R. V. Wielgoszinski
Subgroup on General Requirements and Piping (BPV I)
E. M. Ortman, Chair
D. E. Tompkins, Vice Chair
F. Massi, Secretary
P. Becker
D. L. Berger
P. D. Edwards
T. E. Hansen
M. Ishikawa
M. Lemmons
R. E. McLaughlin
B. J. Mollitor
J. T. Pillow
D. E. Tuttle
M. Wadkinson
R. V. Wielgoszinski
C. F. Jeerings, Contributing Member
W. L. Lowry, Contributing Member
Subgroup on Locomotive Boilers (BPV I)
P. Boschan, Chair
J. R. Braun, Vice Chair
S. M. Butler, Secretary
A. Biesecker
C. Cross
R. C. Franzen, Jr.
G. W. Galanes
D. W. Griner
S. D. Jackson
M. A. Janssen
S. A. Lee
L. Moedinger
G. M. Ray
R. B. Stone
M. W. Westland
xxiii
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Subgroup on Materials (BPV I)
K. K. Coleman, Chair
K. Hayes, Vice Chair
M. Lewis, Secretary
S. H. Bowes
D. A. Canonico
G. W. Galanes
P. F. Gilston
J. F. Henry
J. S. Hunter
E. Liebl
F. Masuyama
M. Ortolani
D. W. Rahoi
J. M. Tanzosh
J. Vattappilly
F. Zeller
M. Gold, Contributing Member
B. W. Roberts, Contributing
Member
Subgroup on Solar Boilers (BPV I)
P. Jennings, Chair
R. E. Hearne, Secretary
H. A. Fonzi, Jr.
J. S. Hunter
F. Massi
E. M. Ortman
Task Group on Modernization (BPV I)
D. I. Anderson, Chair
U. D’Urso, Staff Secretary
J. L. Arnold
D. Dewees
G. W. Galanes
J. P. Glaspie
T. E. Hansen
J. F. Henry
R. E. McLaughlin
P. A. Molvie
E. M. Ortman
D. E. Tuttle
J. Vattappilly
Germany International Working Group (BPV I)
A. Spangenberg, Chair
M. Bremicker
P. Chavdarov
B. Daume
J. Fleischfresser
R. Helmholdt
R. Kauer
D. Koelbl
S. Krebs
T. Ludwig
R. A. Meyers
H. Michael
F. Miunske
B. Müller
H. Schroeder
M. Sykora
J. Henrichsmeyer, Contributing
Member
P. Paluszkiewicz, Contributing
Member
R. Uebel, Contributing Member
India International Working Group (BPV I)
H. Dalal, Chair
A. R. Patil, Vice Chair
T. Dhanraj, Secretary
P. Brahma
M. R. Kalahasthi
S. A. Kumar
A. J. Patil
S. Purkait
S. Radhakrishnan
G. V. S. Rao
M. G. Rao
U. Revisankaran
G. U. Shanker
D. K. Shrivastava
K. Singha
S. Venkataramana
COMMITTEE ON MATERIALS (BPV II)
J. Cameron, Chair
J. F. Grubb, Vice Chair
C. E. O’Brien, Staff Secretary
A. Appleton
A. Chaudouet
J. R. Foulds
D. W. Gandy
J. A. Hall
J. F. Henry
K. M. Hottle
M. Ishikawa
F. Masuyama
K. E. Orie
D. W. Rahoi
E. Shapiro
M. J. Slater
R. C. Sutherlin
J. M. Tanzosh
R. G. Young
F. Zeller
O. Oldani, Delegate
F. Abe, Contributing Member
H. D. Bushfield, Contributing
Member
D. A. Canonico, Contributing
Member
D. B. Denis, Contributing Member
J. D. Fritz, Contributing Member
M. Gold, Contributing Member
W. Hoffelner, Contributing Member
M. Katcher, Contributing Member
R. K. Nanstad, Contributing
Member
M. L. Nayyar, Contributing Member
D. T. Peters, Contributing Member
B. W. Roberts, Contributing
Member
J. J. Sanchez-Hanton, Contributing
Member
R. W. Swindeman, Contributing
Member
E. Upitis, Contributing Member
T. M. Cullen, Honorary Member
W. D. Edsall, Honorary Member
G. C. Hsu, Honorary Member
R. A. Moen, Honorary Member
C. E. Spaeder, Jr., Honorary
Member
A. W. Zeuthen, Honorary Member
Executive Committee (BPV II)
J. Cameron, Chair
C. E. O’Brien, Staff Secretary
A. Appleton
A. Chaudouet
M. Gold
J. F. Grubb
J. F. Henry
M. Ishikawa
D. L. Kurle
R. W. Mikitka
E. Shapiro
M. J. Slater
R. C. Sutherlin
R. W. Swindeman
Subgroup on External Pressure (BPV II)
D. L. Kurle, Chair
S. Guzey, Vice Chair
J. A. A. Morrow, Secretary
L. F. Campbell
H. Chen
D. S. Griffin
J. F. Grubb
M. H. Jawad
S. Krishnamurthy
R. W. Mikitka
C. R. Thomas
M. Wadkinson
M. Katcher, Contributing Member
Subgroup on Ferrous Specifications (BPV II)
A. Appleton, Chair
K. M. Hottle, Vice Chair
C. Hyde, Secretary
H. Chen
B. M. Dingman
M. J. Dosdourian
O. Elkadim
D. Fialkowski
M. Gold
T. Graham
J. M. Grocki
J. F. Grubb
J. Gundlach
D. S. Janikowski
L. J. Lavezzi
S. G. Lee
W. C. Mack
A. S. Melilli
K. E. Orie
D. Poweleit
J. Shick
E. Upitis
R. Zawierucha
J. D. Fritz, Contributing Member
xxiv
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Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS-
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Subgroup on International Material Specifications (BPV II)
M. Ishikawa, Chair
A. R. Nywening, Vice Chair
B. Mruk, Secretary
A. Chaudouet
P. Chavdarov
H. Chen
A. F. Garbolevsky
D. O. Henry
W. M. Lundy
E. Upitis
F. Zeller
O. Oldani, Delegate
D. A. Canonico, Contributing
Member
H. Lorenz, Contributing Member
T. F. Miskell, Contributing Member
Subgroup on Nonferrous Alloys (BPV II)
E. Shapiro, Chair
S. Yem, Vice Chair
J. Robertson, Secretary
R. Beldyk
J. Calland
J. M. Downs
J. F. Grubb
D. Maitra
J. A. McMaster
D. W. Rahoi
W. Ren
R. C. Sutherlin
J. Weritz
R. Wright
D. B. Denis, Contributing Member
M. Katcher, Contributing Member
D. T. Peters, Contributing Member
Subgroup on Physical Properties (BPV II)
J. F. Grubb, Chair
G. Aurioles, Sr.
D. Chandiramani
P. Chavdarov
H. Eshraghi
B. F. Hantz
R. D. Jones
P. K. Lam
S. Neilsen
D. W. Rahoi
P. K. Rai
E. Shapiro
M. S. Shelton
D. K. Verma
S. Yem
H. D. Bushfield, Contributing
Member
D. B. Denis, Contributing Member
Subgroup on Strength, Ferrous Alloys (BPV II)
M. J. Slater, Chair
S. W. Knowles, Vice Chair
D. A. Canonico
A. Di Rienzo
J. R. Foulds
J. A. Hall
J. F. Henry
F. Masuyama
T. Ono
M. Ortolani
D. W. Rahoi
M. S. Shelton
J. M. Tanzosh
R. G. Young
F. Zeller
F. Abe, Contributing Member
M. Gold, Contributing Member
M. Nair, Contributing Member
B. W. Roberts, Contributing
Member
Subgroup on Strength of Weldments (BPV II & BPV IX)
G. W. Galanes, Chair
K. L. Hayes, Vice Chair
S. H. Bowes
K. K. Coleman
M. Denault
P. D. Flenner
J. R. Foulds
D. W. Gandy
M. Ghahremani
J. F. Henry
E. Liebl
W. F. Newell, Jr.
J. Penso
D. W. Rahoi
B. W. Roberts
W. J. Sperko
J. P. Swezy, Jr.
J. M. Tanzosh
M. Gold, Contributing Member
J. J. Sanchez-Hanton, Contributing
Member
Working Group on Materials Database (BPV II)
J. F. Henry, Chair
C. E. O’Brien, Staff Secretary
F. Abe
J. R. Foulds
M. J. Slater
R. C. Sutherlin
D. Andrei, Contributing Member
J. L. Arnold, Contributing Member
J. Grimes, Contributing Member
W. Hoffelner, Contributing Member
D. T. Peters, Contributing Member
W. Ren, Contributing Member
B. W. Roberts, Contributing
Member
R. W. Swindeman, Contributing
Member
Working Group on Creep Strength Enhanced Ferritic Steels (BPV II)
J. F. Henry, Chair
M. Ortolani, Vice Chair
J. A. Siefert, Secretary
S. H. Bowes
D. A. Canonico
K. K. Coleman
P. D. Flenner
J. R. Foulds
G. W. Galanes
M. Lang
F. Masuyama
T. Melfi
W. F. Newell, Jr.
J. Parker
J. J. Sanchez-Hanton
W. J. Sperko
J. M. Tanzosh
R. H. Worthington
R. G. Young
F. Zeller
F. Abe, Contributing Member
G. Cumino, Contributing Member
B. W. Roberts, Contributing
Member
R. W. Swindeman, Contributing
Member
Working Group on Data Analysis (BPV II)
J. F. Grubb, Chair
J. R. Foulds
J. F. Henry
F. Masuyama
M. Ortolani
W. Ren
M. Subanovic
M. J. Swindeman
F. Abe, Contributing Member
M. Gold, Contributing Member
W. Hoffelner, Contributing Member
M. Katcher, Contributing Member
D. T. Peters, Contributing Member
B. W. Roberts, Contributing
Member
R. W. Swindeman, Contributing
Member
China International Working Group (BPV II)
A. T. Xu, Secretary
W. Fang
Q. C. Feng
S. Huo
F. Kong
H. Li
J. Li
S. Li
Z. Rongcan
S. Tan
C. Wang
J. Wang
Q.-J. Wang
X. Wang
F. Yang
G. Yang
H.-C. Yang
J. Yang
R. Ye
L. Yin
D. Zhang
H. Zhang
X.-H. Zhang
Yingkai Zhang
Yong Zhang
Q. Zhao
S. Zhao
xxv
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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COMMITTEE ON CONSTRUCTION OF NUCLEAR FACILITY
COMPONENTS (BPV III)
R. S. Hill III, Chair
R. B. Keating, Vice Chair
J. C. Minichiello, Vice Chair
A. Byk, Staff Secretary
T. M. Adams
A. Appleton
R. W. Barnes
W. H. Borter
C. W. Bruny
T. D. Burchell
R. P. Deubler
P. R. Donavin
A. C. Eberhardt
J. V. Gardiner
J. Grimm
S. Hunter
R. M. Jessee
R. I. Jetter
C. C. Kim
G. H. Koo
V. Kostarev
M. A. Lockwood
K. A. Manoly
D. E. Matthews
M. N. Mitchell
M. Morishita
D. K. Morton
T. Nagata
J. E. Nestell
E. L. Pleins
R. F. Reedy, Sr.
I. Saito
S. Sham
G. J. Solovey
W. K. Sowder, Jr.
W. J. Sperko
J. P. Tucker
C. S. Withers
H.-T. Wang, Delegate
C. T. Smith, Contributing Member
M. Zhou, Contributing Member
E. B. Branch, Honorary Member
G. D. Cooper, Honorary Member
D. F. Landers, Honorary Member
R. A. Moen, Honorary Member
C. J. Pieper, Honorary Member
K. R. Wichman, Honorary Member
Executive Committee (BPV III)
R. S. Hill III, Chair
A. Byk, Staff Secretary
T. M. Adams
C. W. Bruny
P. R. Donavin
J. V. Gardiner
J. Grimm
R. B. Keating
J. C. Minichiello
J. A. Munshi
J. E. Nestell
S. Sham
G. J. Solovey
W. K. Sowder, Jr.
Subcommittee on Design (BPV III)
P. R. Donavin, Chair
T. M. Adams, Vice Chair
R. L. Bratton
C. W. Bruny
R. P. Deubler
M. A. Gray
S. Horowitz
R. I. Jetter
R. B. Keating
K. A. Manoly
R. J. Masterson
D. E. Matthews
S. McKillop
M. N. Mitchell
W. J. O’Donnell, Sr.
S. Sham
J. P. Tucker
W. F. Weitze
T. Yamazaki
J. Yang
R. S. Hill III, Contributing Member
G. L. Hollinger, Contributing
Member
M. H. Jawad, Contributing Member
K. Wright, Contributing Member
Subgroup on Component Design (SC-D) (BPV III)
T. M. Adams, Chair
R. B. Keating, Vice Chair
S. Pellet, Secretary
D. J. Ammerman
G. A. Antaki
S. Asada
J. F. Ball
C. Basavaraju
D. Chowdhury
R. P. Deubler
P. Hirschberg
M. Kassar
O.-S. Kim
H. Kobayashi
K. A. Manoly
R. J. Masterson
D. E. Matthews
J. C. Minichiello
D. K. Morton
T. M. Musto
T. Nagata
I. Saito
G. C. Slagis
J. R. Stinson
G. Z. Tokarski
J. P. Tucker
P. Vock
C. Wilson
J. Yang
C. W. Bruny, Contributing Member
A. A. Dermenjian, Contributing
Member
K. R. Wichman, Honorary Member
Working Group on Core Support Structures (SG-CD) (BPV III)
J. Yang, Chair
D. Keck, Secretary
L. C. Hartless
J. F. Kielb
T. Liszkai
H. S. Mehta
M. Nakajima
M. D. Snyder
R. Vollmer
T. M. Wiger
Y. Wong
R. Z. Ziegler
Working Group on Design of Division 3 Containment Systems
(SG-CD) (BPV III)
D. J. Ammerman, Chair
G. Bjorkman
V. Broz
S. Horowitz
S. Klein
D. W. Lewis
J. C. Minichiello
D. K. Morton
X. Zhai
X. Zhang
D. Dunn, Alternate
I. D. McInnes, Contributing Member
H. P. Shrivastava, Contributing
Member
Working Group on HDPE Design of Components (SG-CD) (BPV III)
T. M. Musto, Chair
J. Ossmann, Secretary
T. M. Adams
T. A. Bacon
M. Brandes
S. Choi
J. R. Hebeisen
P. Krishnaswamy
K. A. Manoly
M. Martin
J. C. Minichiello
D. P. Munson
F. J. Schaaf, Jr.
R. Stakenborghs
J. Wright
M. T. Audrain, Alternate
D. Burwell, Contributing Member
xxvi
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Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Working Group on Piping (SG-CD) (BPV III)
G. A. Antaki, Chair
G. Z. Tokarski, Secretary
T. M. Adams
T. A. Bacon
C. Basavaraju
J. Catalano
F. Claeys
C. M. Faidy
R. G. Gilada
N. M. Graham
M. A. Gray
R. J. Gurdal
R. W. Haupt
A. Hirano
P. Hirschberg
M. Kassar
J. Kawahata
R.B. Keating
V. Kostarev
D. Lieb
T. B. Littleton
J. F. McCabe
J. C. Minichiello
I.-K. Nam
G. C. Slagis
N. C. Sutherland
C.-I. Wu
Y. Liu, Contributing Member
A. N. Nguyen, Contributing Member
M. S. Sills, Contributing Member
E. A. Wais, Contributing Member
Working Group on Pressure Relief (SG-CD) (BPV III)
J. F. Ball, Chair
J. W. Dickson
S. Jones
R. Krithivasan
R. Lack
K. R. May
D. Miller
T. Patel
K. Shores
I. H. Tseng
J. Yu
N. J. Hansing, Alternate
B. J. Yonsky, Alternate
S. T. French, Contributing Member
D. B. Ross, Contributing Member
Working Group on Pumps (SG-CD) (BPV III)
D. Chowdhury, Chair
J. V. Gregg, Jr., Secretary
X. Di
M. D. Eftychiou
C. Gabhart
J. Kikushima
R. Klein
R. Ladefian
W. Lienau
K. J. Noel
R. A. Patrick
J. Sulley
A. G. Washburn
Y. Wong
Working Group on Supports (SG-CD) (BPV III)
J. R. Stinson, Chair
U. S. Bandyopadhyay, Secretary
K. Avrithi
T. H. Baker
F. J. Birch
R. P. Deubler
N. M. Graham
R. J. Masterson
S. Pellet
I. Saito
C. Stirzel
G. Z. Tokarski
A. Tsirigotis
L. Vandership
P. Wiseman
J. Huang, Alternate
Working Group on Valves (SG-CD) (BPV III)
P. Vock, Chair
S. Jones, Secretary
M. C. Buckley
R. Farrell
G. A. Jolly
J. Lambin
T. Lippucci
C. A. Mizer
H. O’Brien
J. O’Callaghan
K. E. Reid II
J. Sulley
I. H. Tseng
J. P. Tucker
N. J. Hansing, Alternate
Working Group on Vessels (SG-CD) (BPV III)
D. E. Matthews, Chair
S. Willoughby, Secretary
J. Arthur
C. Basavaraju
M. Kassar
R. B. Keating
D. Keck
J. I. Kim
O.-S. Kim
T. Mitsuhashi
D. Murphy
T. J. Schriefer
M. C. Scott
P. K. Shah
J. Shupert
C. Turylo
D. Vlaicu
C. Wilson
T. Yamazaki
R. Z. Ziegler
B. Basu, Contributing Member
A. Kalnins, Contributing Member
W. F. Weitze, Contributing Member
Subgroup on Design Methods (SC-D) (BPV III)
C. W. Bruny, Chair
P. R. Donavin, Vice Chair
S. McKillop, Secretary
K. Avrithi
L. Davies
S. R. Gosselin
M. A. Gray
J. V. Gregg, Jr.
H. T. Harrison III
K. Hsu
D. Keck
J. I. Kim
M. N. Mitchell
W. J. O’Donnell, Sr.
W. D. Reinhardt
P. Smith
S. D. Snow
R. Vollmer
W. F. Weitze
K. Wright
T. M. Adams, Contributing Member
Working Group on Design Methodology (SG-DM) (BPV III)
S. McKillop, Chair
R. Vollmer, Secretary
K. Avrithi
C. Basavaraju
D. L. Caldwell
C. M. Faidy
R. Farrell
H. T. Harrison III
C. F. Heberling II
P. Hirschberg
M. Kassar
R. B. Keating
J. I. Kim
H. Kobayashi
T. Liszkai
J. F. McCabe
S. Ranganath
W. D. Reinhardt
P. K. Shah
S. D. Snow
S. Wang
W. F. Weitze
J. Wen
T. M. Wiger
K. Wright
J. Yang
R. D. Blevins, Contributing Member
M. R. Breach, Contributing Member
Working Group on Environmental Effects (SG-DM) (BPV III)
L. Davies, Chair
B. D. Frew, Secretary
P. J. Dobson
J. I. Kim
J. E. Nestell
M. Osterfoss
T. J. Schriefer
I. H. Tseng
Working Group on Environmental Fatigue Evaluation Methods
(SG-DM) (BPV III)
M. A. Gray, Chair
W. F. Weitze, Secretary
T. M. Adams
S. Asada
K. Avrithi
R. C. Cipolla
T. M. Damiani
C. M. Faidy
T. D. Gilman
S. R. Gosselin
Y. He
P. Hirschberg
H. S. Mehta
T. Metais
J.-S. Park
B. Pellereau
I. Saito
D. Vlaicu
K. Wang
K. Wright
R. Z. Ziegler
xxvii
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Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Working Group on Fatigue Strength (SG-DM) (BPV III)
P. R. Donavin, Chair
M. S. Shelton, Secretary
T. M. Damiani
C. M. Faidy
P. Gill
S. R. Gosselin
R. J. Gurdal
C. F. Heberling II
C. E. Hinnant
P. Hirschberg
K. Hsu
S. H. Kleinsmith
S. Majumdar
S. N. Malik
H. S. Mehta
S. Mohanty
S. Ranganath
A. Tsirigotis
D. Dewees, Contributing Member
W. J. O'Donnell, Sr., Contributing
Member
K. Wright, Contributing Member
Working Group on Graphite and Composite Design
(SG-DM) (BPV III)
M. N. Mitchell, Chair
T. D. Burchell, Secretary
A. Appleton
S.-H. Chi
W. J. Geringer
S. T. Gonczy
M. G. Jenkins
Y. Katoh
J. Ossmann
W. Windes
A. Yeshnik
S. Yu
G. L. Zeng
N. McMurray, Alternate
Working Group on Probabilistic Methods in Design
(SG-DM) (BPV III)
M. Golliet, Chair
T. Asayama
K. Avrithi
G. Brouette
J. Hakii
D. O. Henry
R. S. Hill III
M. Morishita
P. J. O'Regan
I. Saito
Special Working Group on Computational Modeling for Explicit
Dynamics (SG-DM) (BPV III)
G. Bjorkman, Chair
D. J. Ammerman, Vice Chair
V. Broz, Secretary
M. R. Breach
J. M. Jordan
S. Kuehner
D. Molitoris
W. D. Reinhardt
P. Y.-K. Shih
S. D. Snow
C.-F. Tso
M. C. Yaksh
U. Zencker
A. Rigato, Alternate
Subgroup on Elevated Temperature Design (SC-D) (BPV III)
S. Sham, Chair
T. Asayama
C. Becht IV
F. W. Brust
P. Carter
M. E. Cohen
B. F. Hantz
M. H. Jawad
R. I. Jetter
K. Kimura
G. H. Koo
T. Le
J. E. Nestell
R. Wright
A. B. Hull, Alternate
D. S. Griffin, Contributing Member
S. Majumdar, Contributing Member
D. L. Marriott, Contributing
Member
W. J. O'Donnell, Sr., Contributing
Member
R. W. Swindeman, Contributing
Member
Working Group on Allowable Stress Criteria (SG-ETD) (BPV III)
R. Wright, Chair
M. J. Swindeman, Secretary
C. J. Johns
K. Kimura
T. Le
D. Maitra
M. McMurtrey
J. E. Nestell
W. Ren
S. Sham
X. Wei
S. N. Malik, Alternate
J. R. Foulds, Contributing Member
R. W. Swindeman, Contributing
Member
Working Group on Analysis Methods (SG-ETD) (BPV III)
P. Carter, Chair
M. J. Swindeman, Secretary
M. E. Cohen
R. I. Jetter
T. Le
M. C. Messner
S. Sham
X. Wei
A. Tsirigotis, Alternate
S. Krishnamurthy, Contributing
Member
Working Group on Creep-Fatigue and Negligible Creep (SG-ETD)
(BPV III)
T. Asayama, Chair
F. W. Brust
P. Carter
M. E. Cohen
R. I. Jetter
G. H. Koo
T. Le
B.-L. Lyow
M. McMurtrey
M. C. Messner
H. Qian
S. Sham
Y. Wang
X. Wei
N. McMurray, Alternate
Working Group on Elevated Temperature Construction (SG-ETD)
(BPV III)
A. Mann, Chair
C. Nadarajah, Secretary
D. I. Anderson
D. Dewees
B. F. Hantz
M. H. Jawad
R. I. Jetter
S. Krishnamurthy
T. Le
M. N. Mitchell
P. Prueter
M. J. Swindeman
N. McMurray, Alternate
J. P. Glaspie, Contributing Member
D. L. Marriott, Contributing
Member
B. J. Mollitor, Contributing Member
Working Group on High Temperature Flaw Evaluation (SG-ETD)
(BPV III)
F. W. Brust, Chair
P. Carter
S. Kalyanam
T. Le
M. C. Messner
H. Qian
P. J. Rush
D.-J. Shim
X. Wei
S. X. Xu
N. McMurray, Alternate
Special Working Group on Inelastic Analysis Methods (SG-ETD)
(BPV III)
M. C. Messner, Chair
S. X. Xu, Secretary
R. W. Barnes
J. A. Blanco
T. Hassan
G. H. Koo
B.-L. Lyow
S. Sham
M. J. Swindeman
X. Wei
G. L. Zeng
xxviii
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Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Subgroup on General Requirements (BPV III)
J. V. Gardiner, Chair
J. Rogers, Secretary
V. Apostolescu
A. Appleton
S. Bell
J. R. Berry
G. Brouette
J. W. Highlands
E. V. Imbro
K. A. Kavanagh
Y.-S. Kim
B. McGlone
E. C. Renaud
T. N. Rezk
D. J. Roszman
W. K. Sowder, Jr.
R. Spuhl
G. E. Szabatura
D. M. Vickery
C. S. Withers
J. DeKleine, Contributing Member
H. Michael, Contributing Member
C. T. Smith, Contributing Member
Working Group on Duties and Responsibilities (SG-GR) (BPV III)
S. Bell, Chair
N. DeSantis, Secretary
J. R. Berry
P. J. Coco
Y. Diaz-Castillo
J. V. Gardiner
E. V. Imbro
K. A. Kavanagh
D. J. Roszman
B. S. Sandhu
J. L. WilliamsJ. DeKleine, Contributing Member
Working Group on Quality Assurance, Certification, and Stamping
(SG-GR) (BPV III)
B. McGlone, Chair
J. Grimm, Secretary
V. Apostolescu
A. Appleton
G. Brouette
O. Elkadim
S. M. Goodwin
J. Harris
J. W. Highlands
K. A. Kavanagh
Y.-S. Kim
D. T. Meisch
R. B. Patel
E. C. Renaud
T. N. Rezk
J. Rogers
W. K. Sowder, Jr.
R. Spuhl
J. F. Strunk
G. E. Szabatura
D. M. Vickery
C. S. Withers
C. A. Spletter, Contributing Member
Special Working Group on General Requirements Consolidation
(SG-GR) (BPV III)
J. V. Gardiner, Chair
C. T. Smith, Vice Chair
S. Bell
M. B. Cusick
Y. Diaz-Castillo
J. Grimm
J. M. Lyons
B. McGlone
R. B. Patel
E. C. Renaud
T. N. Rezk
J. Rogers
D. J. Roszman
B. S. Sandhu
G. J. Solovey
R. Spuhl
G. E. Szabatura
J. L. Williams
C. S. Withers
S. F. Harrison, Jr., Contributing
Member
Working Group on General Requirements for Graphite and Ceramic
Composite Core Components and Assemblies (SG-GR) (BPV III)
A. Appleton, Chair
W. J. Geringer, Secretary
J. R. Berry
T. D. Burchell
M. N. Mitchell
E. C. Renaud
W. Windes
A. Yeshnik
N. McMurray, Alternate
Subgroup on Materials, Fabrication, and Examination (BPV III)
J. Grimm, Chair
B. D. Frew, Vice Chair
S. Hunter, Secretary
W. H. Borter
T. D. Burchell
S. Cho
P. J. Coco
R. H. Davis
G. B. Georgiev
S. E. Gingrich
M. Golliet
L. S. Harbison
R. M. Jessee
J. Johnston, Jr.
C. C. Kim
M. Lashley
T. Melfi
I.-K. Nam
J. Ossmann
J. E. O’Sullivan
M. C. Scott
W. J. Sperko
J. R. Stinson
J. F. Strunk
W. Windes
R. Wright
S. Yee
H. Michael, Delegate
R. W. Barnes, Contributing Member
G. R. Cannell, Contributing Member
D. B. Denis, Contributing Member
Working Group on Graphite and Composite Materials (SG-MFE)
(BPV III)
T. D. Burchell, Chair
M. N. Mitchell, Secretary
A. Appleton
R. L. Bratton
S. R. Cadell
S.-H. Chi
A. Covac
S. W. Doms
S. F. Duffy
W. J. Geringer
S. T. Gonzcy
M. G. Jenkins
Y. Katoh
J. Ossmann
M. Roemmler
N. Salstrom
T. Shibata
W. Windes
A. Yeshnik
S. Yu
G. L. Zeng
N. McMurray, Alternate
Working Group on HDPE Materials (SG-MFE) (BPV III)
G. Brouette, Chair
M. A. Martin, Secretary
W. H. Borter
M. C. Buckley
M. Golliet
J. Hakii
J. Johnston, Jr.
P. Krishnaswamy
D. P. Munson
T. M. Musto
S. Patterson
S. Schuessler
R. Stakenborghs
M. Troughton
J. Wright
B. Hauger, Contributing Member
Joint ACI-ASME Committee on Concrete Components for Nuclear
Service (BPV III)
J. A. Munshi, Chair
J. McLean, Vice Chair
J. Cassamassino, Staff Secretary
C. J. Bang
L. J. Colarusso
A. C. Eberhardt
F. Farzam
P. S. Ghosal
B. D. Hovis
T. C. Inman
C. Jones
O. Jovall
T. Kang
N.-H. Lee
T. Muraki
N. Orbovic
J. F. Strunk
G. Thomas
T. Tonyan
S. Wang
J. F. Artuso, Contributing Member
S. Bae, Contributing Member
J.-B. Domage, Contributing Member
B. B. Scott, Contributing Member
M. R. Senecal, Contributing
Member
Z. Shang, Contributing Member
M. Sircar, Contributing Member
C. T. Smith, Contributing Member
xxix
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Working Group on Design (BPV III-2)
N.-H. Lee, Chair
S. Wang, Vice Chair
M. Allam
S. Bae
L. J. Colarusso
A. C. Eberhardt
F. Farzam
P. S. Ghosal
B. D. Hovis
T. C. Inman
C. Jones
O. Jovall
J. A. Munshi
T. Muraki
G. Thomas
M. Diaz, Contributing Member
A. Istar, Contributing Member
S.-Y. Kim, Contributing Member
J. Kwon, Contributing Member
B. R. Laskewitz, Contributing
Member
B. B. Scott, Contributing Member
Z. Shang, Contributing Member
M. Shin, Contributing Member
M. Sircar, Contributing Member
Working Group on Materials, Fabrication, and Examination
(BPV III-2)
T. Tonyan, Chair
A. Eberhardt, Vice Chair
M. Allam
C. J. Bang
B. Birch
J.-B. Domage
P. S. Ghosal
C. Jones
T. Kang
N.-H. Lee
Z. Shang
J. F. Strunk
I. Zivanovic
J. F. Artuso, Contributing Member
B. B. Scott, Contributing Member
Special Working Group on Modernization (BPV III-2)
N. Orbovic, Chair
J. McLean, Vice Chair
A. Adediran
O. Jovall
N. Stoeva
S. Wang
I. Zivanovic
J.-B. Domage, Contributing Member
F. Lin, Contributing Member
M. A. Ugalde, Contributing Member
Subgroup on Containment Systems for Spent Nuclear Fuel and
High-Level Radioactive Material (BPV III)
G. J. Solovey, Chair
D. J. Ammerman, Vice Chair
G. Bjorkman
V. Broz
S. Horowitz
S. Klein
D. W. Lewis
D. K. Morton
E. L. Pleins
J. Wellwood
X. J. Zhai
D. Dunn, Alternate
W. H. Borter, Contributing Member
P. E. McConnell, Contributing
Member
N. M. Simpson, Contributing
Member
R. H. Smith, Contributing Member
Subgroup on Fusion Energy Devices (BPV III)
W. K. Sowder, Jr., Chair
D. Andrei, Staff Secretary
D. J. Roszman, Secretary
M. Bashir
L. C. Cadwallader
B. R. Doshi
G. Holtmeier
K. A. Kavanagh
K. Kim
I. Kimihiro
S. Lee
G. Li
X. Li
P. Mokaria
T. R. Muldoon
M. Porton
F. J. Schaaf, Jr.
P. Smith
Y. Song
M. Trosen
C. Waldon
I. J. Zatz
R. W. Barnes, Contributing Member
Working Group on General Requirements (BPV III-4)
D. J. Roszman, Chair W. K. Sowder, Jr.
Working Group on In-Vessel Components (BPV III-4)
M. Bashir, Chair
Y. Carin
M. Kalsey
Working Group on Magnets (BPV III-4)
S. Lee, Chair K. Kim, Vice Chair
Working Group on Materials (BPV III-4)
M. Porton, Chair P. Mummery
Working Group on Vacuum Vessels (BPV III-4)
I. Kimihiro, Chair
L. C. Cadwallader
B. R. Doshi
Q. Shijun
Y. Song
Subgroup on High Temperature Reactors (BPV III)
J. E. Nestell, Chair
N. Broom
T. D. Burchell
M. E. Cohen
R. I. Jetter
G. H. Koo
D. K. Morton
S. Sham
W. Windes
A. Yeshnik
G. L. Zeng
N. McMurray, Alternate
X. Li, Contributing Member
M. Morishita, Contributing Member
L. Shi, Contributing Member
Working Group on High Temperature Gas-Cooled Reactors
(BPV III-5)
J. E. Nestell, Chair
N. Broom
T. D. Burchell
R. I. Jetter
Y. W. Kim
T. Le
D. K. Morton
S. Sham
G. L. Zeng
S. N. Malik, Alternate
X. Li, Contributing Member
L. Shi, Contributing Member
Working Group on High Temperature Liquid-Cooled Reactors
(BPV III-5)
S. Sham, Chair
M. Arcaro
T. Asayama
R. W. Barnes
P. Carter
M. E. Cohen
A. B. Hull
R. I. Jetter
G. H. Koo
T. Le
J. E. Nestell
X. Wei
C. Moyer, Alternate
S. Majumdar, Contributing Member
M. Morishita, Contributing Member
G. Wu, Contributing Member
xxx
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Argentina International Working Group (BPV III)
J. Fernández, Chair
A. Politi, Vice Chair
O. Martinez, Staff Secretary
A. Gomez, Secretary
A. Acrogliano
W. Agrelo
G. O. Anteri
M. Anticoli
C. A. Araya
J. P. Balbiani
A. A. Betervide
D. O. Bordato
G. Bourguigne
M. L. Cappella
A. Claus
R. G. Cocco
A. Coleff
A. J. Dall’Osto
L. M. De Barberis
D. P. Delfino
D. N. Dell’Erba
F. G. Diez
A. Dominguez
S. A. Echeverria
E. P. Fresquet
M. M. Gamizo
I. M. Guerreiro
R. S. Hill III
I. A. Knorr
M. F. Liendo
L. R. Miño
J. Monte
R. L. Morard
A. E. Pastor
E. Pizzichini
J. L. Racamato
H. C. Sanzi
G. J. Scian
G. G. Sebastian
M. E. Szarko
P. N. Torano
A. Turrin
O. A. Verastegui
M. D. Vigliano
P. Yamamoto
M. ZuninoChina International Working Group (BPV III)
J. Yan, Chair
W. Tang, Vice Chair
Y. He, Secretary
L. Guo
Y. Jing
D. Kang
Y. Li
B. Liang
H. Lin
S. Liu
W. Liu
J. Ma
K. Mao
D. E. Matthews
W. Pei
G. Sun
Z. Sun
G. Tang
L. Ting
Y. Tu
Y. Wang
H. Wu
X. Wu
S. Xue
Z. Yin
G. Zhang
W. Zhang
W. Zhao
Y. Zhong
Z. Zhong
German International Working Group (BPV III)
J. Wendt, Chair
D. Koelbl, Vice Chair
R. Gersinska, Secretary
H.-R. Bath
P. R. Donavin
R. Döring
A. Huber
R. E. Hueggenberg
C. Huttner
E. Iacopetta
M. H. Koeppen
C. Kuschke
H.-W. Lange
T. Ludwig
X. Pitoiset
M. Reichert
G. Roos
J. Rudolph
H. Schau
L. Sybert
R. Trieglaff
F. Wille
S. Zickler
India International Working Group (BPV III)
R. N. Sen, Chair
S. B. Parkash, Vice Chair
A. D. Bagdare, Secretary
S. Aithal
H. Dalal
S. Kovalai
D. Kulkarni
R. Kumar
E. I. Pleins
M. Ponnusamy
K. R. Shah
B. K. Sreedhar
Korea International Working Group (BPV III)
G. H. Koo, Chair
S. S. Hwang, Vice Chair
O.-S. Kim, Secretary
H. S. Byun
S. Cho
G.-S. Choi
S. Choi
J. Y. Hong
N.-S. Huh
J.-K. Hwang
C. Jang
I. I. Jeong
H. J. Kim
J.-I. Kim
J.-S. Kim
K. Kim
M.-W. Kim
S.-S. Kim
Y.-B. Kim
Y.-S. Kim
D. Kwon
B. Lee
D. Lee
Sanghoon Lee
Sangil Lee
S.-G. Lee
H. Lim
I.-K. Nam
B. Noh
C.-K. Oh
C. Park
H. Park
J.-S. Park
Y. S. Pyun
T. Shin
S. Song
W. J. Sperko
J. S. Yang
O. Yoo
Special Working Group on Editing and Review (BPV III)
D. E. Matthews, Chair
R. L. Bratton
R. P. Deubler
A. C. Eberhardt
S. Horowitz
J. C. Minichiello
R. F. Reedy, Sr.
C. Wilson
Special Working Group on HDPE Stakeholders (BPV III)
M. Brandes, Chair
S. Patterson, Secretary
T. M. Adams
S. Choi
C. M. Faidy
M. Golliet
R. M. Jessee
J. Johnston, Jr.
M. Lashley
K. A. Manoly
D. P. Munson
T. M. Musto
J. E. O’Sullivan
V. Rohatgi
F. J. Schaaf, Jr.
R. Stakenborghs
M. Troughton
J. Wright
D. Burwell, Contributing Member
Special Working Group on Honors and Awards (BPV III)
R. M. Jessee, Chair
A. Appleton
R. W. Barnes
D. E. Matthews
J. C. Minichiello
Special Working Group on Industry Experience for New Plants
(BPV III & BPV XI)
J. T. Lindberg, Chair
J. Ossmann, Chair
M. C. Buckley, Secretary
A. Cardillo
T. L. Chan
P. J. Hennessey
D. O. Henry
J. Honcharik
C. G. Kim
O.-S. Kim
K. Matsunaga
D. E. Matthews
R. E. McLaughlin
D. W. Sandusky
T. Tsuruta
R. M. Wilson
S. M. Yee
A. Tsirigotis, Alternate
xxxi
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Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Special Working Group on International Meetings (BPV III)
D. E. Matthews, Chair
A. Byk, Staff Secretary
R. W. Barnes
T. D. Burchell
R. L. Crane
P. R. Donavin
R. S. Hill III
M. N. Mitchell
E. L. Pleins
R. F. Reedy, Sr.
C. A. Sanna
W. J. Sperko
Special Working Group on New Plant Construction Issues (BPV III)
E. L. Pleins, Chair
M. C. Scott, Secretary
A. Cardillo
P. J. Coco
J. Honcharik
E. V. Imbro
O.-S. Kim
M. Kris
J. C. Minichiello
D. W. Sandusky
R. R. Stevenson
M. L. Wilson
H. Xu
J. Yan
N. J. Hansing, Alternate
A. Byk, Contributing Member
Special Working Group on Regulatory Interface (BPV III)
E. V. Imbro, Chair
P. Malouines, Secretary
S. Bell
A. Cardillo
P. J. Coco
J. Grimm
J. Honcharik
K. Matsunaga
D. E. Matthews
B. McGlone
A. T. Roberts III
R. R. Stevenson
M. L. Wilson
N. J. Hansing, Alternate
COMMITTEE ON HEATING BOILERS (BPV IV)
J. A. Hall, Chair
T. L. Bedeaux, Vice Chair
C. R. Ramcharran, Staff Secretary
B. Calderon
J. Calland
J. P. Chicoine
J. M. Downs
J. L. Kleiss
J. Klug
P. A. Molvie
R. D. Troutt
M. Wadkinson
R. V. Wielgoszinski
H. Michael, Delegate
D. Picart, Delegate
B. J. Iske, Alternate
A. Heino, Contributing Member
S. V. Voorhees, Contributing
Member
Subgroup on Care and Operation of Heating Boilers (BPV IV)
R. D. Troutt, Chair
C. R. Ramcharran, Staff Secretary
B. Ahee
T. L. Bedeaux
J. Calland
J. M. Downs
J. A. Hall
J. L. Kleiss
P. A. Molvie
M. Wadkinson
C. Lasarte, Contributing Member
Subgroup on Cast Boilers (BPV IV)
J. P. Chicoine, Chair
C. R. Ramcharran, Staff Secretary
T. L. Bedeaux
J. M. Downs
J. A. Hall
J. L. Kleiss
M. Mengon
Subgroup on Materials (BPV IV)
M. Wadkinson, Chair
C. R. Ramcharran, Staff Secretary
L. Badziagowski
T. L. Bedeaux
J. Calland
J. M. Downs
J. A. Hall
B. J. Iske
Subgroup on Water Heaters (BPV IV)
J. Calland, Chair
C. R. Ramcharran, Staff Secretary
B. Ahee
L. Badziagowski
J. P. Chicoine
C. Dinic
B. J. Iske
J. L. Kleiss
P. A. Molvie
M. A. Taylor
T. E. Trant
R. D. Troutt
Subgroup on Welded Boilers (BPV IV)
P. A. Molvie, Chair
C. R. Ramcharran, Staff Secretary
B. Ahee
L. Badziagowski
T. L. Bedeaux
B. Calderon
J. Calland
C. Dinic
J. L. Kleiss
M. Mengon
R. D. Troutt
M. Wadkinson
R. V. Wielgoszinski
COMMITTEE ON NONDESTRUCTIVE EXAMINATION (BPV V)
G. W. Hembree, Chair
N. A. Finney, Vice Chair
C. R. Ramcharran, Staff Secretary
J. Bennett
P. L. Brown
M. A. Burns
N. Carter
C. Emslander
A. F. Garbolevsky
J. F. Halley
P. T. Hayes
S. A. Johnson
F. B. Kovacs
B. D. Laite
C. May
L. E. Mullins
A. B. Nagel
T. L. Plasek
F. J. Sattler
P. B. Shaw
C. Vorwald
G. M. Gatti, Delegate
X. Guiping, Delegate
S. J. Akrin, Contributing Member
J. E. Batey, Contributing Member
A. S. Birks, Contributing Member
N. Y. Faransso, Contributing
Member
R. W. Kruzic, Contributing Member
H. C. Graber, Honorary Member
O. F. Hedden, Honorary Member
J. R. MacKay, Honorary Member
T. G. McCarty, Honorary Member
Executive Committee (BPV V)
N. A. Finney, Chair
G. W. Hembree, Vice Chair
C. R. Ramcharran, Staff Secretary
C. Emslander
S. A. Johnson
F. B. Kovacs
A. B. Nagel
C. Vorwald
Subgroup on General Requirements/Personnel Qualifications and
Inquiries (BPV V)
C. Emslander, Chair
N. Carter, Vice Chair
J. Bennett
T. Clausing
N. A. Finney
G. W. Hembree
S. A. Johnson
F. B. Kovacs
K. Krueger
C. May
D. I. Morris
A. B. Nagel
S. J. Akrin, Contributing Member
J. E. Batey, Contributing Member
A. S. Birks, Contributing Member
N. Y. Faransso, Contributing
Member
J. P. Swezy, Jr., Contributing
Member
xxxii
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Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Subgroup on Surface Examination Methods (BPV V)
S. A. Johnson, Chair
C. May, Vice Chair
P. L. Brown
N. Carter
T. Clausing
N. Farenbaugh
N. A. Finney
J. F. Halley
K. Hayes
G. W. Hembree
B. D. Laite
L. E. Mullins
A. B. Nagel
F. J. Sattler
P. B. Shaw
M. Wolf
D. Woodward
G. M. Gatti, Delegate
S. J. Akrin, Contributing Member
J. E. Batey, Contributing Member
A. S. Birks, Contributing Member
N. Y. Faransso, Contributing
Member
R. W. Kruzic, Contributing Member
Subgroup on Volumetric Methods (BPV V)
A. B. Nagel, Chair
C. May, Vice Chair
P. L. Brown
J. M. Davis
N. A. Finney
A. F. Garbolevsky
J. F. Halley
R. W. Hardy
P. T. Hayes
G. W. Hembree
S. A. Johnson
F. B. Kovacs
C. Magruder
L. E. Mullins
T. L. Plasek
F. J. Sattler
C. Vorwald
G. M. Gatti, Delegate
S. J. Akrin, Contributing Member
J. E. Batey, Contributing Member
N. Y. Faransso, Contributing
Member
R. W. Kruzic, Contributing Member
Special Working Group on Advanced Ultrasonic Testing Technique
(BPV V)
L. E. Mullins, Chair
K. Krueger, Vice Chair
D. Adkins
D.Bajula
N. A. Finney
J. L. Garner
J. F. Haley
P. T. Hayes
M. Lozev
C. Magruder
M. Sens
Special Working Group on Full Matrix Capture (FMC) Ultrasonic
Testing (BPV V)
P. T. Hayes, Chair
K. Hayes, Vice Chair
D. Adkins
D. Bajula
D. Braconnier
J. Catty
B. Erne
S. Falter
N. A. Finney
J. L. Garner
R. T. Grotenhuis
J. F. Halley
G. W. Hembree
B. D. Laite
F. Laprise
M. Lozev
C. Magruder
F. Morrow
L. E. Mullins
A. B. Nagel
E. Peloquin
D. Richard
M. Sens
D. Tompkins
J. Vinyard
O. Volf
C. Wassink
Special Working Group on the Use of Unmanned Aerial Vehicles/
Systems for Inspection (BPV V)
G. W. Hembree, Chair
P. J. Coco, Vice Chair
L. Pulgarin, Staff Secretary
A. Bloye
T. Cinson
J. DiPalma
M. Ellis
S. Flash
R. T. Grotenhuis
K. Hayes
P. T. Hayes
R. Janowiak
C. May
L. E. Mullins
M. Orihuela
L. Petrosky
P. C. Prahl
J. Schroeter
K. Schupp
M. Sens
A. T. Taggart
R. Vayda
K. H. Kim, Delegate
R. J. Winn, Delegate
L. Zhang, Delegate
Q. Chen, Contributing Member
A. Cook, Contributing Member
A. E. Krauser, Contributing Member
X. Wen, Contributing Member
F. Wu, Contributing Member
Y. Yang, Contributing Member
Working Group on Acoustic Emissions (SG-VM) (BPV V)
N. Y. Faransso, Chair
S. R. Doctor, Vice Chair
J. Catty
V. F. Godinez-Azcuaga
R. K. Miller
M. A. Gonzalez, Alternate
J. E. Batey, Contributing Member
Working Group on Radiography (SG-VM) (BPV V)
C. Vorwald, Chair
F. B. Kovacs, Vice Chair
J. Anderson
P. L. Brown
C. Emslander
A. F. Garbolevsky
R. W. Hardy
G. W. Hembree
C. Johnson
S. A. Johnson
B. D. Laite
C. May
R. J. Mills
A. B. Nagel
T. L. Plasek
T. Vidimos
B. White
D. Woodward
S. J. Akrin, Contributing Member
J. E. Batey, Contributing Member
N. Y. Faransso, Contributing
Member
R. W. Kruzic, Contributing Member
Working Group on Ultrasonics (SG-VM) (BPV V)
N. A. Finney, Chair
J. F. Halley, Vice Chair
D. Adkins
C. Brown
J. M. Davis
C. Emslander
P. T. Hayes
S. A. Johnson
K. Krueger
B. D. Laite
C. Magruder
C. May
L. E. Mullins
A. B. Nagel
K. Page
F. J. Sattler
D. Tompkins
D. Van Allen
J. Vinyard
C. Vorwald
N. Y. Faransso, Contributing
Member
R. W. Kruzic, Contributing Member
Working Group on GuidedWave Ultrasonic Testing (SG-VM) (BPV V)
N. Y. Faransso, Chair
S. A. Johnson, Vice Chair
D. Alleyne
J. F. Halley
G. M. Light
P. Mudge
M. J. Quarry
J. Vanvelsor
J. E. Batey, Contributing Member
xxxiii
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Italy International Working Group (BPV V)
P. L. Dinelli, Chair
A. Veroni, Secretary
T. Aldo
R. Bertolotti
F. Bresciani
G. Campos
N. Caputo
M. Colombo
F. Ferrarese
E. Ferrari
M. A. Grimoldi
G. Luoni
O. Oldani
U. Papponetti
P. Pedersoli
M. Zambon
G. Gobbi, Contributing Member
G. Pontiggia, Contributing Member
COMMITTEE ON PRESSURE VESSELS (BPV VIII)
R. J. Basile, Chair
S. C. Roberts, Vice Chair
E. Lawson, Staff Secretary
S. J. Rossi, Staff Secretary
G. Aurioles, Sr.
J. Cameron
A. Chaudouet
D. B. DeMichael
J. P. Glaspie
J. F. Grubb
B. F. Hantz
L. E. Hayden, Jr.
M. Kowalczyk
D. L. Kurle
M. D. Lower
R. Mahadeen
S. A. Marks
R. W. Mikitka
G. M. Mital
B. R. Morelock
T. P. Pastor
D. T. Peters
M. J. Pischke
M. D. Rana
G. B. Rawls, Jr.
F. L. Richter
C. D. Rodery
J. C. Sowinski
D. Srnic
D. B. Stewart
P. L. Sturgill
D. A. Swanson
J. P. Swezy, Jr.
S. Terada
E. Upitis
A. Viet
K. Xu
P. A. McGowan, Delegate
H. Michael, Delegate
K. Oyamada, Delegate
M. E. Papponetti, Delegate
X. Tang, Delegate
W. S. Jacobs, Contributing Member
G. G. Karcher, Contributing
Member
K. T. Lau, Contributing Member
U. R. Miller, Contributing Member
K. Mokhtarian, Contributing
Member
K. K. Tam, Honorary Member
Executive Committee (BPV VIII)
S. C. Roberts, Chair
S. J. Rossi, Staff Secretary
G. Aurioles, Sr.
R. J. Basile
M. Kowalczyk
D. L. Kurle
M. D. Lower
R. Mahadeen
S. A. Marks
G. M. Mital
D. A. Swanson
A. Viet
Subgroup on Design (BPV VIII)
D. A. Swanson, Chair
J. C. Sowinski, Vice Chair
M. Faulkner, Secretary
G. Aurioles, Sr.
S. R. Babka
O. A. Barsky
R. J. Basile
M. R. Breach
F. L. Brown
D. Chandiramani
B. F. Hantz
C. E. Hinnant
C. S. Hinson
M. H. Jawad
S. Krishnamurthy
D. L. Kurle
M. D. Lower
R. W. Mikitka
B. Millet
T. P. Pastor
M. D. Rana
G. B. Rawls, Jr.
S. C. Roberts
C. D. Rodery
T. G. Seipp
D. Srnic
S. Terada
J. Vattappilly
R. A. Whipple
K. Xu
K. Oyamada, Delegate
M. E. Papponetti, Delegate
W. S. Jacobs, Contributing Member
P. K. Lam, Contributing Member
K. Mokhtarian, Contributing
Member
S. C. Shah, Contributing Member
K. K. Tam, Contributing Member
E. Upitis, Contributing Member
Z. Wang, Contributing Member
Working Group on Design-By-Analysis (BPV VIII)
B. F. Hantz, Chair
T. W. Norton, Secretary
D. A. Arnett
R. G. Brown
D. Dewees
C. F. Heberling II
C. E. Hinnant
M. H. Jawad
S. Kataoka
S. Kilambi
K. D. Kirkpatrick
S. Krishnamurthy
A. Mann
N. McKie
G. A. Miller
C. Nadarajah
P. Prueter
M. D. Rana
T. G. Seipp
M. A. Shah
S. Terada
K. Saboda, Contributing Member
Subgroup on Fabrication and Examination (BPV VIII)
S. A. Marks, Chair
E. A. Whittle, Vice Chair
T. Halligan, Secretary
B. R. Morelock, Secretary
N. Carter
D. I. Morris
O. Mulet
M. J. Pischke
M. J. Rice
C. D. Rodery
B. F. Shelley
P. L. Sturgill
J. P. Swezy, Jr.
E. Upitis
K. Oyamada, Delegate
W. J. Bees, Contributing Member
L. F. Campbell, Contributing
Member
W. S. Jacobs, Contributing Member
J. Lee, Contributing Member
J. Si, Contributing Member
R. Uebel, Contributing Member
X. Xue, Contributing Member
B. Yang, Contributing Member
Subgroup on General Requirements (BPV VIII)
M. D. Lower, Chair
J. P. Glaspie, Vice Chair
F. L. Richter, Secretary
R. J. Basile
T. P. Beirne
D. T. Davis
D. B. DeMichael
M. Faulkner
F. Hamtak
L. E. Hayden, Jr.
J. Hoskinson
T. P. Pastor
D. K. Peetz
G. B. Rawls, Jr.
S. C. Roberts
J. C. Sowinski
P. Speranza
D. Srnic
D. B. Stewart
D. A. Swanson
R. Uebel
Z. Wang, Contributing Member
Y. Yang, Contributing Member
xxxiv
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Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Task Group on Fired Heater Pressure Vessels (BPV VIII)
F. Hamtak, Chair
J. Hoskinson
W. Kim
S. Kirk
T. P. Pastor
J. Rust
E. Smith
D. Srnic
J. P. Swezy, Jr.
Task Group on Subsea Applications (BPV VIII)
K. Karpanan, Chair
M. Sarzynski, Vice Chair
L. P. Antalffy
R. C. Biel
P. Bunch
J. Ellens
A. J. Grohmann
S. Harbert
X. Kaculi
F. Kirkemo
C. Lan
N. McKie
S. K. Parimi
J. R. Sims
Y. Wada
R. Cordes, Contributing Member
D. T. Peters, Contributing Member
Task Group on UG-20(f) (BPV VIII)
S. Krishnamurthy, Chair
T. L. Anderson
K. E. Bagnoli
R. P. Deubler
B. F. Hantz
B. R. Macejko
J. Penso
M. Prager
M. D. Rana
Task Group on U-2(g) (BPV VIII)
D. A. Swanson, Chair
G. Aurioles, Sr.
S. R. Babka
R. J. Basile
D. K. Chandiramani
R. Mahadeen
T. W. Norton
T. P. Pastor
R. F. Reedy, Sr.
S. C. Roberts
D. Srnic
J. P. Swezy, Jr.
R. Uebel
K. K. Tam, Contributing Member
Subgroup on Heat Transfer Equipment (BPV VIII)
G. Aurioles, Sr., Chair
P. Matkovics, Vice Chair
M. D. Clark, Secretary
D. Angstadt
S. R. Babka
J. H. Barbee
O. A. Barsky
L. Bower
T. Bunyarattaphantu
A. ChaudouetD. L. Kurle
R. Mahadeen
S. Mayeux
S. Neilsen
E. Smith
A. M. Voytko
R. P. Wiberg
I. G. Campbell, Contributing
Member
G. G. Karcher, Contributing
Member
T. W. Norton, Contributing Member
J. Pasek, Contributing Member
D. Srnic, Contributing Member
Z. Tong, Contributing Member
Working Group on Plate Heat Exchangers (BPV VIII)
P. Matkovics, Chair
S. R. Babka
K. Devlin
J. F. Grubb
V. Gudge
F. Hamtak
R. Mahadeen
S. A. Marks
D. I. Morris
M. J. Pischke
D. Srnic
S. Sullivan
Subgroup on High Pressure Vessels (BPV VIII)
G. M. Mital, Chair
K. Subramanian, Vice Chair
A. P. Maslowski, Staff Secretary
L. P. Antalffy
R. C. Biel
P. N. Chaku
L. Fridlund
R. T. Hallman
J. A. Kapp
K. Karpanan
A. K. Khare
S. C. Mordre
G. T. Nelson
D. T. Peters
E. A. Rodriguez
E. D. Roll
K. C. Simpson, Jr.
J. R. Sims
E. Smith
F. W. Tatar
S. Terada
C. Tipple
J. L. Traud
R. Wink
Y. Xu
R. Cordes, Contributing Member
R. D. Dixon, Contributing Member
R. M. Hoshman, Contributing
Member
Y. Huang, Contributing Member
J. Keltjens, Contributing Member
F. Kirkemo, Contributing Member
K.-J. Young, Contributing Member
D. J. Burns, Honorary Member
D. M. Fryer, Honorary Member
G. J. Mraz, Honorary Member
E. H. Perez, Honorary Member
Subgroup on Materials (BPV VIII)
M. Kowalczyk, Chair
J. Cameron, Vice Chair
K. Xu, Secretary
P. Chavdarov
A. Di Rienzo
J. F. Grubb
S. Kilambi
D. Maitra
J. Penso
D. W. Rahoi
J. Robertson
R. C. Sutherlin
E. Upitis
J. D. Fritz, Contributing Member
M. Katcher, Contributing Member
W. M. Lundy, Contributing Member
J. A. McMaster, Contributing
Member
B. Pletcher, Contributing Member
R. Schiavi, Jr., Contributing Member
P. G. Wittenbach, Contributing
Member
X. Wu, Contributing Member
Subgroup on Toughness (BPV VIII)
D. L. Kurle, Chair
K. Xu, Vice Chair
N. Carter
T. Halligan
W. S. Jacobs
S. Krishnamurthy
K. E. Orie
M. D. Rana
F. L. Richter
K. Subramanian
D. A. Swanson
J. P. Swezy, Jr.
S. Terada
E. Upitis
J. Vattappilly
K. Oyamada, Delegate
K. Mokhtarian, Contributing
Member
Subgroup on Graphite Pressure Equipment (BPV VIII)
A. Viet, Chair
C. W. Cary, Vice Chair
G. C. Becherer
F. L. Brown
J. D. Clements
R. W. Dickerson
E. Soltow
A. A. Stupica
xxxv
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China International Working Group (BPV VIII)
X. Chen, Chair
B. Shou, Vice Chair
Z. Fan, Secretary
Y. Chen
Z. Chen
J. Cui
R. Duan
W. Guo
B. Han
J. Hu
Q. Hu
H. Hui
D. Luo
Y. Luo
C. Miao
X. Qian
L. Sun
B. Wang
C. Wu
F. Xu
F. Xuan
Y. Yang
K. Zhang
Yanfeng Zhang
Yijun Zhang
S. Zhao
J. Zheng
G. Zhu
Germany International Working Group (BPV VIII)
P. Chavdarov, Chair
A. Spangenberg, Vice Chair
H. P. Schmitz, Secretary
B. Daume
A. Emrich
J. Fleischfresser
R. Helmholdt
R. Kauer
D. Koelbl
S. Krebs
T. Ludwig
R. A. Meyers
H. Michael
G. Naumann
S. Reich
M. Sykora
P. Paluszkiewicz, Contributing
Member
R. Uebel, Contributing Member
India International Working Group (BPV VIII)
D. Chandiramani, Chair
D. Kulkarni, Vice Chair
A. D. Dalal, Secretary
P. Arulkumar
B. Basu
P. U. Gandhi
V. Jayabalan
P. C. Pathak
S. B. Patil
V. V. P. Kumar
M. P. Shah
P. G. Shah
V. T. Valavan
M. Sharma, Contributing Member
Italy International Working Group (BPV VIII)
A. Teli, Chair
A. Veroni, Secretary
B. G. Alborali
P. Aliprandi
A. Avogadri
R. Boatti
A. Camanni
M. Colombo
P. Conti
P. L. Dinelli
F. Finco
M. Guglielmetti
A. F. Magri
P. Mantovani
M. Massobrio
M. Millefanti
L. Moracchioli
P. Pacor
G. Pontiggia
C. Sangaletti
S. Sarti
G. Gobbi, Contributing Member
Special Working Group on Bolted Flanged Joints (BPV VIII)
R. W. Mikitka, Chair
G. Aurioles, Sr.
D. Bankston, Jr.
W. Brown
H. Chen
A. Mann
W. McDaniel
M. Osterfoss
J. R. Payne
G. B. Rawls, Jr.
R. Wacker
Task Group on Impulsively Loaded Vessels (BPV VIII)
A. M. Clayton, Chair
G. A. Antaki
D. D. Barker
J. E. Didlake, Jr.
T. A. Duffey
K. Hayashi
K. W. King
R. Kitamura
R. A. Leishear
P. O. Leslie
F. Ohlson
E. A. Rodriguez
C. Romero
N. Rushton
J. H. Stofleth
Q. Dong, Contributing Member
H.-P. Schildberg, Contributing
Member
J. E. Shepherd, Contributing
Member
M. Yip, Contributing Member
Subgroup on Interpretations (BPV VIII)
R. Mahadeen, Chair
E. Lawson, Staff Secretary
G. Aurioles, Sr.
S. R. Babka
R. J. Basile
J. Cameron
N. Carter
C. W. Cary
D. B. DeMichael
R. D. Dixon
M. Kowalczyk
D. L. Kurle
M. D. Lower
A. Mann
P. Matkovics
G. M. Mital
D. I. Morris
D. T. Peters
S. C. Roberts
C. D. Rodery
T. G. Seipp
D. B. Stewart
P. L. Sturgill
D. A. Swanson
J. P. Swezy, Jr.
J. Vattappilly
A. Viet
P. G. Wittenbach
K. Xu
T. P. Pastor, Contributing Member
COMMITTEE ON WELDING, BRAZING, AND FUSING (BPV IX)
D. A. Bowers, Chair
M. J. Pischke, Vice Chair
E. Lawson, Staff Secretary
M. Bernasek
M. A. Boring
J. G. Feldstein
P. D. Flenner
S. E. Gingrich
K. L. Hayes
R. M. Jessee
J. S. Lee
W. M. Lundy
T. Melfi
W. F. Newell, Jr.
D. K. Peetz
J. Pillow
E. G. Reichelt
M. J. Rice
M. B. Sims
W. J. Sperko
P. L. Sturgill
J. P. Swezy, Jr.
E. W. Woelfel
A. Roza, Delegate
M. Consonni, Contributing Member
S. A. Jones, Contributing Member
A. S. Olivares, Contributing
Member
S. Raghunathan, Contributing
Member
M. J. Stanko, Contributing Member
P. L. Van Fosson, Contributing
Member
R. K. Brown, Jr., Honorary Member
M. L. Carpenter, Honorary Member
B. R. Newmark, Honorary Member
S. D. Reynolds, Jr., Honorary
Member
Subgroup on Brazing (BPV IX)
M. J. Pischke, Chair
E. W. Beckman
A. F. Garbolevsky
S. A. Marks
N. Mohr
A. R. Nywening
J. P. Swezy, Jr.
xxxvi
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Subgroup on General Requirements (BPV IX)
P. L. Sturgill, Chair
S. A. Marks, Secretary
E. W. Beckman
J. P. Bell
D. A. Bowers
P. Gilston
F. Hamtak
A. Howard
R. M. Jessee
D. K. Peetz
J. Pillow
H. B. Porter
J. P. Swezy, Jr.
E. W. Woelfel
E. Molina, Delegate
B. R. Newmark, Honorary Member
Subgroup on Materials (BPV IX)
M. Bernasek, Chair
T. Anderson
J. L. Arnold
E. Cutlip
S. E. Gingrich
L. S. Harbison
R. M. Jessee
T. Melfi
S. D. Nelson
M. J. Pischke
A. Roza
C. E. Sainz
W. J. Sperko
P. L. Sturgill
J. Warren
C. Zanfir
V. G. V. Giunto, Delegate
B. Krueger, Contributing Member
M. J. Stanko, Contributing Member
Subgroup on Plastic Fusing (BPV IX)
E. W. Woelfel, Chair
D. Burwell
K. L. Hayes
R. M. Jessee
J. Johnston, Jr.
J. E. O’Sullivan
E. G. Reichelt
M. J. Rice
S. Schuessler
M. Troughton
J. Wright
Subgroup on Welding Qualifications (BPV IX)
M. J. Rice, Chair
J. S. Lee, Vice Chair
K. L. Hayes, Secretary
M. Bernasek
M. A. Boring
D. A. Bowers
R. B. Corbit
P. D. Flenner
L. S. Harbison
M. Heinrichs
W. M. Lundy
T. Melfi
W. F. Newell, Jr.
B. R. Newton
S. Raghunathan
E. G. Reichelt
M. B. Sims
W. J. Sperko
S. A. Sprague
P. L. Sturgill
J. P. Swezy, Jr.
T. C. Wiesner
A. D. Wilson
D. Chandiramani, Contributing
Member
M. Consonni, Contributing Member
M. Dehghan, Contributing Member
Germany International Working Group (BPV IX)
P. Chavdarov, Chair
A. Spangenberg, Vice Chair
E. Lawson, Staff Secretary
P. Thiebo, Secretary
J. Daldrup
B. DaumeE. Floer
R. Helmholdt
S. Krebs
T. Ludwig
G. Naumann
A. Roza
K.-G. Toelle
F. Wodke
Italy International Working Group (BPV IX)
A. Camanni, Chair
A. Veroni, Secretary
P. Angelini
M. Bernasek
R. Boatti
P. L. Dinelli
F. Ferrarese
E. Lazzari
M. Mandina
M. Massobrio
A. S. Monastra
L. Moracchioli
P. Pacor
G. Pontiggia
S. Verderame
A. Volpi
G. Gobbi, Contributing Member
COMMITTEE ON FIBER-REINFORCED PLASTIC PRESSURE VESSELS
(BPV X)
B. Linnemann, Chair
B. F. Shelley, Vice Chair
P. D. Stumpf, Staff Secretary
A. L. Beckwith
F. L. Brown
J. L. Bustillos
B. R. Colley
T. W. Cowley
I. L. Dinovo
D. Eisberg
M. R. Gorman
B. Hebb
L. E. Hunt
D. L. Keeler
D. H. McCauley
N. L. Newhouse
G. Ramirez
J. R. Richter
D. O. Yancey, Jr.
P. H. Ziehl
D. H. Hodgkinson, Contributing
Member
COMMITTEE ON NUCLEAR INSERVICE INSPECTION (BPV XI)
R. W. Swayne, Chair
S. D. Kulat, Vice Chair
D. W. Lamond, Vice Chair
K. Verderber, Staff Secretary
V. L. Armentrout
J. F. Ball
W. H. Bamford
M. L. Benson
J. M. Boughman
S. B. Brown
T. L. Chan
R. C. Cipolla
D. R. Cordes
D. D. Davis
H. Do
R. L. Dyle
E. V. Farrell, Jr.
M. J. Ferlisi
P. D. Fisher
E. B. Gerlach
T. J. Griesbach
J. Hakii
M. L. Hall
D. O. Henry
D. R. Lee
J. T. Lindberg
G. A. Lofthus
H. Malikowski
G. Navratil
S. A. Norman
J. E. O’Sullivan
N. A. Palm
G. C. Park
A. T. Roberts III
D. A. Scarth
F. J. Schaaf, Jr.
J. C. Spanner, Jr.
D. J. Tilly
D. E. Waskey
J. G. Weicks
H. D. Chung, Delegate
C. Ye, Delegate
W. C. Holston, Alternate
R. O. McGill, Alternate
T. Nuoffer, Alternate
B. R. Newton, Contributing Member
C. D. Cowfer, Honorary Member
R. E. Gimple, Honorary Member
F. E. Gregor, Honorary Member
O. F. Hedden, Honorary Member
R. D. Kerr, Honorary Member
P. C. Riccardella, Honorary Member
R. A. West, Honorary Member
C. J. Wirtz, Honorary Member
R. A. Yonekawa, Honorary Member
Executive Committee (BPV XI)
S. D. Kulat, Chair
R. W. Swayne, Vice Chair
K. Verderber, Staff Secretary
W. H. Bamford
M. L. Benson
R. L. Dyle
M. J. Ferlisi
E. B. Gerlach
D. W. Lamond
J. T. Lindberg
G. Navratil
T. Nuoffer
G. C. Park
J. C. Spanner, Jr.
W. C. Holston, Alternate
xxxvii
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Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Argentina International Working Group (BPV XI)
F. M. Schroeter, Chair
M. F. Liendo, Vice Chair
O. Martinez, Staff Secretary
D. A. Cipolla
A. Claus
D. Costa
D. P. Delfino
D. N. Dell’Erba
A. Dominguez
S. A. Echeverria
E. P. Fresquet
M. M. Gamizo
I. M. Guerreiro
F. Llorente
R. J. Lopez
M. Magliocchi
L. R. Miño
J. Monte
M. D. Pereda
A. Politi
C. G. Real
G. J. Scian
M. J. Solari
P. N. Torano
P. Yamamoto
China International Working Group (BPV XI)
J. H. Liu, Chair
Y. Nie, Vice Chair
C. Ye, Vice Chair
M. W. Zhou, Secretary
J. F. Cai
H. Chen
H. D. Chen
Y. Cheng
Y. B. Guo
Y. Hongqi
D. R. Horn
Y. Hou
D. M. Kang
S. X. Lin
Y. Liu
W. N. Pei
L. Shiwei
Y. X. Sun
G. X. Tang
Q. Wang
Q. W. Wang
Z. S. Wang
L. Xing
F. Xu
Q. Yin
K. Zhang
Y. Zhang
Y. Zhe
Z. M. Zhong
German International Working Group (BPV XI)
R. Döring, Chair
R. Trieglaff, Vice Chair
R. Piel, Secretary
H.-R. Bath
A. Casse
S. Dugan
M. Hagenbruch
E. Iacopetta
H.-W. Lange
N. Legl
T. Ludwig
X. Pitoiset
M. Reichert
H. Schau
L. Sybertz
J. Wendt
S. Zickler
Special Working Group on Editing and Review (BPV XI)
R. W. Swayne, Chair
M. Orihuela
K. R. Rao
D. J. Tilly
Task Group on Inspectability (BPV XI)
J. T. Lindberg, Chair
M. J. Ferlisi, Secretary
W. H. Bamford
A. Cardillo
D. R. Cordes
P. Gionta
D. O. Henry
E. Henry
J. Honcharik
J. Howard
R. Klein
C. Latiolais
D. Lieb
G. A. Lofthus
D. E. Matthews
P. J. O’Regan
J. Ossmann
S. A. Sabo
P. Sullivan
C. Thomas
J. Tucker
Task Group on ISI of Spent Nuclear Fuel Storage and Transportation
Containment Systems (BPV XI)
K. Hunter, Chair
M. Orihuela, Secretary
D. J. Ammerman
W. H. Borter
J. Broussard
S. Brown
C. R. Bryan
T. Carraher
D. Dunn
N. Fales
R. C. Folley
G. Grant
B. Gutherman
S. Horowitz
M. W. Joseph
M. Keene
M. Liu
K. Mauskar
R. M. Meyer
B. L. Montgomery
T. Nuoffer
R. M. Pace
E. L. Pleins
M. A. Richter
B. Sarno
R. Sindelar
J. C. Spanner, Jr.
M. Staley
J. Wellwood
X. J. Zhai
P.-S. Lam, Alternate
G. White, Alternate
J. Wise, Alternate
H. Smith, Contributing Member
Subgroup on Evaluation Standards (SG-ES) (BPV XI)
W. H. Bamford, Chair
N. A. Palm, Secretary
M. Brumovsky
H. D. Chung
R. C. Cipolla
C. M. Faidy
B. R. Ganta
T. J. Griesbach
K. Hasegawa
K. Hojo
D. N. Hopkins
D. R. Lee
Y. S. Li
R. O. McGill
H. S. Mehta
K. Miyazaki
R. M. Pace
J. C. Poehler
S. Ranganath
D. A. Scarth
D.-J. Shim
G. L. Stevens
A. Udyawar
T. V. Vo
G. M. Wilkowski
S. X. Xu
M. L. Benson, Alternate
Task Group on Evaluation of Beyond Design Basis Events (SG-ES)
(BPV XI)
R. M. Pace, Chair
S. X. Xu, Secretary
G. A. Antaki
P. R. Donavin
R. G. Gilada
T. J. Griesbach
M. Hayashi
K. Hojo
S. A. Kleinsmith
H. S. Mehta
D. V. Sommerville
T. V. Vo
K. R. Wichman
G. M. Wilkowski
T. Weaver, Contributing Member
xxxviii
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Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Working Group on Flaw Evaluation (SG-ES) (BPV XI)
R. C. Cipolla, Chair
S. X. Xu, Secretary
W. H. Bamford
M. L. Benson
B. Bezensek
M. Brumovsky
H. D. Chung
T. E. Demers
M. A. Erickson
C. M. Faidy
M. M. Farooq
B. R. Ganta
R. G. Gilada
F. D. Hayes
P. H. Hoang
K. Hojo
D. N. Hopkins
Y. Kim
V. Lacroix
D. R. Lee
Y. S. Li
M. Liu
H. S. Mehta
G. A. A. Miessi
K. Miyazaki
S. Noronha
R. K. Qashu
S. Ranganath
P. J. Rush
D. A. Scarth
W. L. Server
D.-J. Shim
S. Smith
M. Uddin
A. Udyawar
T. V. Vo
B. Wasiluk
K. R. Wichman
G. M. Wilkowski
Working Group on Flaw Evaluation Reference Curves (BPV XI)
G. L. Stevens, Chair
A. Udyawar, Secretary
W. H. Bamford
M. L. Benson
F. W. Brust
R. C. Cipolla
M. M. Farooq
A. E. Freed
K. Hasegawa
D. N. Hopkins
R. Janowiak
K. Kashima
K. Koyama
D. R. Lee
H. S. Mehta
K. Miyazaki
B. Pellereau
S. Ranganath
D. A. Scarth
D.-J. Shim
S. Smith
T. V. Vo
S. X. Xu
Working Group on Operating Plant Criteria (SG-ES) (BPV XI)
N. A. Palm, Chair
A. E. Freed, Secretary
K. R. Baker
W. H. Bamford
M. Brumovsky
T. L. Dickson
R. L. Dyle
M. A. Erickson
T. J. Griesbach
M. Hayashi
R. Janowiak
S. A. Kleinsmith
H. Kobayashi
H. S. Mehta
A. D. Odell
R. M. Pace
J. C. Poehler
S. Ranganath
W. L. Server
C. A. Tomes
A. Udyawar
T. V. Vo
D. P. Weakland
H. Q. Xu
T. Hardin, Alternate
Working Group on Pipe Flaw Evaluation (SG-ES) (BPV XI)
D. A. Scarth, Chair
G. M. Wilkowski, Secretary
K. Azuma
M. L. Benson
M. Brumovsky
F. W. Brust
H. D. Chung
R. C. Cipolla
N. G. Cofie
T. E. Demers
C. M. Faidy
M. M. Farooq
B. R. Ganta
S. R. Gosselin
C. E. Guzman-Leong
K. Hasegawa
P. H. Hoang
K. Hojo
D. N. Hopkins
E. J. Houston
R. Janowiak
S. Kalyanam
K. Kashima
V. Lacroix
Y. S. Li
R. O. McGill
H. S. Mehta
G. A. A. Miessi
K. Miyazaki
S. H. Pellet
P. J. Rush
W. L. Server
D.-J. Shim
S. Smith
A. Udyawar
T. V. Vo
B. Wasiluk
S. X. Xu
A. Alleshwaram, Alternate
Task Groupon Evaluation Procedures for Degraded Buried Pipe
(WG-PFE) (BPV XI)
R. O. McGill, Chair
S. X. Xu, Secretary
F. G. Abatt
G. A. Antaki
R. C. Cipolla
R. G. Gilada
K. Hasegawa
K. M. Hoffman
R. Janowiak
M. Kassar
M. Moenssens
D. P. Munson
R. M. Pace
P. J. Rush
D. A. Scarth
Subgroup on Nondestructive Examination (SG-NDE) (BPV XI)
J. C. Spanner, Jr., Chair
D. R. Cordes, Secretary
M. Briley
C. Brown
T. L. Chan
S. E. Cumblidge
K. J. Hacker
J. Harrison
D. O. Henry
J. T. Lindberg
G. A. Lofthus
S. A. Sabo
F. J. Schaaf, Jr.
R. V. Swain
C. A. Nove, Alternate
Working Group on Personnel Qualification and Surface Visual and
Eddy Current Examination (SG-NDE) (BPV XI)
J. T. Lindberg, Chair
C. Brown, Secretary
J. E. Aycock
J. Bennett
S. E. Cumblidge
A. Diaz
N. Farenbaugh
D. O. Henry
C. Shinsky
J. C. Spanner, Jr.
T. Thulien
J. T. Timm
Working Group on Procedure Qualification and Volumetric
Examination (SG-NDE) (BPV XI)
G. A. Lofthus, Chair
J. Harrison, Secretary
M. Briley
A. Bushmire
D. R. Cordes
S. R. Doctor
K. J. Hacker
W. A. Jensen
D. A. Kull
C. A. Nove
S. A. Sabo
R. V. Swain
S. J. Todd
D. K. Zimmerman
B. Lin, Alternate
xxxix
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Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Subgroup on Repair/Replacement Activities (SG-RRA) (BPV XI)
E. B. Gerlach, Chair
E. V. Farrell, Jr., Secretary
J. F. Ball
M. Brandes
S. B. Brown
R. Clow
P. D. Fisher
M. L. Hall
S. L. McCracken
A. B. Meichler
B. R. Newton
J. E. O’Sullivan
G. C. Park
P. Raynaud
R. R. Stevenson
R. W. Swayne
D. J. Tilly
D. E. Waskey
J. G. Weicks
W. C. Holston, Alternate
Working Group on Welding and Special Repair Processes (SG-RRA)
(BPV XI)
D. E. Waskey, Chair
D. J. Tilly, Secretary
D. Barborak
S. J. Findlan
P. D. Fisher
R. C. Folley
M. L. Hall
W. C. Holston
C. C. Kim
M. Kris
S. E. Marlette
S. L. McCracken
D. B. Meredith
B. R. Newton
J. E. O’Sullivan
D. Segletes
J. G. Weicks
Task Group on Temper Bead Welding (BPV XI)
S. J. Findlan, Chair
D. Barborak
M. L. Hall
S. L. McCracken
D. B. Meredith
N. Mohr
B. R. Newton
J. E. O’Sullivan
D. Segletes
J. Tatman
D. J. Tilly
D. E. Waskey
J. G. Weicks
Task Group on Weld Overlay (BPV XI)
S. L. McCracken, Chair
S. J. Findlan
M. L. Hall
S. Hunter
S. E. Marlette
D. B. Meredith
P. Raynaud
D. Segletes
D. E. Waskey
J. G. Weicks
Working Group on Non-Metals Repair/Replacement Activities
(SG-RRA) (BPV XI)
J. E. O'Sullivan, Chair
S. Schuessler, Secretary
M. Brandes
J. Johnston, Jr.
M. Lashley
M. P. Marohl
T. M. Musto
S. Patterson
A. Pridmore
P. Raynaud
F. J. Schaaf, Jr.
R. Stakenborghs
Task Group on Repair by Carbon Fiber Composites
(WGN-MRR) (BPV XI)
J. E. O'Sullivan, Chair
S. F. Arnold
S. W. Choi
D. R. Dechene
M. Golliet
L. S. Gordon
M. Kuntz
M. P. Marohl
C. A. Nove
R. P. Ojdrovic
A. Pridmore
P. Raynaud
S. Rios
V. Roy
J. Sealey
N. Stoeva
M. F. Uddin
J. Wen
B. Davenport, Alternate
C. W. Rowley, Alternate
Working Group on Design and Programs (SG-RRA) (BPV XI)
S. B. Brown, Chair
A. B. Meichler, Secretary
O. Bhatty
R. Clow
R. R. Croft
E. V. Farrell, Jr.
E. B. Gerlach
H. Malikowski
G. C. Park
M. A. Pyne
P. Raynaud
R. R. Stevenson
R. W. Swayne
Task Group on Risk-Informed Categorization and Treatment
(BPV XI)
S. L. McCracken, Chair
T. Anselmi
H. Do
M. J. Ferlisi
E. B. Gerlach
K. W. Hall
A. E. Keyser
S. D. Kulat
D. W. Lamond
A. B. Meichler
G. Navratil
S. A. Norman
P. J. O’Regan
J. E. O’Sullivan
M. Ralstin
T. V. Vo
J. G. Weicks
Subgroup on Water-Cooled Systems (SG-WCS) (BPV XI)
G. Navratil, Chair
J. Nygaard, Secretary
J. M. Agold
V. L. Armentrout
J. M. Boughman
S. B. Brown
S. T. Chesworth
D. D. Davis
H. Q. Do
R. L. Dyle
M. J. Ferlisi
K. W. Hall
P. J. Hennessey
K. M. Hoffman
S. D. Kulat
D. W. Lamond
T. Nomura
T. Nuoffer
H. M. Stephens, Jr.
M. Weis
M. J. Homiack, Alternate
Task Group on High Strength Nickel Alloys Issues (SG-WCS) (BPV XI)
H. Malikowski, Chair
W. H. Bamford
K. Dietrich
P. R. Donavin
R. L. Dyle
K. M. Hoffman
C. Lohse
S. E. Marlette
B. L. Montgomery
G. C. Park
W. Sims
J. C. Spanner, Jr.
D. E. Waskey
Working Group on Containment (SG-WCS) (BPV XI)
H. M. Stephens, Jr., Chair
S. G. Brown, Secretary
P. S. Ghosal
H. T. Hill
B. Lehman
J. A. Munshi
M. Sircar
P. C. Smith
F. Syed
R. Thames
S. Walden
xl
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Working Group on Inspection of Systems and Components
(SG-WCS) (BPV XI)
M. J. Ferlisi, Chair
M. Weis, Secretary
J. M. Agold
R. W. Blyde
K. Caver
C. Cueto-Felgueroso
H. Q. Do
K. W. Hall
M. L. G. Heras
K. M. Hoffman
J. Howard
S. D. Kulat
E. Lantz
G. J. Navratil
T. Nomura
J. C. Nygaard
J. C. Younger
Working Group on Pressure Testing (SG-WCS) (BPV XI)
J. M. Boughman, Chair
S. A. Norman, Secretary
T. Anselmi
B. Casey
Y.-K. Chung
M. J. Homiack
A. E. Keyser
D. W. Lamond
J. K. McClanahan
T. P. McClure
B. L. Montgomery
C. Thomas
Task Group on Buried Components Inspection and Testing
(WG-PT) (BPV XI)
D. W. Lamond, Chair
J. M. Boughman, Secretary
M. Moenssens, Secretary
T. Anselmi
V. L. Armentrout
B. Davenport
A. Hiser
J. Ossmann
S. Rios
Working Group on Risk-Informed Activities (SG-WCS) (BPV XI)
M. A. Pyne, Chair
S. T. Chesworth, Secretary
J. M. Agold
C. Cueto-Felgueroso
A. E. Freed
J. Hakii
K. W. Hall
M. J. Homiack
S. D. Kulat
D. W. Lamond
E. Lantz
G. J. Navratil
P. J. O’Regan
N. A. Palm
D. Vetter
J. C. Younger
Working Group on General Requirements (BPV XI)
T. Nuoffer, Chair
J. Mayo, Secretary
J. F. Ball
T. L. Chan
P. J. Hennessey
A. T. Roberts III
Subgroup on Reliability and Integrity Management Program
(SG-RIM) (BPV XI)
F. J. Schaaf, Jr., Chair
A. T. Roberts III, Secretary
T. Anselmi
N. Broom
S. R. Doctor
J. D. Fletcher
J. T. Fong
T. Graham
J. Grimm
B. Heald
D. M. Jones
D. R. Lee
B. Lin
R. K. Miller
R. W. Swayne
S. Takaya
R. Vayda
Working Group on MANDE (BPV XI)
H. M. Stephens, Jr., Chair
S. R. Doctor
N. A. Finney
J. T. Fong
D. O. Henry
L. E. Mullins
M. Turnbow
JSME/ASME Joint Task Group for System-Based Code (SWG-RIM)
(BPV XI)
T. Asayama, Chair
S. R. Doctor
K. Dozaki
M. Hayashi
D. M. Jones
Y. Kamishima
D. R. Lee
H. Machida
A. T. Roberts III
F. J. Schaaf, Jr.
S. Takaya
D. Watanabe
COMMITTEE ON TRANSPORT TANKS (BPV XII)
N. J. Paulick, Chair
M. D. Rana, Vice Chair
J. Oh, Staff Secretary
A. N. Antoniou
P. Chilukuri
W. L. Garfield
M. Pitts
T. A. Rogers
S. Staniszewski
A. P. Varghese
Y. Doron, Contributing Member
R. Meyers, Contributing Member
M. R. Ward, Contributing Member
Executive Committee (BPV XII)
M. D. Rana, Chair
N. J. Paulick, Vice Chair
J. Oh, Staff Secretary
M. Pitts
S. Staniszewski
A. P. Varghese
Subgroup on Design and Materials (BPV XII)
A. P. Varghese, Chair
R. C. Sallash, Secretary
D. K. Chandiramani
P. Chilukuri
Y. Doron
R. D. Hayworth
S. L. McWilliams
N. J. Paulick
M. D. Rana
T. A. Rogers
M. Shah
S. Staniszewski
K. Xu
A. T. Duggleby, Contributing
Member
G. G. Karcher, Contributing
Member
M. R. Ward, Contributing Member
J. Zheng, Contributing Member
Subgroup on Fabrication, Inspection, and Continued Service
(BPV XII)M. Pitts, Chair
P. Chilukuri
Y. Doron
W. Garfield
R. D. Hayworth
O. Mulet
J. Roberts
T. A. Rogers
M. Rudek
R. C. Sallash
L. Selensky
S. Staniszewski
S. E. Benet, Contributing Member
G. McRae, Contributing Member
A. S. Olivares, Contributing
Member
xli
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Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
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Subgroup on General Requirements (BPV XII)
S. Staniszewski, Chair
A. N. Antoniou
Y. Doron
J. L. Freiler
W. L. Garfield
O. Mulet
B. F. Pittel
M. Pitts
T. Rummel
R. C. Sallash
L. Selensky
P. Chilukuri, Contributing Member
T. J. Hitchcock, Contributing
Member
G. McRae, Contributing Member
S. L. McWilliams, Contributing
Member
T. A. Rogers, Contributing Member
D. G. Shelton, Contributing Member
M. R. Ward, Contributing Member
Subgroup on Nonmandatory Appendices (BPV XII)
N. J. Paulick, Chair
S. Staniszewski, Secretary
P. Chilukuri
M. Pitts
T. A. Rogers
D. G. Shelton
S. E. Benet, Contributing Member
D. D. Brusewitz, Contributing
Member
Y. Doron, Contributing Member
T. J. Hitchcock, Contributing
Member
COMMITTEE ON OVERPRESSURE PROTECTION (BPV XIII)
D. B. DeMichael, Chair
J. P. Glaspie, Vice Chair
C. E. O’Brien, Staff Secretary
J. F. Ball
J. Burgess
J. W. Dickson
A. Donaldson
S. F. Harrison, Jr.
D. Miller
B. K. Nutter
T. Patel
M. Poehlmann
D. E. Tompkins
Z. Wang
J. A. West
A. Wilson
B. Calderon, Alternate
H. Aguilar, Contributing Member
R. W. Barnes, Contributing Member
R. D. Danzy, Contributing Member
M. Elias, Contributing Member
D. Felix, Contributing Member
A. Frigerio, Contributing Member
A. Hassan, Contributing Member
P. K. Lam, Contributing Member
J. M. Levy, Contributing Member
M. Mengon, Contributing Member
J. Mize, Contributing Member
M. Mullavey, Contributing Member
S. K. Parimi, Contributing Member
J. Phillips, Contributing Member
R. Raman, Contributing Member
M. Reddy, Contributing Member
K. Shores, Contributing Member
D. E. Tezzo, Contributing Member
Executive Committee (BPV XIII)
J. P. Glaspie, Chair
C. E. O’Brien, Staff Secretary
J. F. Ball
D. B. DeMichael
A. Donaldson
D. Miller
B. K. Nutter
J. A. West
Subgroup on Design and Materials (BPV XIII)
D. Miller, Chair
C. E. Beair
A. Biesecker
W. E. Chapin
J. L. Freiler
B. Joergensen
V. Kalyanasundaram
B. J. Mollitor
B. Mruk
T. Patel
A. C. Ramirez
G. Ramirez
J. A. West
A. Williams
D. J. Azukas, Contributing Member
R. D. Danzy, Contributing Member
A. Hassan, Contributing Member
R. Miyata, Contributing Member
M. Mullavey, Contributing Member
S. K. Parimi, Contributing Member
K. Shores, Contributing Member
Subgroup on General Requirements (BPV XIII)
A. Donaldson, Chair
D. J. Azukas
J. F. Ball
M. Z. Brown
J. Burgess
D. B. DeMichael
M. Elias
T. M. Fabiani
S. T. French
J. Gillham
J. P. Glaspie
R. Klimas, Jr.
Z. E. Kumana
P. K. Lam
J. M. Levy
K. R. May
J. Mize
L. Moedinger
M. Mullavey
J. Phillips
B. F. Pittel
M. Poehlmann
K. Shores
D. E. Tezzo
D. E. Tompkins
J. F. White
B. Calderon, Contributing Member
P. Chavdarov, Contributing
Member
J. L. Freiler, Contributing Member
G. D. Goodson, Contributing
Member
C. Haldiman, Contributing Member
B. Joergensen, Contributing
Member
C. Lasarte, Contributing Member
M. Mengon, Contributing Member
D. E. Miller, Contributing Member
R. Miyata, Contributing Member
B. Mruk, Contributing Member
R. Raman, Contributing Member
M. Reddy, Contributing Member
Subgroup on Nuclear (BPV XIII)
J. F. Ball, Chair
J. W. Dickson
S. Jones
R. Krithivasan
K. R. May
D. Miller
T. Patel
K. Shores
I. H. Tseng
J. Yu
N. J. Hansing, Alternate
B. J. Yonsky, Alternate
S. T. French, Contributing Member
D. B. Ross, Contributing Member
Subgroup on Testing (BPV XIII)
B. K. Nutter, Chair
T. P. Beirne
B. Calderon
V. Chicola
J. W. Dickson
B. Engman
R. J. Garnett
R. Houk
D. T. Kelley
R. Lack
M. Mengon
C. Sharpe
J. R. Thomas
Z. Wang
A. Wilson
S. Alessandro, Contributing
Member
J. Britt, Contributing Member
W. E. Chapin, Contributing Member
J. Cockerham, Contributing
Member
R. Miyata, Contributing Member
J. Mize, Contributing Member
M. Mullavey, Contributing Member
R. Raman, Contributing Member
A. C. Ramirez, Contributing
Member
G. Ramirez, Contributing Member
K. Shores, Contributing Member
xlii
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COMMITTEE ON BOILER AND PRESSURE VESSEL CONFORMITY
ASSESSMENT (CBPVCA)
R. V. Wielgoszinski, Chair
G. Scribner, Vice Chair
G. Moino, Staff Secretary
P. Murray, Staff Secretary
J. P. Chicoine
D. C. Cook
P. D. Edwards
T. E. Hansen
B. L. Krasiun
P. F. Martin
L. E. McDonald
D. Miller
I. Powell
D. E. Tuttle
R. Uebel
E. A. Whittle
P. Williams
T. P. Beirne, Alternate
M. Blankinship, Alternate
J. W. Dickson, Alternate
J. M. Downs, Alternate
B. J. Hackett, Alternate
W. Hibdon, Alternate
Y.-S. Kim, Alternate
B. Morelock, Alternate
M. Poehlmann, Alternate
R. Rockwood, Alternate
L. Skarin, Alternate
R. D. Troutt, Alternate
B. C. Turczynski, Alternate
S. V. Voorhees, Alternate
D. Cheetham, Contributing Member
A. J. Spencer, Honorary Member
COMMITTEE ON NUCLEAR CERTIFICATION (CNC)
R. R. Stevenson, Chair
J. DeKleine, Vice Chair
L. Powers, Staff Secretary
S. Andrews
G. Gobbi
S. M. Goodwin
J. W. Highlands
K. A. Huber
K. A. Kavanagh
J. C. Krane
M. A. Lockwood
L. M. Plante
T. E. Quaka
G. Szabatura
C. Turylo
D. M. Vickery
E. A. Whittle
C. S. Withers
J. Ball, Alternate
P. J. Coco, Alternate
N. DeSantis, Alternate
C. Dinic, Alternate
P. D. Edwards, Alternate
D. P. Gobbi, Alternate
K. M. Hottle, Alternate
P. Krane, Alternate
M. Martin, Alternate
D. Nenstiel, Alternate
M. Paris, Alternate
E. L. Pleins, Alternate
P. F. Prescott, Alternate
A. Torosyan, Alternate
S. V. Voorhees, Alternate
M. Wilson, Alternate
S. Yang, Alternate
S. F. Harrison, Jr., Contributing
Member
xliii
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Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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SUMMARY OF CHANGES
Errata to the BPV Code may be posted on the ASME website to provide corrections to incorrectly published items, or to
correct typographical or grammatical errors in the BPV Code. Such Errata shall be used on the date posted.
Information regarding Special Notices and Errata is published by ASME at http://go.asme.org/BPVCerrata.
Changes given below are identified on the pages by a margin note, (19), placed next to the affected area.
The Record Numbers listed below are explained in more detail in “List of Changes in Record Number Order” following
this Summary of Changes.
Page Location Change (Record Number)
xiv List of Sections Updated
xvi Foreword Penultimate paragraph revised
xviii Statement of Policy on the
Use of the ASME Single
Certification Mark and
Code Authorization in
Advertising
Revised
xviii Statement of Policy on the
Use of ASME Marking to
Identify Manufactured
Items
Revised
xix Submittalof Technical
Inquiries to the Boiler
and Pressure Vessel
Standards Committees
In para. 4, third sentence revised
xxii Personnel Updated
1 Statement of Policy on
Information Provided
in the Stress Tables
Fifth, sixth, and seventh paragraphs revised (17-2688, 18-1238)
3 2 Revised (18-1497)
3 2.1 Subparagraph (i) revised (13-1242)
4 2.9 Added (18-236)
4 2.10 Added (18-236)
4 2.11 Added (18-236)
4 2.12 Added (18-236)
20–151 Table 1A Size/Thickness revised for lines containing pound sign in margin
(17-583)
36–39 Table 1A, Lines 24 & 26 For Section I, for 1Cr–1/2Mo SA/GB 713 15CrMoR, Notes revised
(17-2299)
Table 1A, Line 34 For Sections I and VIII, Division 1, for 11/4Cr–
1/2Mo–Si SA-182 F11,
stress value for 500°C revised (17-3022)
xliv
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Page Location Change (Record Number)
Table 1A, Lines 35 & 36 For Sections I and VIII-1, for SA-213 T11 and SA-234 WP11, stress
value for 500°C revised (17-3022)
Table 1A, Lines 37 & 38 For Section I, for SA-250 T11 and T11S1, stress value for 500°C
revised (17-3022)
Table 1A, Line 39 For Sections I and VIII-1, for SA-335 P11, stress value for 500°C
revised (17-3022)
Table 1A, Line 40 For Section I, for SA-336 F11, stress value for 500°C revised
(17-3022)
Table 1A, Lines 41 & 42 For Sections I and VIII-1, for SA-369 FP11 and SA-387 11, stress
value for 500°C revised (17-3022)
40–43 Table 1A, Lines 1 & 2 For Sections I and VIII-1, for SA-182 F11 and SA-336 F11, stress
value for 500°C revised (17-3022)
48–51 Table 1A, Lines 1 & 2 (1) For Sections I, III, and VIII-1, for 9Cr–1Mo–V SA-213 T91, Size/
Thickness deleted (16-958)
(2) For I and VIII-1, Notes and stress values revised, and lines
merged (16-958)
Table 1A, Lines 3 & 4 For I, for SA-234 WP91, Size/Thickness deleted, Notes and stress
values revised, and lines merged (16-958)
Table 1A, Lines 5 & 6 For I and VIII-1, for SA-335 P91, Notes and stress values revised
(16-958)
Table 1A, Lines 7 & 14 For I and VIII-1, for SA-336 F91, Size/Thickness deleted; Min.
Tensile Strength, Notes, and stress values revised; and lines
merged (14-206, 16-958)
Table 1A, Lines 8 & 9 For I, for SA-369 FP91, Size/Thickness deleted, Notes and stress
values revised, and lines merged (16-958)
Table 1A, Lines 10 & 11 For I and VIII-1, for SA-387 91, Notes and stress values revised
(16-958)
Table 1A, Line 12 For I, III, and VIII-1, for SA-182 F91, Min. Tensile Strength, Notes,
and stress values revised (14-206, 16-958)
Table 1A, Line 13 For I and VIII-1, for SA-182 F91, Min. Tensile Strength, Notes, and
stress values revised (14-206, 16-958)
64–67 Table 1A, Lines 29 & 30 For VIII-1, 7Ni SA-553 III added (17-2312)
68–71 Table 1A, Lines 24–35 For VIII-1, 14Cr–16Ni–6Si–Cu–Mo SA-213, SA-240, SA-249, SA-312,
SA-403, and SA-479 added (13-1242)
84–87 Table 1A, Lines 9 & 10 For VIII-1, 17.5Cr–17.5Ni–5.3Si SA-240 added (18-361)
116–119 Table 1A, Lines 31–40 For VIII-1, 18Cr–15Ni–4Si SA-182, SA-240, SA-312, and SA-479
added (18-361)
120–123 Table 1A, Lines 1–10 For VIII-1, 18Cr–20Ni–5.5Si SA-213, SA-240, SA-312, and SA-479
added (18-361)
Table 1A, Lines 17–22 For VIII-1 and Section XII, for 19Cr–15Ni–4Mo SA-213, SA-240, and
SA-249, Notes revised (17-2054)
Table 1A, Lines 23–26 For VIII-1, for SA-312, Notes revised (17-2054)
Table 1A, Lines 27–30 For VIII-1 and XII, for SA-358 and SA-376, Notes revised (17-2054)
Table 1A, Line 31 For VIII-1 and XII, SA-403 added (17-2054)
xlv
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Page Location Change (Record Number)
Table 1A, Lines 32–35 For VIII-1 and XII, for SA-409 and SA-479, Notes revised (17-2054)
Table 1A, Lines 36–40 For VIII-1, 20Cr–3Ni–1.5Mo–N SA-240, SA-790, and SA-789 added
(11-512)
124–127 Table 1A, Lines 1, 2, 13 &
14
For VIII-1, 20Cr–18Ni–6Mo SA-213 added (17-2054)
136–139 Table 1A, Line 27 For VIII-1, for 24Cr–22Ni–6Mo–2W–Cu–N SA-182 F58, Min. Tensile
Strength, Min. Yield Strength, Max. Temperature Limit, and Notes
revised (15-1681)
Table 1A, Line 28 For VIII-1, SA-213 added (15-1681)
Table 1A, Line 29 For VIII-1, for SA-240, Min. Tensile Strength, Min. Yield Strength,
Max. Temperature Limit, and Notes revised (15-1681)
Table 1A, Lines 30–32 For VIII-1, SA-249 and SA-312 added (15-1681)
Table 1A, Line 33 For VIII-1, for SA-358, Min. Tensile Strength, Min. Yield Strength,
Max. Temperature Limit, and Notes revised (15-1681)
Table 1A, Lines 34–37 For VIII-1, SA-403, SA-479, and SA-813 added (15-1681)
152, 153 Table 1A (1) For VIII-1 and Section XII, General Notes (c) and (d) deleted
(17-2199)
(2) Notes G31 and G32 added (18-361)
(3) Previous Note H6 redesignated as H3
(4) Note H6 added (18-361)
156–159 Table 1B, Line 42 For VIII-1, AC-42000-S SB/EN 1706 added (15-876)
160–163 Table 1B, Line 1 For III, VIII-1, and XII, for A91060 SB-209 O, Size/Thickness, Min.
Yield Strength, and stress values revised (14-2162)
Table 1B, Lines 2–6 For III, VIII-1, and XII, for SB-209 H112, H12, and H14, Size/
Thickness, Min. Tensile Strength, Min. Yield Strength, and stress
values revised (14-2162)
Table 1B, Lines 7–9 For III, VIII-1, and XII, for SB-210 O, H14, and H113, Min. Tensile
Strength, Min. Yield Strength, and stress values revised (14-2162)
Table 1B, Lines 10–14 For III, VIII-1, and XII, for SB-221 O, SB-221 H112, SB-234 H14, and
SB-241 O and H112, Min. Tensile Strength, Min. Yield Strength,
and stress values revised (14-2162)
Table 1B, Line 15 For III, VIII-1, and XII, for A91100 SB-209 O, Min. Tensile Strength,
Min. Yield Strength, and stress values revised (14-2162)
Table 1B, Line 16 For III, VIII-1, and XII, for SB-209 H112, Size/Thickness, Min. Yield
Strength, and stress values revised (14-2162)
Table 1B, Lines 17–19 For III, VIII-1, and XII, for SB-209 H112 and H12, Size/Thickness,
Min. Tensile Strength, Min. Yield Strength, and stress values
revised (14-2162)
Table 1B, Lines 20 For III, VIII-1, and XII, for SB-209 H14, Min. Yield Strength and stress
values revised (14-2162)
Table 1B, Lines 21–24 For III, VIII-1, and XII, for SB-221 O, SB-221 H112, SB-241 O, and
SB-241 H112, Min. Tensile Strength, Min. Yield Strength, and
stress values revised (14-2162)
xlvi
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Page Location Change (Record Number)
168–171 Table 1B, Line 13 For III, VIII-1, and XII, for A95154 SB-209 O, Size/Thickness, Min.
Yield Strength, Max. Temperature Limits, and stress values
revised (14-2162)
Table 1B, Line 14 For III, VIII-1, and XII, for SB-209 H112, Size/Thickness, Max.
Temperature Limits, and stress values revised (14-2162)
Table 1B, Line 15 For III, VIII-1, and XII, for SB-209 H112, Size/Thickness, Min. Yield
Strength, Max. Temperature Limits, and stress values revised
(14-2162)
Table 1B, Lines 16 & 17 For III, VIII-1, and XII, for SB-209 H32 and H34, Size/Thickness,Max.
Temperature Limits, and stress values revised (14-2162)
Table 1B, Line 18 For III, VIII-1, and XII, for SB-210 O, Size/Thickness, Min. Yield
Strength, Max. Temperature Limits, and stress values revised
(14-2162)
Table 1B, Line 19 For III, VIII-1, and XII, for SB-210 H34, Size/Thickness, Max.
Temperature Limits, and stress values revised (14-2162)
Table 1B, Lines 20 & 21 For III, VIII-1, and XII, for SB-221 O and H112, Min. Yield Strength,
Max. Temperature Limits, and stress values revised (14-2162)
Table 1B, Line 22 For III, VIII-1, and XII, for A95254 SB-209 O, Min. Yield Strength,
Max. Temperature Limits, and stress values revised (14-2162)
Table 1B, Line 23 For III, VIII-1, and XII, for SB-209 H112, Size/Thickness and stress
values revised (14-2162)
Table 1B, Line 24 For III, VIII-1, and XII, for SB-209 H112, Size/Thickness, Min. Yield
Strength, Max. Temperature Limits, and stress values revised
(14-2162)
Table 1B, Lines 25 & 26 For III, VIII-1, and XII, for SB-209 H32 and H34, Max. Temperature
Limits and stress values revised (14-2162)
Table 1B, Line 27 For III, VIII-1, and XII, for A95454 SB-209 O, Size/Thickness, Min.
Tensile Strength, Min. Yield Strength, and stress values revised
(14-2162)
Table 1B, Line 28 For III, VIII-1, and XII, for SB-209 H112, Size/Thickness and stress
values revised (14-2162)
Table 1B, Line 29 For III, VIII-1, and XII, for SB-209 H112, Size/Thickness, Min. Tensile
Strength, Min. Yield Strength, and stress values revised (14-2162)
Table 1B, Lines 30 & 31 For III, VIII-1, and XII, for SB-209 H32 and H34, Size/Thickness and
stress values revised (14-2162)
Table 1B, Line 32 For III, VIII-1, and XII, for SB-221 O, Size/Thickness, Min. Tensile
Strength, Min. Yield Strength, and stress values revised (14-2162)
Table 1B, Line 33 For III, VIII-1, and XII, for SB-221 H111, Size/Thickness and stress
values revised (14-2162)
Table 1B, Line 34 For III, VIII-1, and XII, for SB-221 H112, Size/Thickness, Min. Tensile
Strength, Min. Yield Strength, and stress values revised (14-2162)
Table 1B, Lines 35 & 36 For III, VIII-1, and XII, for SB-234 H32 and H34, Size/Thickness and
stress values revised (14-2162)
xlvii
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Page Location Change (Record Number)
Table 1B, Line 37 For III, VIII-1, and XII, for SB-241 O, Size/Thickness deleted and Min.
Tensile Strength, Min. Yield Strength, and stress values revised
(14-2162)
Table 1B, Line 38 For III, VIII-1, and XII, for SB-241 H111, Size/Thickness deleted and
stress values revised (14-2162)
Table 1B, Line 39 For III, VIII-1, and XII, for SB-241 H112, Size/Thickness deleted and
Min. Tensile Strength, Min. Yield Strength, and stress values
revised (14-2162)
176–179 Table 1B, Line 14 For III, VIII-1, and XII, for A96063 SB-210 T6, Size/Thickness, Min.
Yield Strength, and stress values revised (15-2876)
Table 1B, Line 15 For III, VIII-1, and XII, for SB-210 T6 wld., Size/Thickness and Min.
Tensile Strength revised, Min. Yield Strength added, and stress
values revised (15-2876)
Table 1B, Line 16 (1) For III, for SB-221 T1, Max. Temperature Limit revised (15-2876)
(2) For III, VIII-1, and XII, Min. Tensile Strength, Min. Yield Strength,
and stress values revised (15-2876)
Table 1B, Line 17 (1) For III, for SB-221 T1, Max. Temperature Limit revised (15-2876)
(2) For III, VIII-1, and XII, Size/Thickness and stress values revised
(15-2876)
Table 1B, Line 18 For III, VIII-1, and XII, for SB-221 T5, stress values revised (15-2876)
Table 1B, Line 19 For III, VIII-1, and XII, for SB-221 T5, Size/Thickness, Min. Yield
Strength, and stress values revised (15-2876)
Table 1B, Line 20 For III, VIII-1, and XII, for SB-221 T6, Size/Thickness and stress
values revised (15-2876)
Table 1B, Lines 21 & 22 For III, VIII-1, and XII, for SB-221 T5 wld. and T6 wld., Size/
Thickness revised, Min. Tensile Strength revised, Min. Yield
Strength added, and stress values revised (15-2876)
Table 1B, Line 23 For III, for SB-241 T1, Min. Tensile Strength, Min. Yield Strength,
Max. Temperature Limit, and stress values revised (15-2876)
Table 1B, Line 24 For III, for SB-241 T1, Size/Thickness, Max. Temperature Limit, and
stress values revised (15-2876)
Table 1B, Line 25 (1) For III, for SB-241 T5, Max. Temperature Limit revised (15-2876)
(2) For III, VIII-1, and XII, stress values revised (15-2876)
Table 1B, Line 26 (1) For III, for SB-241 T5, Max. Temperature Limit revised (15-2876)
(2) For III, VIII-1, and XII, Size/Thickness, Min. Yield Strength, and
stress values revised (15-2876)
Table 1B, Lines 27 (1) For III, for SB-241 T6, Max. Temperature Limit revised (15-2876)
(2) For III, VIII-1, and XII, Size/Thickness and stress values revised
(15-2876)
Table 1B, Lines 28 & 29 (1) For III, for SB-241 T5 wld. and T6 wld., Max. Temperature Limit
revised (15-2876)
(2) For III, VIII-1, and XII, Size/Thickness revised, Min. Tensile
Strength revised, Min. Yield Strength added, and stress values
revised (15-2876)
Table 1B, Line 30 For III, VIII-1, and XII, for SB-241 T6, Size/Thickness added and
stress values revised (15-2876)
xlviii
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Page Location Change (Record Number)
Table 1B, Line 31 For III, VIII-1, and XII, for SB-241 T6 wld., Size/Thickness added,
Min. Tensile Strength revised, Min. Yield Strength added, and
stress values revised (15-2876)
176–207 Table 1B For copper materials, Size/Thickness added, revised, or deleted for
lines containing pound sign in margin (17-2305)
Table 1B, Line 32 For III, VIII-1, and XII, C10200 O60 SB-187 added (15-649)
Table 1B, Line 33 For III, VIII-1, and XII, for O60 SB-187, stress values revised (15-649)
Table 1B, Line 34 For I, III, VIII-1, and XII, O60 SB-75 added (15-649)
Table 1B, Line 35 For I, III, VIII-1, and XII, for O60 SB-75, stress values revised
(15-649)
Table 1B, Line 36 For I, III, VIII-1, and XII, for O61 SB-42, Min. Yield Strength and
stress values revised (15-649)
Table 1B, Line 37 For I, III, VIII-1, and XII, O61 SB-42 added (15-649)
Table 1B, Lines 38–43 For III, VIII-1, and XII, for H00 through H04 and O25 SB-152, Notes
and stress values revised (15-649)
Table 1B, Line 44 For III, VIII-1, and XII, O25 SB-152 added (15-649)
180–183 Table 1B, Lines 8–13 For III, VIII-1, and XII, for C10400 H00 through H04 and O25 SB-152,
Notes and stress values revised (15-649)
Table 1B, Line 14 For III, VIII-1, and XII, O25 SB-152 added (15-649)
Table 1B, Lines 15–20 For III, VIII-1, and XII, for C10500 H00 through H04 and O25 SB-152,
Notes and stress values revised (15-649)
Table 1B, Line 21 For III, VIII-1, and XII, O25 SB-152 added (15-649)
Table 1B, Lines 22–27 For III, VIII-1, and XII, for C10700 H00 through H04 and O25 SB-152,
Notes and stress values revised (15-649)
Table 1B, Line 28 For III, VIII-1, and XII, O25 SB-152 added (15-649)
Table 1B, Lines 29 & 30 For III, VIII-1, and XII, for C11000 H04 and O60 SB-187, stress
values revised (15-649)
Table 1B, Line 31 For III, VIII-1, and XII, O60 SB-187 added (15-649)
Table 1B, Lines 32–37 For VIII-1 and XII,for H00 through H04 and O25 SB-152, Notes and
stress values revised (15-649)
Table 1B, Line 38 For VIII-1 and XII, O25 SB-152 added (15-649)
Table 1B, Line 39 For III, for C12000 O50 SB-75, stress values revised (15-649)
Table 1B, Line 40 For III, O50 SB-75 added (15-649)
Table 1B, Line 41 For I, III, VIII-1, and XII, for O60 SB-75, stress values revised
(15-649)
Table 1B, Line 42 For I, III, VIII-1, and XII, O60 SB-75 added (15-649)
Table 1B, Line 43 For I, III, VIII-1, and XII, for O61 SB-42, Min. Yield Strength and
stress values revised (15-649)
Table 1B, Line 44 For I, III, VIII-1, and XII, O61 SB-42 added (15-649)
184–187 Table 1B, Line 8 For I, III, VIII-1, and XII, for C12200 O61 SB-42, Min. Yield Strength
and stress values revised (15-649)
xlix
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Page Location Change (Record Number)
Table 1B, Line 9 For I, III, VIII-1, and XII, O61 SB-42 added (15-649)
Table 1B, Line 10 For III, VIII-1, and XII, for O50 SB-75, stress values revised (15-649)
Table 1B, Line 11 For III, VIII-1, and XII, O50 SB-75 added (15-649)
Table 1B, Line 12 For I and III, for O60 SB-75, stress values revised (15-649)
Table 1B, Line 13 For I and III, O60 SB-75 added (15-649)
Table 1B, Line 14 For III and VIII-1, for O61 SB-359, stress values revised (15-649)
Table 1B, Line 15 For III and VIII-1, O61 SB-359 added (15-649)
Table 1B, Line 16 For III, VIII-1, and XII, for WO61 SB-543, stress values revised
(15-649)
Table 1B, Line 17 For III, VIII-1, and XII, WO61 SB-543 added (15-649)
Table 1B, Lines 18–23 For III, VIII-1, and XII, for H00 through H04 and O25 SB-152, Notes
and stress values revised (15-649)
Table 1B, Line 24 For III, VIII-1, and XII, O25 SB-152 added (15-649)
Table 1B, Lines 34–39 For III, VIII-1, and XII, for C12300 H00 through H04 and O25 SB-152,
Notes and stress values revised (15-649)
Table 1B, Line 40 For III, VIII-1, and XII, O25 SB-152 added (15-649)
Table 1B, Line 41 For C14200 O25 SB-152, for III, Notes and stress values revised
(15-649)
Table 1B, Line 42 For III, O25 SB-152 added (15-649)
188–191 Table 1B, Lines 14–17 For III, VIII-1, and XII, for C36500 M20 and O25 SB-171, Size/
Thickness revised (17-139)
Table 1B, Lines 44–47 For III, VIII-1, and XII, for C46400 M20 and O25 SB-171, Size/
Thickness and stress values revised (17-139, 17-3115)
192–195 Table 1B, Lines 1–4 For III, VIII-1, and XII, for C46500 M20 and O25 SB-171, Size/
Thickness and stress values revised (17-139, 17-3115)
Table 1B, Lines 9 & 10 For III, VIII-1, and XII, for C61400 M20 and O25 SB-171, Size/
Thickness revised (17-139)
Table 1B, Lines 16–19 For III, VIII-1, and XII, for C63000 M20 and O25 SB-171, Size/
Thickness and stress values revised (17-139, 17-3115)
Table 1B, Lines 20 & 21 For III, VIII-1, and XII, for M20 and O25 SB-171, stress values revised
(17-3115)
Table 1B, Line 42 For III, VIII-1, and XII, for C70600 O60 SB-466, Notes and stress
values revised (17-1693)
Table 1B, Line 43 For III, VIII-1, and XII, O60 SB-466 added (17-1693)
Table 1B, Line 44 For III, VIII-1, and XII, for WO61 SB-467, Notes and stress values
revised (17-1693)
Table 1B, Line 45 For III, VIII-1, and XII, WO61 SB-467 added (17-1693)
Table 1B, Line 47 For III, O60 SB-151 added (17-1693)
196–199 Table 1B, Lines 1 & 3 For III, Size/Thickness added (17-139)
Table 1B, Lines 2 & 4 For III, M20 SB-171 added (17-1693)
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Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
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--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
Page Location Change (Record Number)
Table 1B, Line 5 For VIII-1 and XII, Size/Thickness added (17-139)
Table 1B, Line 6 For VIII-1 and XII, M20 SB-171 added (17-1693)
Table 1B, Lines 7 & 9 For III, Size/Thickness added (17-139)
Table 1B, Lines 8 & 10 For III, O25 SB-171 added (17-1693)
Table 1B, Line 11 For VIII-1 and XII, Size/Thickness added (17-139)
Table 1B, Line 12 For VIII-1 and XII, O25 SB-171 added (17-1693)
Table 1B, Line 14 For I and III, O61 SB-111 added (17-1693)
Table 1B, Line 16 For III, VIII-1, and XII, O61 SB-111 added (17-1693)
Table 1B, Line 18 For III and VIII-1, O61 SB-359 added (17-1693)
Table 1B, Line 20 For III, VIII-1, and XII, O61 SB-395 added (17-1693)
Table 1B, Line 21 For VIII-1 and XII, for WO61 SB-467, stress values for 275°C through
325°C revised (17-1693)
Table 1B, Line 22 For III, VIII-1, and XII, WO61 SB-467 added (17-1693)
Table 1B, Line 23 For VIII-1 and XII, for WO61 SB-543, stress values for 275°C through
325°C revised (17-1693)
Table 1B, Line 24 For III, VIII-1, and XII, WO61 SB-543 added (17-1693)
Table 1B, Line 25 For VIII-1, for WO61 SB-956, stress values for 275°C through 325°C
revised (17-1693)
Table 1B, Line 26 For VIII-1, WO61 SB-956 added (17-1693)
Table 1B, Lines 33–47 For I, III, VIII-1, and/or XII, C70620 lines added (16-2884)
200–203 Table 1B, Lines 1–10 For III, VIII-1, and/or XII, C70620 lines added (16-2884)
Table 1B, Line 14 For III, for C71500 WO61 SB-467, Min. Yield Strength revised
(17-1768)
Table 1B, Line 15 For III, WO61 SB-467 added (17-1768)
Table 1B, Lines 16 & 18 For III, VIII-1, and XII, Size/Thickness revised (17-139)
Table 1B, Lines 17, 19, 21
& 23
For III, VIII-1, and XII, M20 and O25 SB-171 added (17-1768)
Table 1B, Lines 20 & 22 For III, VIII-1, and XII, for M20 and O25 SB-171, Size/Thickness and
stress value for 40°C revised (17-139, 17-1768)
Table 1B, Line 24 For III, for WO61 SB-467, stress value for 40°C revised (17-1768)
Table 1B, Line 25 For III, WO61 SB-467 added (17-1768)
Table 1B, Line 27 For III, VIII-1, and XII, O60 SB-466 added (17-1768)
Table 1B, Line 29 For I, III, VIII-1, and XII, O61 SB-111 added (17-1768)
Table 1B, Line 31 For III and VIII-1, O61 SB-359 added (17-1768)
Table 1B, Lines 33 & 35 For III, VIII-1, and XII, O61 SB-395 and WO61 SB-543 added
(17-1768)
Table 1B, Line 37 For VIII-1, WO61 SB-956 added (17-1768)
Table 1B, Line 39 For III, VIII-1, and XII, for HR50 SB-395, Class/Condition/Temper
revised (16-2884, 17-2305)
li
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Page Location Change (Record Number)
Table 1B, Lines 40–44 For III, VIII-1, and/or XII, C71520 lines added (16-2884)
204–207 Table 1B, Lines 1–12 For I, III, VIII-1, and/or XII, C71520 lines added (16-2884)
Table 1B, Line 21 (1) For III, for C95400 M01 SB-148, Max. Temperature Limit revised
(16-3096)
(2) For I, III, VIII-1, and XII, Notes and stress values revised
(16-3096)
Table 1B, Line 22 For III, for M02 SB-271, Max. Temperature Limit, Notes, and stress
values revised (16-3096)
224–227 Table 1B, Lines 12 & 13 For III, VIII-1, and XII, for N06600 Hot fin./ann. SB-167, lines merged
(15-2374)
280, 281 Table 1B (1) For VIII-1 and XII, General Notes (c) and (d) deleted (17-2199)
(2) Note T21 added (16-3096)
(3) Note W8 deleted (17-1510)
(4) Notes W16 and W17 redesignated as W9 and W10, respectively
288–366Table 2A Size/Thickness revised for lines containing pound sign in margin
(17-583)
308–310 Table 2A, Line 8 For III, for 9Cr–1Mo–V SA-182 F91, Min. Tensile Strength and stress
values revised (14-206)
320–322 Table 2A, Lines 2 & 3 For Section VIII, Division 2, 7Ni SA-553 III added (17-2312)
367 Table 2A Note H7 redesignated as H2
374–376 Table 2B For copper materials, Size/Thickness added or revised for lines
containing pound sign in margin (17-2305)
Table 2B, Line 29 For VIII-2, for C70600 M20 or O25 SB-171, Size/Thickness revised
(17-139)
Table 2B, Line 32 & 34 For III and VIII-2, for C71500 M20 or O25 SB-171, Size/Thickness
and Notes revised (17-139, 17-1768)
Table 2B, Line 33 & 35 For III and VIII-2, M20 or O25 SB-171 added (17-1768)
Table 2B, Line 36 For III, for O61 SB-111, Notes revised (17-1768)
Table 2B, Line 37 For III, O61 SB-111 added (17-1768)
Table 2B, Lines 39 & 41 For VIII-2, O61 SB-111 and SB-395 added (17-1768)
Table 2B, Line 42 For III, for HR50 SB-111, Notes revised (17-1768)
Table 2B, Lines 43 & 44 For III and VIII-2, C71520 M20 or O25 SB-171 added (16-2884)
Table 2B, Lines 45 & 46 For III, O61 and HR50 SB-111 added (16-2884)
382–384 Table 2B, Lines 21 & 24 For III and VIII-2, for N06600 Cold worked/ann. SB-167, Class/
Condition/Temper revised (15-2374)
398–421 Table 3 Size/Thickness added or revised for lines containing pound sign in
margin (17-583, 17-2305)
402–405 Table 3, Line 5 For III, VIII-1, VIII-2, and XII, for 1Cr–1/2Mo–V SA-193 B16, Size/
Thickness revised (12-9)
406–409 Table 3, Lines 6 & 7 For VIII-1 and VIII-2, for 16Cr–12Ni–2Mo SA-320 B8M and B8MA,
Max. Temperature Limit revised and stress values added (08-539)
Table 3, Lines 8, 11 & 14 For VIII-1 and VIII-2, for SA-193 B8M, Type/Grade revised and Class
added (08-539)
lii
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Page Location Change (Record Number)
Table 3, Lines 10, 13, 16 &
18
For VIII-1 and VIII-2, for SA-320 B8M, Max. Temperature Limit
revised and stress values added (08-539)
Table 3, Lines 21 & 22 For VIII-1 and VIII-2, for 18Cr–8Ni SA-320 B8 and B8A, Max.
Temperature Limit revised and stress values added (08-539)
Table 3, Line 32 (1) For III, VIII-1, VIII-2, and XII, for 18Cr–8Ni–Se SA-320 B8F,
Nominal Composition revised (08-539)
(2) For VIII-1 and VIII-2, Max. Temperature Limit revised (08-539)
Table 3, Line 33 (1) For VIII-1, VIII-2, and XII , for SA-320 B8FA, Nominal
Composition revised (08-539)
(2) For VIII-1 and VIII-2, Max. Temperature Limit revised and stress
values added (08-539)
Table 3, Lines 37 & 38 For VIII-1 and VIII-2, for 18Cr–10Ni–Cb SA-320 B8C and B8CA, Max.
Temperature Limit revised and stress values added (08-539)
410–413 Table 3, Lines 10 & 11 For VIII-1 and VIII-2, for 18Cr–10Ni–Ti SA-320 B8T and B8TA, Max.
Temperature Limit revised and stress values added (08-539)
Table 3, Lines 13, 15, 17 &
19
For VIII-1 and VIII-2, for SA-320 B8T, Max. Temperature Limit
revised and stress values added (08-539)
414–417 Table 3, Lines 9 & 10 For VIII-1, VIII-2, and XII, for C10200 and C11000 O60 SB-187,
stress values revised (15-649)
Table 3, Line 25 For III, VIII-1, VIII-2, and XII, C63000 M20 SB-150 added (17-649)
Table 3, Line 26 For III, VIII-1, VIII-2, and XII, for HR50 SB-150, stress values revised
(17-649)
Table 3, Line 27 For III, VIII-1, VIII-2, and XII, for M20 SB-150, stress values revised
(17-649)
Table 3, Lines 28 & 29 For III, VIII-1, VIII-2, and XII, for HR50 SB-150, Product Form and
stress values revised (17-649)
422 Table 3 For VIII-1 and VIII-2, General Notes (b) and (c) deleted (17-2199)
424–430 Table 4 Size/Thickness revised for lines containing pound sign in margin
(17-583)
424–426 Table 4, Line 11 For III, for 1Cr–1/2Mo–V SA-193 B16, Size/Thickness revised (12-9)
Table 4, Line 12 For VIII-2, for SA-193 B16, Size/Thickness revised (12-9)
436–491 Table 5A Size/Thickness revised for lines containing pound sign in margin
(17-583)
448–451 Table 5A, Lines 19, 20, 24
& 25
For 11/4Cr–
1/2Mo–Si SA-182 and SA-336 F11, stress value for 475°C
revised (17-3022)
452–455 Table 5A, Lines 30–35 3Cr–1Mo–1/4V–Cb–Ca SA-182 F3VCb, SA-336 F3VCb, SA-508 3VCb,
SA-541 3VCb, SA-542 E, and SA-832 23V added (17-2575)
456–459 Table 5A, Lines 12–14 For 9Cr–1Mo–V SA-213 T91, SA-335 P91, and SA-387 91, stress
values revised (16-958)
Table 5A, Lines 15 & 16 For SA-182 F91 and SA-336 F91, Min. Tensile Strength and stress
values revised (14-206, 16-958)
464–467 Table 5A, Lines 20 & 21 7Ni SA-553 III added (17-2312)
488–491 Table 5A, Lines 22, 24–26
& 28–31
24Cr–22Ni–6Mo–2W–Cu–N SA-213, SA-249, SA-312, SA-403,
SA-479, and SA-813 added (15-1681)
liii
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
Page Location Change (Record Number)
522 Table 5A Notes H5 and H6 redesignated as H2 and H3, respectively
498–501 Table 5B, Line 47 A96061 SB-209 T6 wld. added (15-926)
502–505 Table 5B, Lines 3 & 6 SB-210 and SB-221 T6 wld. added (15-926)
Table 5B, Lines 11, 12 &
14
SB-241 and SB-308 T6 wld. added (15-926)
Table 5B For copper materials, Size/Thickness added or deleted for lines
containing pound sign in margin (17-2305)
Table 5B, Lines 22 & 23 For C10200 and C11000 O60 SB-187, Notes and stress values
revised (15-649)
Table 5B, Lines 28 & 29 For C46400 M20 or O25 SB-171, Size/Thickness, Notes, and stress
values for 175°C and 200°C revised (17-139, 17-3115)
Table 5B, Line 30 C60800 O61 SB-111 deleted (17-1858)
Table 5B, Line 36 For C70600 M20 or O25 SB-171, Size/Thickness, Notes, and stress
values revised (17-139, 17-1693)
Table 5B, Lines 37 & 38 For O61 SB-111 and O61 SB-395, Notes and stress values revised
(17-1693)
Table 5B, Lines 39–41 C70620 M20 or O25 SB-171, O61 SB-111, and O61 SB-395 added
(16-2884)
Table 5B, Lines 42 & 43 For C71500 M20 or O25 SB-171, Size/Thickness, Notes, and stress
values revised (17-139, 17-1693)
Table 5B, Lines 44 & 45 For O61 SB-111 and O61 SB-395, Notes and stress values revised
(17-1693)
506–509 Table 5B, Lines 1–4 C71520 lines added (16-2884)
510–513 Table 5B, Lines 18 & 21 For N06600 Cold worked/ann. SB-167, Class/Condition/Temper
revised (15-2374)
524–530 Table 6A Added (16-1199)
532–538 Table 6B Added (16-1200)
540–544 Table 6C Added (15-2737)
546–550 Table 6D Added (16-1198)
556–627 Table U Size/Thickness added, revised, or deleted for lines containing pound
sign in margin (17-583, 17-2305)
564, 565 Table U, Line 41 For 1Cr–1/2Mo–V SA-193 B16, Size/Thickness revised (12-9)
566, 567 Table U, Lines 5–48 1Cr–1/4Si–V SA-231 and SA-232 added (10-684)
568, 569 Table U, Lines 1–18 1Cr–1/4Si–V SA-231 and SA-232 added (10-684)
572, 573 Table U, Lines 33–37 For 9Cr–1Mo–V SA-213 T91, SA-234 WP91, SA-335 P91, SA-369
FP91, and SA-387 91, Size/Thickness deleted (14-206)
Table U, Lines 38 & 39 For SA-182 F91 and SA-336 F91, Size/Thickness deleted, Min.
Tensile Strength revised, and tensile strength values revised
(14-206)
576, 577 Table U, Lines 9–16 For 15Cr–5Ni–3Cu SA-564 and SA-705 XM-12, tensile strength
values added (11-1896)
liv
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
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--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
Page Location Change (Record Number)
584, 585 Table U, Line 14 7Ni SA-553 III added (17-2312)
Table U, Lines 36–41 14Cr–16Ni–6Si–Cu–Mo SA-213, SA-240, SA-249, SA-312, SA-403,
and SA-479 added (13-1242)
588, 589 Table U, Lines 15, 18 & 23 For 16Cr–12Ni–2Mo SA-193 B8M, Type/Grade revised and Class/
Condition/Temper added (17-583)
596, 597 Table U, Lines 3 & 4 For 18Cr–8Ni–Se SA-320 B8F and B8FA, Nominal Composition
revised (08-539)
Table U, Lines 5 & 6 SA-320 B8F and B8FA deleted (08-539)
602, 603 Table U, Lines 9–12 20Cr–3Ni–1.5Mo–N SA-240, SA-790, and SA-789 added (11-512)
Table U, Lines 16 & 20 20Cr–18Ni–6Mo SA-213 added (17-2054)
606, 607 Table U, Lines 19, 21, 22 &
24–26
24Cr–22Ni–6Mo–2W–Cu–N SA-213, SA-249, SA-312, SA-403,
SA-479, and SA-813 added (15-1681)
612, 613 Table U, Line 37 AC-42000-S SB/EN 1706 added (15-876)
Table U, Lines 38–43 A91060 SB-209 added (14-2162)
614, 615 Table U, Lines 1–8 SB-210, SB-221, SB-234, and SB-241 added (14-2162)
Table U, Lines 9–18 A91100 SB-209, SB-221, and SB-241 added (14-2162)
616, 617 Table U, Lines 39–43 A95154 SB-209 added (14-2162)
618, 619 Table U, Lines 1–4 SB-210 and SB-221 added (14-2162)
Table U, Lines 5–9 A95254 SB-209 added (14-2162)
Table U, Lines 10–22 A95454 SB-209, SB-221, SB-234, and SB-241 added (14-2162)
620, 621 Table U, Lines 14 & 15 A96063 SB-210 added (15-2876)
Table U, Lines 16–19, 21 &
22
SB-221 added (15-2876)
Table U, Line 20 SB-221 added (15-2873)
Table U, Lines 23–31 SB-241 added (15-2876)
Table U, Lines 32–34 For C10200 O60 SB-187, O60 SB-75, and O61 SB-42, tensile strength
values revised (15-649)
Table U, Lines 35–40 For H00 through H04 and O25 SB-152, tensile strength values
revised (15-649)
622, 623 Table U, Lines 1–18 For C10400, C10500, and C10700 SB-152, tensile strength values
revised (15-649)
Table U, Lines 19 & 20 For C11000 H04 and O60 SB-187, tensile strength values revised
(15-649)
Table U, Lines 21–26 For SB-152, tensile strength values revised (15-649)
Table U, Lines 27 & 28 For C12000 O50 and O60 SB-75, tensile strength values revised
(15-649)
Table U, Line 29 For O61 SB-42, tensile strength values revised (15-649)
Table U, Lines 37 & 38 For C12200 O50 and O60 SB-75, tensile strength values revised
(15-649)
Table U, Line 39 For O61 SB-42, tensile strength values revised (15-649)
lv
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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Page Location Change (Record Number)
Table U, Lines 40 & 41 For O61 SB-359 and WO61 SB-543, tensile strength values revised
(15-649)
Table U, Lines 42–47 For SB-152, tensile strength values revised (15-649)
624, 625 Table U, Lines 10–15 For C12300 SB-152, tensile strength values revised (15-649)
Table U, Line 16 For C14200 O25 SB-152, tensile strength values revised (15-649)
Table U, Lines 24–28 C23000 SB-43, SB-111, SB-135, SB-395, and SB-543 added (18-3)
Table U, Lines 29–32 C28000 SB-111 and C36500 SB-171 added (18-737)
626, 627 Table U, Lines 7 & 8 C46400 and C46500 SB-171 added (17-3116)
Table U, Line 12 For C61400 O25 SB-171, Size/Thickness revised (17-139)
Table U, Line 16 For C63000 O25 or M20 SB-171, Class/Condition/Temper, Size/
Thickness, and tensile strength values revised (17-139, 17-679)
Table U, Line 17 M20 SB-150 added (17-679)
Table U, Line 18 For O25 or M20 SB-171, Class/Condition/Temper, Size/Thickness,
and tensile strength values revised (17-139, 17-679)
Table U, Lines 19 & 20 HR50 and M20 SB-150 added (17-679)
Table U, Line 21 For O25 or M20 SB-171, Class/Condition/Temper, Size/Thickness,
and tensile strength values revised (17-139, 17-679)
Table U, Lines 22 & 23 HR50 SB-150 added (17-679)
Table U, Line 41 M20 SB-171 deleted (17-139)
Table U, Line 42 For M20 SB-171, Size/Thickness revised (17-139)
Table U, Line 43 O25 SB-171 deleted (17-139)
Table U, Line 44 For O25 SB-171, Size/Thickness revised (17-139)
628, 629 Table U, Line 7 For WM50 SB-467, Class/Condition/Temper revised (15-2374)
Table U, Lines 13–32 C70620 added (16-2884)
Table U, Lines 33 & 36 C71500 WO61 SB-467 added (17-1768)
Table U, Lines 34 & 35 For O25 SB-171, Size/Thickness revised (17-139)
Table U, Lines 37, 39 & 40 O60 SB-466, O61 SB-359, and O61 SB-395 added (18-221)
Table U, Lines 44–47 C71520 added (16-2884)
630, 631 Table U, Lines 1–11 C71520 added (16-2884)
Table U, Lines 35 & 37 N04400 Hot worked SB-164 deleted (15-2374)
636, 637 Table U, Line 8 N06600 Hot fin./ann. SB-167 deleted (16-1147)
Table U, Lines 10 & 17 For Cold drawn/ann. SB-167, Size/Thickness deleted and lines
merged (15-2374)
Table U, Line 35 For N06625 Annealed SB-366, Min. Tensile Strength revised
(17-2640)
652 Table U General Note (b) revised (17-2622)
653 Table U-2 Deleted; materials moved to Table U (10-684)
662–809 Table Y-1 Size/Thickness added, revised, or deleted for lines containing pound
sign in margin (17-583, 17-2305)
lvi
Copyright ASME International (BPVC) 
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Page Location Change (Record Number)
674–677 Table Y-1, Lines 36 & 37 For C–Mn–Si–V–Cb SA-656 T3 and T7, Min. Tensile Strength revised
(17-583)
Table Y-1, Lines 38–43 For SA-656 T3 and T7, Min. Tensile Strength and Min. Yield Strength
revised (17-583)
686–689 Table Y-1, Line 7 For 1Cr–1/2Mo–V SA-193 B16, Size/Thickness revised (12-9)
694–697 Table Y-1, Lines 44 & 45 For 9Cr–1Mo–V SA-182 and SA-336 F91, Min. Tensile Strength
revised (14-206)
702–705 Table Y-1, Lines 13–16 For 15Cr–5Ni–3Cu SA-564 and SA-705 XM-12, yield strength values
added (11-1896)
Table Y-1, Lines 17–20 For SA-564 and SA-705 XM-12, yield strength for 40°C revised and
other yield strength values added (11-1896)
718–721 Table Y-1, Line 31 7Ni SA-553 III added (17-2312)
722–725 Table Y-1, Lines 6–11 14Cr–16Ni–6Si–Cu–Mo SA-213, SA-240, SA-249, SA-312, SA-403,
and SA-479 added (13-1242)
726–729 Table Y-1, Lines 27, 31 &
36
For 16Cr–12Ni–2Mo SA-193 B8M, Type/Grade revised and Class/
Condition/Temper added (17-583)
742–745 Table Y-1, Lines 18 & 19 18Cr–8Ni–S SA-320 B8F and B8FA deleted (08-539)
758–761 Table Y-1, Lines 9–12 20Cr–3Ni–1.5Mo–N SA-240, SA-790, and SA-789 added (11-512)
Table Y-1, Lines 16 & 20 20Cr–18Ni–6Mo SA-213 added (17-2054)
766–769 Table Y-1, Lines 19, 21, 22
& 24–26
24Cr–22Ni–6Mo–2W–Cu–N SA-213, SA-249, SA-312, SA-403,
SA-479, and SA-813 added (15-1681)
778–781 Table Y-1, Line 33 AC-42000-S SB/EN 1706 added (15-876)
Table Y-1, Lines 34–42 A91060 SB-209 and SB-210 added (14-2162)
782-785 Table Y-1, Lines 1–5 SB-221, SB-234, and SB-241 added (14-2162)
Table Y-1, Lines 6–15 A91000 SB-209, SB-221, and SB-241 added (14-2162)
786–789 Table Y-1, Lines 38–46 A95154 SB-209, SB-210, and SB-221 added (14-2162)
790–793 Table Y-1, Lines 1–5 A95254 SB-209 added (14-2162)
Table Y-1, Line 6 For A95454 SB-209 O, Size/Thickness, Min. Tensile Strength, Min.
Yield Strength, and yield strength values revised (14-2162)
Table Y-1, Line 7 For SB-209 H112, Size/Thickness revised, Min. Tensile Strength
added, and yield strength values revised (14-2162)
Table Y-1, Line 8 For SB-209 H112, Size/Thickness, Min. TensileStrength, Min. Yield
Strength, and yield strength values revised (14-2162)
Table Y-1, Lines 9 & 10 SB-209 H32 and H34 added (14-2162)
Table Y-1, Line 11 For SB-221 O, Size/Thickness, Min. Tensile Strength, Min. Yield
Strength, and yield strength values revised (14-2162)
Table Y-1, Line 12 SB-221 H111 added (14-2162)
Table Y-1, Line 13 For SB-221 H112, Size/Thickness, Min. Tensile Strength, Min. Yield
Strength, and yield strength values revised (14-2162)
Table Y-1, Lines 14 & 15 SB-234 H32 and H34 added (14-2162)
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Page Location Change (Record Number)
Table Y-1, Line 16 For SB-241 O, Size/Thickness deleted and Min. Tensile Strength,
Min. Yield Strength, and yield strength values revised (14-2162)
Table Y-1, Line 17 SB-241 H111 added (14-2162)
Table Y-1, Line 18 For SB-241 H112, Size/Thickness deleted and Min. Tensile Strength,
Min. Yield Strength, and yield strength values revised (14-2162)
Table Y-1, Line 40 For A96063 SB-210 T6, Size/Thickness revised, Min. Tensile
Strength added, and Min. Yield Strength and yield strength
values revised (15-2876)
Table Y-1, Lines 41–43 SB-210 T6 wld. and SB-221 T1 added (15-2876)
Table Y-1, Line 44 For SB-221 T5, Min. Tensile Strength added and yield strength
values revised (15-2876)
Table Y-1, Line 45 For SB-221 T5, Size/Thickness revised, Min. Tensile Strength added,
Min. Yield Strength revised, and yield strength values revised
(15-2876)
Table Y-1, Line 46 For SB-221 T6, Size/Thickness revised, Min. Tensile Strength added
and yield strength values revised (15-2873)
Table Y-1, Lines 47–49 SB-241 O and T1 added (15-2876)
794–797 Table Y-1, Line 1 For SB-241 T5, yield strength values revised (15-2876)
Table Y-1, Line 2 For SB-241 T5, Size/Thickness, Min. Yield Strength, and yield
strength values revised (15-2876)
Table Y-1, Line 3 For SB-241 T6, Product Form, Size/Thickness, and yield strength
values revised (15-2876)
Table Y-1, Lines 4 & 5 SB-241 O and T6 added (15-2876)
Table Y-1, Lines 6–8 For C10200 O60 SB-187, O61 SB-42, and O60 SB-75, yield strength
values revised (15-649)
Table Y-1, Lines 9–14 For SB-152, yield strength values revised (15-649)
Table Y-1, Lines 22–39 For C10400, C10500, and C10700 SB-152, yield strength values
revised (15-649)
Table Y-1, Line 40 C11000 H04 SB-187 added (17-2305)
Table Y-1, Line 41 For C11000 O60 SB-187, yield strength values revised (15-649)
Table Y-1, Line 42 For O25 SB-152, yield strength values revised (15-649)
Table Y-1, Line 43 For C12000 O61 SB-42, Min. Yield Strength and yield strength
values revised (15-649)
Table Y-1, Lines 44 & 45 For O50 and O60 SB-75, yield strength values revised (15-649)
798–801 Table Y-1, Line 4 For C12200 O61 SB-42, Min. Yield Strength and yield strength
values revised (15-649)
Table Y-1, Lines 5 & 6 For O50 and O60 SB-75, yield strength values revised (15-649)
Table Y-1, Lines 7 & 8 For O61 SB-359 and WO61 SB-543, yield strength values revised
(15-649)
Table Y-1, Lines 9–14 For SB-152, yield strength values revised (15-649)
Table Y-1, Lines 24–29 For C12300 SB-152, yield strength values revised (15-649)
lviii
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Page Location Change (Record Number)
Table Y-1, Lines 38–42 C23000 SB-43, SB-111, SB-135, SB-395, and SB-543 added (18-3)
Table Y-1, Lines 43–46 C28000 SB-111 and C36500 O25 and M20 added (18-737)
802–805 Table Y-1, Lines 19–22 C46400 and C46500 M20 or O25 SB-171 added (17-3116)
Table Y-1, Line 26 For C61400 O25 SB-171, Size/Thickness revised (17-139)
Table Y-1, Lines 34 & 35 For C63000 O25 SB-171, Size/Thickness and yield strength values
revised (17-679)
Table Y-1, Line 36 M20 SB-150 added (17-679)
Table Y-1, Lines 37 & 38 For HR50 and M20 SB-150, Min. Yield Strength and yield strength
values revised (17-679)
Table Y-1, Line 39 For O25 SB-171, yield strength values revised (17-679)
Table Y-1, Lines 40 & 41 For HR50 SB-150, Product Form and yield strength values revised
(17-679)
806–809 Table Y-1, Line 21 C70600 M20 SB-171 deleted (17-139)
Table Y-1, Line 22 For M20 SB-171, Size/Thickness revised (17-139)
Table Y-1, Line 23 O25 SB-171 deleted (17-139)
Table Y-1, Line 24 For O25 SB-171, Size/Thickness revised (17-139)
Table Y-1, Line 31 For WM50 SB-467, Class/Condition/Temper revised (15-2374)
Table Y-1, Lines 37–43 C70620 added (16-2884)
810–813 Table Y-1, Lines 1–13 C70620 added (16-2884)
Table Y-1, Lines 14 & 17 C71500 WO61 SB-467 added (17-1768)
Table Y-1, Lines 15 & 16 For O25 SB-171, Size/Thickness revised (17-139)
Table Y-1, Lines 18, 20 &
21
O60 SB-466, O61 SB-359, and O61 SB-395 added (18-221)
Table Y-1, Lines 24–36 C71520 added (16-2884, 18-221)
Table Y-1, Lines 40 & 41 For C95400 M01 and M02, yield strength values revised (16-3096)
822–825 Table Y-1, Line 35 N06600 Hot fin./ann. SB-167 deleted (16-1147)
Table Y-1, Line 44 For Cold drawn/ann. SB-167, Product Form revised (16-1147)
858 Table Y-1 General Note (b) revised (17-2622)
861 Table TE-1 (1) Hundredths added for coefficients less than 1.0 (17-2351)
(2) 7Ni added (17-2312)
866 Table TE-2 Hundredths added for coefficient less than 1.0 (17-2351)
867 Table TE-3 (1) Hundredths added for coefficients less than 1.0 (17-2351)
(2) Notes (1) through (4) added (18-804)
868 Table TE-4 Hundredths added for coefficients less than 1.0 (17-2351)
878 Table TE-5 Hundredths added for coefficients less than 1.0 (17-2351)
879 Table TCD (1) For A95086, all values added (17-2313)
(2) Note (4) revised (17-2312)
893 Table TM-1 Notes (2) and (9) revised (17-2312, 13-1242)
897 Table TM-3 C70620 and C71520 added (16-2884)
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Page Location Change (Record Number)
899 Table PRD C70620 and C71520 added (16-2884)
1038 Table 2-100(c) In fourth column, first entry corrected by errata (17-871)
1046 5-100 Fourth paragraph revised (17-601)
1047 Table 5-100 Added (17-601)
1048 5-600 Revised (17-601)
1048 5-700 Revised (17-601)
1056 Mandatory Appendix 6 Added (16-1746)
1086 C-100 Revised (17-334)
1091 Table E-100.1-1 General Note (b) revised (17-605)
1108 Table E-100.6-1 General Note (b) revised (17-605)
1188 Figure E-100.22-10 Grid revised (19-635)
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LIST OF CHANGES IN RECORD NUMBER ORDER
Record Number Change
08-539 In Table 3, corrected nominal composition of 18Cr–8Ni–Se; increased the maximumtempera-
ture limits and provided allowable stresses for SA-320 B8M Cl. 1 and Cl. 1A, B8M Cl. 2 in all
sizes, B8 Cl. 1, B8A Cl. 1A, B8C Cl. 1, B8CA Cl. 1, B8T Cl. 1, B8TA Cl. 1A, and B8T Cl. 2 in all sizes
to 427°C; and increased the maximum use temperature limits and provided allowable stresses
for SA-320 B8F and B8FA to 204°C. In Table U, corrected nominal composition of SA-320 B8F
and B8FA, 18Cr–8Ni–S, to 18Cr–8Ni–Se. In Table Y-1, deleted lines for SA-320 B8F and B8FA for
18Cr–8Ni–S.
10-684 Combined information from Table U-2 into Table U and deleted Table U-2.
11-512 Allowable stress values for UNS S32003 published in Section II, Part D.
11-1896 Added SA-705, Type XM-12, conditions H1075, H1025, H925, and H900 forging materials to
Tables U and Y-1 for Section VIII, Division 3 use.
12-9 Revised SA-193-B16 upper size limits in Tables 3, 4, U, and Y-1 from 175 mm to 200 mm.
13-1242 Added 14Cr–16Ni–6Si–Mo–Cu material to Tables 1A, U, Y-1, and TM-1.
14-206 Revised tables to correct the listing of Min. Tensile Strength for SA-182 F91 and SA-336 F91
from 585 MPa to 620 MPa in Tables 1A, 2A, 5A, U, and Y-1. Revised the values in the time-
independent regime for SA-182 F91 for the allowable stresses in Tables 1A, 2A, and 5A, and
for the tensile strength values in Table U. Removed the size limits for Grade 91 wrought pro-
duct forms from Table U.
14-2162 Added yield and tensile strength values for alloys A91060, A91100, A95154, A95254, and
A95454 to Tables U and Y-1.
15-649 Allowable stress values revised in Tables 1B, 3, and 5B; T-Notes corrected where necessary.
Strength values revised in Tables U and Y-1, and line for SB-543 C12200 WO61 added. High
stress rule allowable stress lines added to annealed temper entries in Table 1B and a G-Note
added. Incorrect size breaks removed.
15-876 SB/EN 1706 Grade EN AC-42000-S-T6 incorporated into Tables 1B, U, and Y-1.
15-926 Added SB-241 6061 T6 welded material to Table 5B for Section VIII, Division 2 applications.
15-1681 Added S31266 to Tables 1A, 5A, U, and Y-1.
15-2374 Revised Tables 1B, 2B, 3, 4, 5B, U, and Y-1 for C70600, N04400, N06600, N06625, N06690, and
N08800.
15-2737 Added allowable stress values for lined water heater materials found in Section IV, Table
HLW-300, for temperatures up to 275°C into Section II, Part D, by creating Table 6C.
15-2873 Incorporated SB-221 6063 T6 into Tables U and Y-1.
15-2876 Added yield and tensile strength values for aluminum alloy 6063 to Tables U, Y-1, and 1B.
16-958 Updated stress values for Grade 91 materials (SA-335, SA-213, SA-182, SA-234, SA-336,
SA-369, and SA-387 specifications).
16-1147 Removed duplicate entries from Tables U and Y-1 for UNS N06600 hot finished/annealed
seamless pipe and tube of >125 mm outside diameter.
16-1198 Created Table 6D to provide allowable stress values up to 275°C for the construction of unlined
water heaters in accordance with Section IV requirements.
16-1199 Created Table 6A with data from Section IV, Tables HF-300.1/HF-300.1M.
16-1200 Created Table 6B based on Section IV, Table HF-300.2 that provides allowable stress values for
nonferrous materials used in the fabrication of pressure vessels constructed according to the
rules of Section IV.
16-1746 Section IV has always had a separate set of allowable stress tables. Incorporated these values
into Section II, Part D to provide a single source document for allowable stress values used in
pressure vessel construction.
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Record Number Change
16-2884 Added C70620 and C71520 to Tables 1B, 2B, 5B, U, Y-1, TM-3, and PRD. The new lines duplicate
the entries of the existing lines for C70600 and C71500 in these tables, except the alloy desig-
nation is changed.
In addition, C70620 and C71520 are listed in SB-283 (die forgings) but C70600 and C71500 are
not, so new lines are added for SB-283 C70620 and C71520 in Tables 1B, U, and Y-1. SB-395
C71500 temper corrected to read HR50 in Table 1B.
16-3096 In Table 1B, changed allowable stress values between 65°C and 200°C inclusive for SB-148 and
SB-271 C95400, changed allowable stress values at 225°C and 250°C to italics (time depen-
dent) for SB-148 and at 225°C for SB-271, deleted allowable stress value at 250°C for
SB-271, changed Section III maximum temperature limit to 204°C, and added T-Note for
SB-148 line. In Table Y-1, changed values for Table Y-1 from 65°C to 275°C inclusive.
17-139 Four SB-171 C70600 lines merged to two lines in Tables U and Y-1. Changed size break for
SB-171 lines in Tables 1B, 2B, 5B, U, and Y-1.
17-334 Revised the first sentence in Nonmandatory Appendix C, paragraph C-1 to change the term
“Nonmandatory Appendix” to “Section.”
17-583 For dual-unit specifications, revised the intermediate values in the Size/Thickness columns of
Tables 1A, 2A, 3, 4, 5A, U, and Y-1 to conform to the intermediate size/thickness limits in the
material specifications in Section II, Part A. In Tables 1A, 2A, U, and Y-1, deleted the word “wall”
on lines for TP310MLN; in Tables 3, U, and Y-1, corrected the type/grade and class of SA-193
B8M Class 2B; and in Table Y-1, corrected the conversions of TS and YS values for SA-656 to
agree with the values in the specification.
17-601 Mandatory Appendix 5 revised to include provision for wrought allowable stresses to be ap-
plied to HIP powder metallurgy material/components of the same grade in the time-
independent range.
17-605 Replaced the words “this Subsection” in General Note (b) in Tables E-100.1-1 and E-100.6-1
with “Sections I, IV, VIII, or XII.”
17-679 For C63000 materials, stress values and size breaks revised in Table 1B and Table 3; line added
to Table 3 for one size break of SB-150 M20 temper and some product forms renamed; strength
values revised for SB-171 and lines added to Table U for SB-150 tempers/size breaks; M20 in-
cluded in temper column in Table U for SB-171 lines; size breaks in Table U and Table Y-1 cor-
rected; for Table Y-1, strength values revised, line added for SB-150 M20, some product forms
renamed, and specified Min. YS values corrected for two SB-150 lines.
17-842 Modified all values of size/thickness and strength for Table U-2 metric sizes to match material
specifications.
17-871 Table 2-100(c) corrected by errata.
17-1510 Deleted the requirement to PWHT welds in UNS C95400 castings.
17-1693 High stress lines for C70600 were added to Tables 1B and 5B. The low stress lines in Table 5B
were removed. The allowable stress values at creep-controlled temperatures for welded lines
were corrected (the 0.85 factor had been applied twice). Small changes were made to creep-
controlled allowable stress values in Table 5B and to values in Table 1B.
17-1768 For C71500 materials, high stress lines were added to Table 1B and Table 2B, existing stress
values in Table 5B were replaced with high stress values, lines for two size breaks of SB-467
WO61 temper were added to Table U and Table Y-1, a Note G1 reference was removed for
SB-111 HR50, and italics and T-Notes were removed for certain entries in Table 5B, and stress
values were corrected at 40°C for three lines in Table 1B and one line in Table 2B.
17-1858 Deleted low stress line for SB-111 C60800 in Table 5B.
17-2054 Added lines for SA-213 S31254 seamless tubing to Tables 1A, U, and Y-1.
17-2199 Deleted Table 1A General Notes (c) and (d), Table 1B General Notes (c) and (d), and Table 3
General Notes (b) and (c).
17-2299 In Table 1A, deleted references to Note H3 for SA/GB 713.
17-2305 Size/Thicknesslimits revised for certain copper alloys in Tables 1B, 2B, 3, 5B, U, and Y-1 so that
they match values in the SB specifications.
17-2312 Added 7Ni materials to Tables 1A, 2A, 5A, U, Y-1, TE, TM, and TCD.
17-2313 Provided TC and TD values for A95086 alloy.
17-2351 Added a second decimal digit to TE table values below 1.0.
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Record Number Change
17-2575 Incorporated allowable stress values assigned to the 3Cr–1Mo–0.25V–Cb–Ca alloy steel into
Table 5A.
17-2622 Added “Section XII” to General Note (b) in Tables U and Y-1.
17-2640 Tensile strength at RT changed from 690 MPa to 760 MPa for SB-366 N06625 in Table U.
17-2688 Revised the Statement of Policy on Information Provided in the Stress Tables, to clarify that the
information in the Minimum Tensile Strength, Minimum Yield Strength, and Size/Thickness
columns is mandatory, but that when there is a conflict between the intermediate values for
these quantities in the stress tables and those in the material specifications, the values in
the material specifications govern.
17-3022 Corrected several values in Tables 1A and 5A for 11/4Cr–
1/2Mo–Si materials.
17-3115 Revised time-dependent allowable stress values for C46400 and C46500 in Table 1B and for
C46400 in Table 5B, and revised certain T-Notes.
17-3116 Added lines for two size breaks of SB-171 C46400 and C46500 to Tables U and Y-1.
18-3 Added lines for C23000 SB-43 O61 and H58, SB-135 O50 and O60, SB-111 O61, SB-395 O61,
and SB-543 WO61 and WC55 to Tables U and Y-1.
18-221 Added lines for SB-359, SB-395, SB-466, and SB-467 C71500 and C71520 to Tables U and Y-1.
18-236 Added paragraphs 2.9, 2.10, 2.11, and 2.12 to explain the guidelines for the ordering of materi-
als in the tables being incorporated into Section II, Part D from Section IV.
18-361 Added lines for S30601 (SA-240), S30600 (SA-182, SA-240, SA-312, SA-479), S32615 (SA-213,
SA-240, SA-312, SA-479), and S31725 (SA-403) to Table 1A.
18-737 Added lines for SB-111 C28000 and SB-171 C36500 to Tables U and Y-1.
18-804 Added Notes to explain which Cu alloys (as identified by UNS designations) are included in
which property class in Table TE-3.
18-1238 Generalized Statement of Policy so that the statement about listing values in the tables at tem-
peratures above the maximum use temperature, so that they be used for interpolation, applies
to both the Metric and Customary editions of Section II, Part D.
18-1497 Sentence added to section 2 of the guidelines for locating materials and “For Information Only”
added to titles of new tables for Section IV use.
19-636 For Figure E-100.22-10, corrected grid line for 69 MPa to be parallel to the lines for 38 MPa and
103 MPa, rather than at an upward angle.
lxiii
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CROSS-REFERENCING AND STYLISTIC CHANGES IN THE BOILER
AND PRESSURE VESSEL CODE
There have been structural and stylistic changes to BPVC, starting with the 2011 Addenda, that should be noted to aid
navigating the contents. The following is an overview of the changes:
Subparagraph Breakdowns/Nested Lists Hierarchy
• First-level breakdowns are designated as (a), (b), (c), etc., as in the past.
• Second-level breakdowns are designated as (1), (2), (3), etc., as in the past.
• Third-level breakdowns are now designated as (-a), (-b), (-c), etc.
• Fourth-level breakdowns are now designated as (-1), (-2), (-3), etc.
• Fifth-level breakdowns are now designated as (+a), (+b), (+c), etc.
• Sixth-level breakdowns are now designated as (+1), (+2), etc.
Footnotes
With the exception of those included in the front matter (roman-numbered pages), all footnotes are treated as end-
notes. The endnotes are referenced in numeric order and appear at the end of each BPVC section/subsection.
Submittal of Technical Inquiries to the Boiler and Pressure Vessel Standards Committees
Submittal of Technical Inquiries to the Boiler and Pressure Vessel Standards Committees has been moved to the front
matter. This information now appears in all Boiler Code Sections (except for Code Case books).
Cross-References
It is our intention to establish cross-reference link functionality in the current edition and moving forward. To facil-
itate this, cross-reference style has changed. Cross-references within a subsection or subarticle will not include the des-
ignator/identifier of that subsection/subarticle. Examples follow:
• (Sub-)Paragraph Cross-References. The cross-references to subparagraph breakdowns will follow the hierarchy of
the designators under which the breakdown appears.
– If subparagraph (-a) appears in X.1(c)(1) and is referenced in X.1(c)(1), it will be referenced as (-a).
– If subparagraph (-a) appears in X.1(c)(1) but is referenced in X.1(c)(2), it will be referenced as (1)(-a).
– If subparagraph (-a) appears in X.1(c)(1) but is referenced in X.1(e)(1), it will be referenced as (c)(1)(-a).
– If subparagraph (-a) appears in X.1(c)(1) but is referenced in X.2(c)(2), it will be referenced as X.1(c)(1)(-a).
• Equation Cross-References. The cross-references to equations will follow the same logic. For example, if eq. (1) ap-
pears in X.1(a)(1) but is referenced in X.1(b), it will be referenced as eq. (a)(1)(1). If eq. (1) appears in X.1(a)(1) but
is referenced in a different subsection/subarticle/paragraph, it will be referenced as eq. X.1(a)(1)(1).
lxiv
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SUBPART 1
STRESS TABLES
STATEMENT OF POLICY ON INFORMATION PROVIDED IN THE
STRESS TABLES
The purpose of this Statement of Policy is to clarify
which information in the stress tables is mandatory and
which is not. The information and restrictions provided
in the Notes found throughout the various stress tables
provided in Subpart 1 of Section II, Part D are mandatory.
It is vital to recognize that lines of information in Tables
1A, 1B, 2A, 2B, 3, 4, 5A, and 5B frequently have essential
information referenced in the Notes column. These Notes
are organized as follows:
(a) EXX: defining onset of values based on successful
experience in service
(b) GXX: general requirements
(c) HXX: heat treatment requirements
(d) SXX: size requirements
(e) TXX: defining onset of time‐dependent behavior
(f) WXX: welding requirements
The specifications and grades or types, coupled with
the assigned Notes for each line, provide the complete de-
scription of material in the context of the allowable
stresses or design stress intensities. Additional require-
ments for particular types of construction must also be
obtained from the rules governing the construction.
The specifications and grades or types, coupled with
the assigned Notes for each line, provide the complete de-
scription of material in the context of the allowable
stresses or design stress intensities. Additional require-
ments for particular types of constructionmust also be
obtained from the rules governing the construction.
In Tables 1A, 2A, and 5A, the information in the Nom-
inal Composition column is nonmandatory and is for in-
formation only. However, these nominal compositions
are the primary sorting used in these three tables. See
the Guideline on Locating Materials in Stress Tables,
and in Tables of Mechanical and Physical Properties.
The information in the Alloy Designation/UNS Number
column is nonmandatory for specifications for which a
grade or type is provided. This is primarily true for the
non-stainless steel alloys in these tables. For specifica-
tions for which no type or grade is listed, the UNS number
is mandatory. Particularly for the stainless steels, for
which no type or grade is listed, the UNS number is the
grade.
The only difference between Tables 1A, 2A, and 5A, and
Tables 1B, 2B, and 5B, with regard to the mandatory/non-
mandatory nature of the information, is that in Tables 1B,
2B, and 5B, the UNS number information is used as the
basis of the sorting scheme for materials and is almost al-
ways mandatory.
Where provided, the information in the columns for
Product Form, Specification Number, Type/Grade,
Class/Condition/Temper, and External Pressure Chart
Number is mandatory. The information in the P‐Number
and Group Number columns is also mandatory; however,
the primary source for this information is Table QW/
QB‐422 in Section IX. When there is a conflict between
the P‐number and Group number information in these
stress tables and that in Section IX, the numbers in Sec-
tion IX shall govern.
The information in the Minimum Tensile Strength,
Minimum Yield Strength, and Size/Thickness dimension
columns is also mandatory; however, the primary source
for this information is the material specifications in Sec-
tion II, Parts A and B. These values are a primary basis
for establishing the allowable stresses and design stress
intensities. When there is a conflict between the tensile
and yield strength values in the stress tables and those
in the material specifications in Section II, Parts A and
B, the minimum tensile and yield strength values in Parts
A and B shall govern. For dual-unit specifications and for
product forms for which separate U.S. Customary and Me-
tric specifications are provided, for the Size/Thickness di-
mensions for size breaks at which the Minimum Specified
Yield or Tensile Strengths, or both, decrease with increas-
ing size or thickness, the values in the material specifica-
tions in Parts A and B shall govern. When there is a
conflict between the maximum size or thickness values
in the stress tables and those in the material specifica-
tions, the values in the stress tables shall govern.
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The information in the Applicability and Maximum
Temperature Limits columns is mandatory. Where a ma-
terial is permitted for use in more than one Construction
Code, and in the SI units version of these tables, the max-
imum use temperature limit in these columns is critical.
The temperature to which allowable stress or design
stress intensity values are listed is not necessarily the
temperature to which use is permitted by a particular
Construction Code. Different Construction Codes often
have different use temperature limits for the same mate-
rial and condition. Further, values may be listed in the
stress tables at temperatures above the maximum use
temperature limit. These stress values are provided to
permit interpolation to be used to determine the allow-
able stress or design stress intensity at temperatures be-
tween the next lowest temperature for which stress
values are listed and the maximum‐use temperature limit
listed in these columns.
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ð19Þ
GUIDELINE ON LOCATING MATERIALS IN STRESS TABLES, AND
IN TABLES OF MECHANICAL AND PHYSICAL PROPERTIES
1 INTRODUCTION
The goal of this Guideline is to assist the users of Sec-
tion II, Part D in locating materials in stress tables (Tables
1A, 1B, 2A, 2B, 3, 4, 5A, and 5B), tables of mechanical
properties (Tables U, U‐2, and Y‐1), and tables of physical
properties (Tables TE-1 through TE-5, TCD, TM-1 through
TM-5, and PRD). This Guideline defines the logic used to
place materials within these tables.
2 STRESS TABLES
Stress tables are all found within Subpart 1 of Section
II, Part D. Tables 1A, 1B, 3, 5A, and 5B cover allowable
stresses, while Tables 2A, 2B, and 4 cover design stress in-
tensities. For this edition, Tables 6A, 6B, 6C, and 6D are
provided for information only. The governing allowable
stresses for those materials are provided in ASME BPVC,
Section IV. Although Subpart 1 also covers ultimate ten-
sile strength and yield strength, the organization of those
mechanical property tables will be discussed separately
in para. 3. A table‐by‐table listing of the materials‐
organization logic used to place materials within the de-
signated tables follows.
2.1 TABLE 1A
Table 1A provides allowable stresses for ferrous1 mate-
rials used in Section I; Section III, Division 1, Classes 2 and
3; Section VIII, Division 1; and Section XII construction.
Within Table 1A, the first step in ordering materials is
to use their nominal compositions. These nominal compo-
sitions are nothing more than accepted compositional fin-
gerprints or widely recognized designators for each alloy
or alloy class. These nominal compositions are arranged
in Table 1A as follows:
(a) carbon steels
(b) carbon steels with small additions of Cb, Ti, and V
(microalloyed steels)
(c) C–1/2Mo steels
(d) chromium steels, including ferritic stainless steels,
by increasing Cr content [1/2Cr,
3/4Cr, 1Cr, 1
1/4Cr, 2
1/4Cr,
3Cr, 5Cr, 9Cr, 11Cr, 12Cr, 13Cr, 15Cr, 17Cr (including
17Cr–4Ni–4Cu and 17Cr–7Ni–1Al), 18Cr, 26Cr, 27Cr,
and 29Cr]
(e) manganese steels (Mn–1/4Mo, Mn–
1/2Mo, Mn–
1/2Ni,
and Mn–V)
(f) silicon steel (11/2Si–
1/2Mo)
(g) nickel steels (1/2Ni,
3/4Ni, 1Ni, 1
1/4Ni, 2Ni, 2
1/2Ni,
23/4Ni, 3Ni, 3
1/2Ni, 4Ni, 5Ni, 8Ni, and 9Ni)
(h) other high nickel steels [25Ni–15Cr–2Ti (Grade
660) and 29Ni–20Cr–3Cu–2Mo (CN7M)]
(i) high alloy steels, including the duplex stainless
steels, in order of increasing chromium content [begin-
ning with 14Cr–16Ni–6Si–Cu–Mo, then 16Cr–9Mn–
2Ni–N, then 16Cr–12Ni–2Mo (316L), etc.], then by in-
creasing nickel content within a given chromium or other
alloy content [18Cr–8Ni, 18Cr–8Ni–N, 18Cr–8Ni–4Si–N,
18Cr–10Ni–Cb (first S34700, then S34709, S34800, and
S34809), 18Cr–10Ni–Ti, 18Cr–11Ni, etc., ending with
29Cr–6.5Ni–2Mo–N].
Unfortunately, most specifications for materials do not
give nominal compositions — and without that informa-
tion, one may not know the nominal composition for a
particular material in Table 1A. If the specification num-
ber and alloy grade or type designation are known, then
one can go to Table QW/QB‐422 of Section IX of the Code
and find the corresponding nominal composition.
Now, for a given nominal composition, Table 1A is ar-
ranged by increasing tensile strength. For a given nominal
composition and tensile strength, stress listings are pro-
vided in order of increasingspecification number. Some-
times, for a given nominal composition, tensile strength,
yield strength, and specificaiton number/grade or type,
there may be more than one line of stresses. At this point,
the Notes referenced on the second page of each page set
within Table 1A will define why there are two or more
lines of stresses and when each applies.
2.2 TABLE 1B
Table 1B provides allowable stresses for nonferrous
materials used in Section I; Section III, Division 1, Classes
2 and 3; Section VIII, Division 1; and Section XII construc-
tion. Aluminum alloys (UNS AXXXXX materials) are the
first materials covered in Table 1B, followed by copper al-
loys (UNS CXXXXX), nickel alloys (UNS NXXXXX), and the
reactive and refractory metals and alloys (UNS RXXXXX).
Within this latter category there are the following:
(a) chromium alloys (R2XXXX)
(b) cobalt alloys (R3XXXX)
(c) titanium alloys (R5XXXX)
(d) zirconium alloys (R6XXXX)
Within each of these material class groupings, stress
lines are first organized by increasing UNS (Unified Num-
bering System) number. The nonferrous specifications
now show these numbers in association with grade
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designations. Then, for a given UNS number, stress lines
are next ordered by strength — first tensile strength
and then yield strength. Finally, for a given UNS number,
tensile strength, and yield strength, stress lines are or-
dered by increasing specification number. Again, some
materials may have two or more stress lines even if their
UNS number, tensile strength, yield strength, and specifi-
cation number are the same. The Notes provide direction
for the applicability of each line.
For those material specifications that may not show
UNS numbers associated with alloy grades, one again
can refer to Section IX’s Table QW/QB‐422 for that
information.
For Table 1B, nominal compositions are shown only for
the NXXXXX and RXXXXX materials, but they have no in-
fluence on the location of alloys in the table. In this Table,
the nominal compositions are simply for information.
2.3 TABLE 2A
Table 2A provides design stress intensities for ferrous
materials for Section III, Division 1, Classes 1, TC, and
SC construction, and for Section VIII, Division 2, Class 1
construction. This Table is organized in the same manner
as Table 1A. Refer back to para. 2.1 for that description.
2.4 TABLE 2B
Table 2B provides design stress intensities for nonfer-
rous materials for Section III, Division 1, Classes 1, TC,
and SC construction, and for Section VIII, Division 2, Class
1 construction. Table 2B materials are ordered in the
same manner as in Table 1B. Refer back to para. 2.2 for
that description.
2.5 TABLE 3
Table 3 provides allowable stresses for bolting materi-
als for use in Section III, Division 1, Classes 2 and 3; Sec-
tion VIII, Division 1; Section VIII, Division 2 (using Part
4.16 of Section VIII, Division 2); and Section XII construc-
tion. The table first covers ferrous materials and then
nonferrous materials. For the ferrous materials, the or-
dering logic parallels that used in Tables 1A and 2A —
first by nominal composition, then by increasing ultimate
tensile strength, then by increasing yield strength, and fi-
nally by increasing specification number. Again, refer
back to para. 2.1 for a discussion on nominal composition.
Nonferrous materials are presented using the same lo-
gic as in Tables 1B and 2B; see para. 2.2 for that
discussion.
2.6 TABLE 4
Table 4 provides design stress intensities for bolting
materials used in Section III, Division 1, Classes 1, TC,
and SC; and in Section VIII, Division 2 (using Part 5 and
Annex 5.F of Section VIII, Division 2).
Table 4 is organized in the same manner as Table 3 —
first covering ferrous materials and then nonferrous ma-
terials — except that Table 4 covers far fewer materials.
For the ordering logic, again refer to paras. 2.1 and 2.2
for ferrous and nonferrous materials, respectively.
2.7 TABLE 5A
Table 5A provides allowable stresses for ferrous mate-
rials for Section VIII, Division 2 construction. This table is
organized in the same manner as Table 1A. Refer back to
para. 2.1 for that description.
2.8 TABLE 5B
Table 5B provides allowable stresses for nonferrous
materials for Section VIII, Division 2 construction. This
table is organized in the same manner as Table 1B. Refer
back to para. 2.2 for that description.
2.9 TABLE 6A
Table 6A provides allowable stresses for ferrous mate-
rials for Section IV construction. This Table is organized
in the same manner as Table 1A. Refer back to para. 2.1
for that description.
2.10 TABLE 6B
Table 6B provides allowable stresses for nonferrous
materials for Section IV construction. This Table is orga-
nized in the same manner as Table 1B. Refer back to para.
2.2 for that description.
2.11 TABLE 6C
Table 6C provides allowable stresses for Section IV con-
struction of lined water heaters. This Table is organized in
the same manner as Table 1A. Refer back to para. 2.1 for
that description.
2.12 TABLE 6D
Table 6D provides allowable stresses for Section IV
construction of unlined water heaters. This Table is orga-
nized in the same manner as Table 1A. Refer back to para.
2.1 for that description.
3 MECHANICAL PROPERTY TABLES
Ultimate tensile strength values and yield strength val-
ues are to be used in design calculations according to the
rules of the Construction Codes. However, they are not to
be construed as minimum strength values at temperature.
This is explained in the General Notes to these tables.
Paragraphs 3.1 through 3.3 provide a table‐by‐table list-
ing of the materials‐organization logic.
3.1 TABLE U
Table U provides tensile strength values for ferrous and
nonferrous materials, in that order. The ordering logic for
ferrous materials is the same as used in Table 1A, except
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yield strength level is not shown. Using the logic de-
scribed in para. 2.1, stress lines are organized by nominal
composition, then by increasing tensile strength level, and
then by increasing specification number.
Nonferrous materials coverage begins following the
last of the high alloy steels (25Cr–22Ni–2Mo–N). Cover-
age of nonferrous alloys begins with the UNS AXXXXX al-
loys, followed by NXXXXX and RXXXXX alloys. The
ordering of materials within these three groups has been
previously described in para. 2.2.
3.2 TABLE U-2
Table U‐2 provides ultimate tensile strengths for spe-
cial ferrous materials used in Section VIII, Division 3 con-
struction. The only material covered is wire produced to
either SA-231 or SA-232, and lines are arranged in order
of decreasing tensile strength, resulting from increasing
wire diameter.
3.3 TABLE Y-1
Table Y‐1 provides yield strength values for ferrous and
nonferrous materials, in that order. Again, the ordering of
yield strength lines parallels the logic described for fer-
rous and nonferrous materials in paras. 2.1and 2.2, re-
spectively. Unlike Table U, for ferrous materials, the
tensile strength level does enter into the ordering pro-
cess, again following nominal composition designation.
Table Y‐1’s nonferrous materials listings begin with the
aluminum‐base alloys (UNS AXXXXX). These are followed
by the copper materials (CXXXXX), nickel‐base materials
(NXXXXX), and the reactive and refractory metals and al-
loys (RXXXXX).
4 PHYSICAL PROPERTY TABLES
Since physical properties (thermal conductivity, ther-
mal diffusivity, thermal expansion, and density), Young’s
modulus, and Poisson’s ratio values can be shown for nu-
merous materials with a single set of property values,
most of the tables found in Subpart 2 of Section II, Part
D are based on nominal composition. Paragraphs 4.1
through 4.4 describe how these tables are organized.
4.1 TABLE TE
Table TE covers thermal expansion behavior, pre-
sented in terms of A (instantaneous coefficient of thermal
expansion), B (mean coefficient of thermal expansion),
and C (linear thermal expansion). This Table is split into
five parts as follows:
(a) Table TE-1 covers numerous individual ferrous ma-
terials and ferrous material groupings. Notes at the end of
Table TE-1 list the nominal compositions covered by the
designated groupings. Again, knowledge of the nominal
composition for a given material is essential, and it was
noted previously that these can be extracted from Table
QW/QB‐422 of Section IX, given the specification number
and grade or type designation.
(b) Table TE-2 covers aluminum alloys. One set of A/B/
C values covers all of the aluminum‐base materials listed
in General Note (a) of Table TE-2.
(c) Table TE-3 covers copper alloys, currently in five
general groupings: C1XXXX alloys, bronze alloys, brass al-
loys, 70Cu–30Ni, and 90Cu–10Ni. According to an article
in ASM International’s “Advanced Materials & Processes”
(December 1999), the general terms of bronze and brass
cover the following alloys:
(1)wrought copper‐base alloys
(-a) C20500–C28580 — brasses (Cu–Zn)
(-b) C31200–C38590 — leaded brasses (Cu–
Zn–Pb)
(-c) C40400–C49080 — tin brasses (Cu–Zn–
Sn–Pb)
(-d) C60600–C64400 — aluminum bronzes (Cu–
Al–Ni–Fe–Si–Sn)
(-e) C64700–C66100 — silicon bronzes (Cu–
Si–Sn)
(2) cast copper‐base alloys
(-a) C83300–C85800 — red and leaded red
brasses (Cu–Zn–Sn–Pb)
(-b) C86100–C86800 — manganese bronzes and
leaded manganese bronzes (Cu–Zn–Mn–Fe–Pb)
(-c) C90200–C94500— tin bronzes and leaded tin
bronzes (Cu–Sn–Zn–Pb)
(-d) C95300–C95810 — aluminum bronzes (Cu–
Al–Fe–Ni)
This guidance should help define which group of
A/B/C values of thermal expansion to select for a given
brass or bronze.
(d) Table TE-4 provides thermal expansion values for
nickel alloys and refractory alloys. The thermal expansion
value sets for the nickel alloys are arranged by increasing
UNS NXXXXX numbers.
(e) Table TE-5 provides thermal expansion values for
two groupings of titanium‐base alloys. One group covers
only Grade 9; the other group covers the other alloys. In
this Table, there is no reference to the UNS number, just
to the grade number.
4.2 TABLE TCD
Table TCD provides both thermal conductivity (TC)
and thermal diffusivity (TD) values for numerous ferrous
and nonferrous materials and material groupings. The
table begins with ferrous materials, split into groups of
carbon and low alloy steels, followed by groups of high
chromium steels and groups of high alloy steels. For each
of these groups, there is a listing of nominal composition
designations found at the end of the table, defining the ex-
tent of coverage.
The next series of materials are the nickel‐base alloys,
covered by TC/TD listings for nickel alloys (arranged by
increasing UNS number) and refractory alloys. Then there
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are TC/TD listings for individual titanium and aluminum
alloys (arranged by increasing UNS number). Table TCD
does not currently provide values for copper or zirconium
alloys.
4.3 TABLE TM
Table TM provides moduli of elasticity for five cate-
gories of materials, as follows:
(a) Table TM-1 covers ferrous materials in nine general
categories and with additional lines for specific materials.
Groups A through G are subdivided by nominal composi-
tion; see the Notes at the end of Table TM-1.
(b) Table TM-2 covers aluminum alloys, listed by UNS
number designation.
(c) Table TM-3 covers copper alloys, listed by UNS
number designation.
(d) Table TM-4 covers nickel alloys, listed by UNS num-
ber designation.
(e) Table TM-5 covers titanium alloys, listed by increas-
ing grade numbers, and zirconium‐base alloys, listed by
increasing UNS number (or grade) designation.
4.4 TABLE PRD
Table PRD provides Poisson’s ratio and density for fer-
rous and nonferrous alloys.
5 REFERENCES
The official reference for UNS numbers is Metals & Al-
loys in the Unified Numbering System, ASTM DS‐56. This
document is periodically updated as various material spe-
cifications are revised, added, or deleted by their sponsor-
ing organizations. Only UNS numbers published in this
reference appear in Section II, Part A and Part B specifica-
tions, and in the various Section II, Part D stress tables,
mechanical property tables, and physical property tables.
Nominal compositions are defined by various groups
within the ASME Code committee structure and there
are no published guidelines describing how these desig-
nations are developed. These designations have the great-
est relevance in the arrangement of ferrous materials and,
as indicated previously, the simplest way to obtain these
designations is to look in Section IX of the ASME Boiler
and Pressure Vessel Code and use Table QW/QB‐422,
which is arranged by increasing specification number.
These start with the “SA” specification numbers, followed
by the “SB” numbers.
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8
ASME BPVC.II.D.M-2019
Table 1A
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 Carbon steel Sheet SA–1008 CS–A … … … 1 1
2 Carbon steel Sheet SA–1008 CS–B … … … 1 1
3 Carbon steel Bar SA–675 45 … … … 1 1
4 Carbon steel Wld. pipe SA–134 A283A … … … 1 1
5 Carbon steel Plate SA–283 A … … … 1 1
6 Carbon steel Plate SA–285 A K01700 … … 1 1
7 Carbon steel Wld. pipe SA–672 A45 K01700 … … 1 1
8 Carbon steel Sheet SA–414 A K01501 … … 1 1
9 Carbon steel Wld. tube SA–178 A K01200 … … 1 1
10 Carbon steel Wld. tube SA–178 A K01200 … … 1 1
11 Carbon steel Smls. tube SA–179 … K01200 … … 1 1
12 Carbon steel Smls. tube SA–192 … K01201 … … 1 1
13 Carbon steel Wld. tube SA–214 … K01807 … … 1 1
14 Carbon steel Smls. tube SA–556 A2 K01807… … 1 1
15 Carbon steel Wld. tube SA–557 A2 K01807 … … 1 1
16 Carbon steel Wld. pipe SA–53 E/A K02504 … … 1 1
17 Carbon steel Wld. pipe SA–53 E/A K02504 … … 1 1
18 Carbon steel Wld. pipe SA–53 E/A K02504 … … 1 1
19 Carbon steel Wld. pipe SA–53 F/A … … … 1 1
20 Carbon steel Smls. pipe SA–53 S/A K02504 … … 1 1
21 Carbon steel Smls. pipe SA–53 S/A K02504 … … 1 1
22 Carbon steel Smls. pipe SA–106 A K02501 … … 1 1
23 Carbon steel Wld. pipe SA–135 A … … … 1 1
24 Carbon steel Forged pipe SA–369 FPA K02501 … … 1 1
25 Carbon steel Wld. pipe SA–587 … K11500 … … 1 1
26 Carbon steel Wld. pipe SA–587 … K11500 … … 1 1
27 Carbon steel Bar SA–675 50 … … … 1 1
28 Carbon steel Bar SA–675 50 … … … 1 1
29 Carbon steel Wld. pipe SA–134 A283B … … … 1 1
30 Carbon steel Plate SA–283 B … … … 1 1
31 Carbon steel Plate SA–285 B K02200 … … 1 1
32 Carbon steel Plate SA–285 B K02200 … … 1 1
33 Carbon steel Wld. pipe SA–672 A50 K02200 … … 1 1
34 Carbon steel Sheet SA–414 B K02201 … … 1 1
35 Carbon steel Plate SA/EN 10028–3 P275NH … … 150 < t ≤ 250 1 1
36 Carbon steel Plate SA/EN 10028–2 P235GH … … ≤60 1 1
37 Carbon steel Smls. tube SA/EN 10216–2 P235GH … … 40 < t ≤ 60 1 1
38 Carbon steel Plate SA/EN 10028–3 P275NH … … 100 < t ≤ 150 1 1
39 Carbon steel Smls. tube SA/EN 10216–2 P235GH … … 16 < t ≤ 40 1 1
40 Carbon steel Smls. tube SA/EN 10216–2 P235GH … … t ≤ 16 1 1
41 Carbon steel Plate SA/EN 10028–3 P275NH … … 60 < t ≤ 100 1 1
42 Carbon steel Bar SA–675 55 … … … 1 1
43 Carbon steel Bar SA–675 55 … … … 1 1
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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9
ASME BPVC.II.D.M-2019
Table 1A
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 275 140 NP NP 343 NP CS–6 …
2 275 140 NP NP 343 NP CS–6 …
3 310 155 NP 343 (Cl. 3 only) 482 343 CS–6 G10, G22, T10
4 310 165 NP 149 (Cl. 3 only) NP NP CS–1 W12
5 310 165 NP 149 (Cl. 3 only) 343 343 CS–1 …
6 310 165 482 371 482 343 CS–1 G10, T2
7 310 165 NP 371 NP NP CS–1 S6, W10, W12
8 310 170 NP NP 482 343 CS–1 G10, T2
9 325 180 538 NP NP NP CS–1 G4, G10, S1, T2, W13
10 325 180 538 NP 538 343 CS–1 G3, G10, G24, S1, T2, W6
11 325 180 NP NP 482 343 CS–1 G10, T2
12 325 180 538 NP 538 343 CS–1 G10, S1, T2
13 325 180 NP NP 538 343 CS–1 G24, T2, W6
14 325 180 NP NP 538 343 CS–1 G10, T2
15 325 180 NP NP 538 343 CS–1 G24, T2, W6
16 330 205 482 NP NP NP CS–2 G3, G10, S1, T2
17 330 205 482 149 (Cl. 3 only) NP NP CS–2 G10, S1, T2, W12, W13
18 330 205 NP NP 482 343 CS–2 G24, T2, W6
19 330 205 399 NP NP NP CS–2 G2, G10, S10, T2, W15
20 330 205 482 149 (Cl. 3 only) NP NP CS–2 G10, S1, T2
21 330 205 NP 371 (SPT) 482 343 CS–2 G10, T2
22 330 205 538 371 538 343 CS–2 G10, S1, T1
23 330 205 NP NP 482 343 CS–2 G24, T2, W6
24 330 205 538 NP NP NP CS–2 G10, S1, T1
25 330 205 NP 149 (Cl. 3 only) NP NP CS–2 …
26 330 205 NP NP 454 343 CS–2 G24, T2, W6
27 345 170 NP 343 (Cl. 3 only) NP NP CS–1 …
28 345 170 454 371 (SPT) 482 343 CS–1 G10, G15, G22, S1, T2
29 345 185 NP 149 (Cl. 3 only) NP NP CS–1 W12
30 345 185 NP 149 (Cl. 3 only) 343 343 CS–1 …
31 345 185 482 NP NP NP CS–1 G10, S1, T1
32 345 185 NP 371 482 343 CS–1 G10, T1
33 345 185 NP 371 NP NP CS–1 S6, T1, W10, W12
34 345 205 NP NP 482 343 CS–2 G10, T1
35 350 215 NP NP 204 NP CS–2 G10
36 360 215 NP NP 371 NP CS–2 T11
37 360 215 538 NP 538 NP CS–2 G10, S1, T2, W14
38 360 225 NP NP 204 NP CS–2 G10
39 360 225 538 NP 538 NP CS–2 G10, S1, T2, W14
40 360 235 538 NP 538 NP CS–2 G10, S1, T2, W14
41 370 235 NP NP 204 NP CS–2 G10
42 380 190 454 371 (SPT) 482 343 CS–1 G10, G15, G22, S1, T2
43 380 190 NP 343 (Cl. 3 only) NP NP CS–1 …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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10
ASME BPVC.II.D.M-2019
Table 1A
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
40 65 100 125 150 200 250 300 325 350 375 400 425 450 475
1 78.6 78.6 78.6 78.6 78.6 78.6 76.0 71.6 69.6 67.8 … … … … …
2 78.6 78.6 78.6 78.6 78.6 78.6 76.0 71.6 69.6 67.8 … … … … …
3 88.9 88.9 88.9 88.9 88.9 88.4 85.0 80.7 78.4 75.8 73.5 71.5 64.0 56.1 44.5
4 88.9 88.9 88.9 88.9 88.9 … … … … … … … … … …
5 88.9 88.9 88.9 88.9 88.9 88.9 88.9 86.3 83.8 81.4 … … … … …
6 88.9 88.9 88.9 88.9 88.9 88.9 88.9 86.3 83.8 81.4 78.8 73.4 64.0 56.1 44.5
7 88.9 88.9 88.9 88.9 88.9 88.9 88.9 86.3 83.8 81.4 78.8 … … … …
8 88.9 88.9 88.9 88.9 88.9 88.9 88.9 88.5 87.5 84.8 81.2 73.4 64.0 56.1 44.5
9 92.4 92.4 92.4 92.4 92.4 92.4 92.4 91.9 90.7 87.8 84.3 73.3 63.9 56.2 44.5
10 78.6 78.6 78.6 78.6 78.6 78.6 78.6 78.1 77.1 74.7 71.4 62.3 54.2 47.6 37.7
11 92.4 92.4 92.4 92.4 92.4 92.4 92.4 91.9 90.7 87.8 84.3 73.3 63.9 56.2 44.5
12 92.4 92.4 92.4 92.4 92.4 92.4 92.4 91.9 90.7 87.8 84.3 73.3 63.9 56.2 44.5
13 78.6 78.6 78.6 78.6 78.6 78.6 78.6 78.1 77.1 74.7 71.4 62.3 54.2 47.6 37.7
14 92.4 92.4 92.4 92.4 92.4 92.4 92.4 91.9 90.7 87.8 84.3 73.3 63.9 56.2 44.5
15 78.6 78.6 78.6 78.6 78.6 78.6 78.6 78.1 77.1 74.7 71.4 62.3 54.2 47.6 37.7
16 80.7 80.7 80.7 80.7 80.7 80.7 80.7 80.7 80.7 79.8 71.6 62.3 53.7 43.9 32.9
17 94.5 94.5 94.5 94.5 94.5 94.5 94.5 94.5 94.5 93.5 84.5 73.3 62.8 51.2 38.3
18 80.7 80.7 80.7 80.7 80.7 80.7 80.7 80.7 80.7 79.8 71.6 62.4 54.9 47.5 40.1
19 56.5 56.5 56.5 56.5 56.5 56.5 56.5 56.5 56.5 56.0 50.7 43.8 … … …
20 94.5 94.5 94.5 94.5 94.5 94.5 94.5 94.5 94.5 93.5 84.5 73.3 62.8 51.2 38.3
21 94.5 94.5 94.5 94.5 94.5 94.5 94.5 94.5 94.5 93.6 84.4 73.3 64.7 56.0 47.6
22 94.5 94.5 94.5 94.5 94.5 94.5 94.5 94.5 94.5 93.6 84.4 73.3 64.7 56.0 47.6
23 80.7 80.7 80.7 80.7 80.7 80.7 80.7 80.7 80.7 79.8 71.6 62.4 54.9 47.5 40.1
24 94.5 94.5 94.5 94.5 94.5 94.5 94.5 94.5 94.5 93.5 84.5 73.3 62.8 51.2 38.3
25 94.5 94.5 94.5 94.5 94.5 … … … … … … … … … …
26 80.7 80.7 80.7 80.7 80.7 80.7 80.7 80.7 80.7 79.8 71.6 62.4 54.9 47.5 40.1
27 98.6 98.6 98.6 98.6 98.6 98.1 94.7 89.8 87.3 84.9 … … … … …
28 98.6 98.6 98.6 98.6 98.6 98.1 94.7 89.8 87.3 84.9 81.2 73.4 64.7 56.0 47.3
29 98.6 98.6 98.6 98.6 98.6 … … … … … … … … … …
30 98.6 98.6 98.6 98.6 98.6 98.6 98.6 96.6 94.1 90.6 … … … … …
31 98.6 98.6 98.6 98.6 98.6 98.6 98.6 96.6 94.1 90.7 85.0 75.4 65.6 52.8 38.6
32 98.6 98.6 98.6 98.6 98.6 98.6 98.6 96.6 94.1 90.6 85.1 76.8 66.8 57.8 44.9
33 98.6 98.6 98.6 98.6 98.6 98.6 98.6 96.6 94.1 90.6 85.1 … … … …
34 98.6 98.6 98.6 98.6 98.6 98.6 98.6 98.6 98.6 96.9 84.5 76.8 66.8 57.7 44.9
35 100 100 100 100 100 100 … … … … … … … … …
36 103 103 103 103 103 103 103 103 103 96.8 85.0 … … … …
37 103 103 103 103 103 103 103 103 103 103 102 89.1 75.4 62.6 45.5
38 103 103 103 103 103 103 … … … … … … … … …
39 103 103 103 103 103 103 103 103 103 103 102 89.1 75.4 62.6 45.5
40 103 103 103 103 103 103 103 103 103 103 102 89.1 75.4 62.6 45.5
41 105 105 105 105 105 105 … … … … … … … … …
42 108 108 108 108108 108 104 98.8 96.1 92.9 89.9 87.3 75.4 62.5 46.0
43 108 108 108 108 108 108 104 98.8 96.1 92.9 … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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11
ASME BPVC.II.D.M-2019
Table 1A
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
500 525 550 575 600 625 650 675 700 725 750 775 800 825 850 875 900
1 … … … … … … … … … … … … … … … … …
2 … … … … … … … … … … … … … … … … …
3 31.7 … … … … … … … … … … … … … … … …
4 … … … … … … … … … … … … … … … … …
5 … … … … … … … … … … … … … … … … …
6 31.7 … … … … … … … … … … … … … … … …
7 … … … … … … … … … … … … … … … … …
8 31.7 … … … … … … … … … … … … … … … …
9 31.9 21.8 12.7 … … … … … … … … … … … … … …
10 27.1 18.5 10.6 … … … … … … … … … … … … … …
11 31.9 … … … … … … … … … … … … … … … …
12 31.9 21.8 12.7 … … … … … … … … … … … … … …
13 27.1 18.5 10.6 … … … … … … … … … … … … … …
14 31.9 21.8 12.7 … … … … … … … … … … … … … …
15 27.1 18.5 10.6 … … … … … … … … … … … … … …
16 21.7 … … … … … … … … … … … … … … … …
17 25.3 … … … … … … … … … … … … … … … …
18 32.6 … … … … … … … … … … … … … … … …
19 … … … … … … … … … … … … … … … … …
20 25.3 … … … … … … … … … … … … … … … …
21 36.2 … … … … … … … … … … … … … … … …
22 36.2 23.5 11.2 … … … … … … … … … … … … … …
23 32.6 … … … … … … … … … … … … … … … …
24 25.3 14.9 5.88 … … … … … … … … … … … … … …
25 … … … … … … … … … … … … … … … … …
26 … … … … … … … … … … … … … … … … …
27 … … … … … … … … … … … … … … … … …
28 38.6 … … … … … … … … … … … … … … … …
29 … … … … … … … … … … … … … … … … …
30 … … … … … … … … … … … … … … … … …
31 24.3 … … … … … … … … … … … … … … … …
32 30.9 … … … … … … … … … … … … … … … …
33 … … … … … … … … … … … … … … … … …
34 30.9 … … … … … … … … … … … … … … … …
35 … … … … … … … … … … … … … … … … …
36 … … … … … … … … … … … … … … … … …
37 31.6 21.9 12.7 … … … … … … … … … … … … … …
38 … … … … … … … … … … … … … … … … …
39 31.6 21.9 12.7 … … … … … … … … … … … … … …
40 31.6 21.9 12.7 … … … … … … … … … … … … … …
41 … … … … … … … … … … … … … … … … …
42 28.2 … … … … … … … … … … … … … … … …
43 … … … … … … … … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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12
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 Carbon steel Wld. pipe SA–134 A283C K02401 … … 1 1
2 Carbon steel Plate SA–283 C K02401 … … 1 1
3 Carbon steel Plate SA–285 C K02801 … … 1 1
4 Carbon steel Smls. & wld. pipe SA–333 1 K03008 … … 1 1
5 Carbon steel Smls. & wld. tube SA–334 1 K03008 … … 1 1
6 Carbon steel Wld. tube SA–334 1 K03008 … … 1 1
7 Carbon steel Plate SA–516 55 K01800 … … 1 1
8 Carbon steel Smls. pipe SA–524 II K02104 … … 1 1
9 Carbon steel Wld. pipe SA–671 CA55 K02801 … … 1 1
10 Carbon steel Wld. pipe SA–671 CE55 K02202 … … 1 1
11 Carbon steel Wld. pipe SA–672 A55 K02801 … … 1 1
12 Carbon steel Wld. pipe SA–672 B55 K02001 … … 1 1
13 Carbon steel Wld. pipe SA–672 C55 K01800 … … 1 1
14 Carbon steel Wld. pipe SA–672 E55 K02202 … … 1 1
15 Carbon steel Sheet SA–414 C K02503 … … 1 1
16 Carbon steel Plate SA/EN 10028–3 P275NH … … ≤60 1 1
17 Carbon steel Bar SA–36 … K02600 … … 1 1
18 Carbon steel Plate, sheet SA–36 … K02600 … … 1 1
19 Carbon steel Plate, sheet SA–662 A K01701 … … 1 1
20 Carbon steel Plate, bar, shapes SA/IS 2062 E250A … … t > 40 1 1
21 Carbon steel Plate, bar, shapes SA/IS 2062 E250B … … t > 40 1 1
22 Carbon steel Plate, bar, shapes SA/IS 2062 E250C … … t > 40 1 1
23 Carbon steel Plate, bar, shapes SA/IS 2062 E250A … … 20 < t ≤ 40 1 1
24 Carbon steel Plate, bar, shapes SA/IS 2062 E250B … … 20 < t ≤ 40 1 1
25 Carbon steel Plate, bar, shapes SA/IS 2062 E250C … … 20 < t ≤ 40 1 1
26 Carbon steel Plate SA/EN 10028–2 P265GH … … ≤60 1 1
27 Carbon steel Smls. tube SA/EN 10216–2 P265GH … … 40 < t ≤ 60 1 1
28 Carbon steel Plate, bar, shapes SA/IS 2062 E250A … … t ≤ 20 1 1
29 Carbon steel Plate, bar, shapes SA/IS 2062 E250B … … t ≤ 20 1 1
30 Carbon steel Plate, bar, shapes SA/IS 2062 E250C … … t ≤ 20 1 1
31 Carbon steel Smls. tube SA/EN 10216–2 P265GH … … 16 < t ≤ 40 1 1
32 Carbon steel Smls. tube SA/EN 10216–2 P265GH … … t ≤ 16 1 1
33 Carbon steel Forgings SA–181 … K03502 60 … 1 1
34 Carbon steel Castings SA–216 WCA J02502 … … 1 1
35 Carbon steel Forgings SA–266 1 K03506 … … 1 1
36 Carbon steel Forgings SA–350 LF1 K03009 1 … 1 1
37 Carbon steel Castings SA–352 LCA J02504 … … 1 1
38 Carbon steel Cast pipe SA–660 WCA J02504 … … 1 1
39 Carbon steel Bar SA–675 60 … … … 1 1
40 Carbon steel Bar SA–675 60 … … … 1 1
41 Carbon steel Forgings SA–765 I K03046 … … 1 1
42 Carbon steel Plate SA–515 60 K02401 … … 1 1
43 Carbon steel Plate SA–516 60 K02100 … … 1 1
44 Carbon steel Wld. pipe SA–671 CB60 K02401 … … 1 1
45 Carbon steel Wld. pipe SA–671 CC60 K02100 … … 1 1
46 Carbon steel Wld. pipe SA–671 CE60 K02402 … … 1 1
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
13
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 380 205 NP 149 (Cl. 3 only) NP NP CS–2 W12
2 380 205 NP 149 (Cl. 3 only) 343 343 CS–2 …
3 380 205 482 371 482 343 CS–2 G10, S1, T2
4 380 205 NP 371 343 343 CS–2 W12, W14
5 380 205 NP 371 343 343 CS–2 W12, W14
6 380 205 NP NP 343 343 CS–2 G24, W6
7 380 205 454 371 538 343 CS–2 G10, S1, T2
8 380 205 NP NP 538 343 CS–2 G10, T2
9 380 205 NP 371 NP NP CS–2 S6, W10, W12
10 380 205 NP 371 NP NP CS–2 S6, W10, W12
11 380 205 NP 371 NP NP CS–2 S6, W10, W12
12 380 205 NP 371 NP NP CS–2 S6, W10, W12
13 380 205 NP 371 NP NP CS–2 S6, W10, W12
14 380 205 NP 371 NP NP CS–2 S6, W10, W12
15 380 230 NP 371 482 343 CS–2 G10, T1
16 390 … NP NP 204 204 CS–2 G10, G18
17 400 250 343 343 (SPT) 482 343 CS–2 G10, G15, T1
18 400 250 NP 371 343 343 CS–2 G9, G10, T1
19 400 275 NP NP 371 343 CS–2 T1
20 410 230 NP NP 343 343 CS–2 …
21 410 230 NP NP 343 343 CS–2 …
22 410 230 NP NP 343 NP CS–2 …
23 410 240 NP NP 343 343 CS–2 …
24 410 240 NP NP 343 343 CS–2 …
25 410 240 NP NP 343 343 CS–2 …
26 410 245 NP NP 371 NP CS–2 T1
27 410 245 538 NP 538 NP CS–2 G10, S1, T1
28 410 250 NP NP 343 343 CS–2 …
29 410 250 NP NP 343 343 CS–2 …
30 410 250NP NP 343 343 CS–2 …
31 410 255 538 NP 538 NP CS–2 G10, S1, T1
32 410 265 538 NP 538 NP CS–2 G10, S1, T1
33 415 205 538 371 538 343 CS–2 G10, S1, T2
34 415 205 538 371 538 343 CS–2 G1, G10, G17, S1, T2
35 415 205 538 371 538 343 CS–2 G10, S1, T2
36 415 205 NP 371 538 343 CS–2 G10, T2
37 415 205 NP 371 NP NP CS–2 G17
38 415 205 538 371 NP NP CS–2 G1, G10, G17, S1, T2
39 415 205 454 371 (SPT) NP NP CS–2 G10, G15, S1, T2
40 415 205 NP 343 (Cl. 3 only) 482 343 CS–2 G10, G22, T2
41 415 205 NP NP 538 343 CS–2 G10, T2
42 415 220 538 371 538 343 CS–2 G10, S1, T2
43 415 220 454 371 538 343 CS–2 G10, S1, T2
44 415 220 NP 371 NP NP CS–2 S6, W10, W12
45 415 220 NP 371 NP NP CS–2 S6, W10, W12
46 415 220 NP 371 NP NP CS–2 S6, W10, W12
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
14
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
40 65 100 125 150 200 250 300 325 350 375 400 425 450 475
1 108 108 108 108 108 … … … … … … … … … …
2 108 108 108 108 108 108 108 107 104 101 … … … … …
3 108 108 108 108 108 108 108 107 104 101 97.8 89.1 75.4 62.6 45.5
4 108 108 108 108 108 108 108 107 104 101 97.8 … … … …
5 108 108 108 108 108 108 108 107 104 101 97.8 … … … …
6 92.4 92.4 92.4 92.4 92.4 92.4 92.4 90.8 88.7 86.2 … … … … …
7 108 108 108 108 108 108 108 107 104 101 97.8 89.1 75.4 62.6 45.5
8 108 108 108 108 108 108 108 107 104 101 97.8 89.1 75.4 62.6 45.5
9 108 108 108 108 108 108 108 107 104 101 97.8 … … … …
10 108 108 108 108 108 108 108 107 104 101 97.8 … … … …
11 108 108 108 108 108 108 108 107 104 101 97.8 … … … …
12 108 108 108 108 108 108 108 107 104 101 97.8 … … … …
13 108 108 108 108 108 108 108 107 104 101 97.8 … … … …
14 108 108 108 108 108 108 108 107 104 101 97.8 … … … …
15 108 108 108 108 108 108 108 108 108 108 106 88.8 75.2 62.6 45.9
16 111 111 111 111 111 111 … … … … … … … … …
17 114 114 114 114 114 114 114 114 114 114 105 88.9 75.3 62.6 45.9
18 114 114 114 114 114 114 114 114 114 114 105 … … … …
19 114 114 114 114 114 114 114 114 114 114 105 … … … …
20 117 117 117 117 117 117 117 117 116 113 … … … … …
21 117 117 117 117 117 117 117 117 116 113 … … … … …
22 117 117 117 117 117 117 117 117 116 113 … … … … …
23 117 117 117 117 117 117 117 117 117 117 … … … … …
24 117 117 117 117 117 117 117 117 117 117 … … … … …
25 117 117 117 117 117 117 117 117 117 117 … … … … …
26 117 117 117 117 117 117 117 117 117 117 106 … … … …
27 117 117 117 117 117 117 117 117 117 117 105 88.9 75.3 62.7 45.5
28 117 117 117 117 117 117 117 117 117 117 … … … … …
29 117 117 117 117 117 117 117 117 117 117 … … … … …
30 117 117 117 117 117 117 117 117 117 117 … … … … …
31 117 117 117 117 117 117 117 117 117 117 105 88.9 75.3 62.7 45.5
32 117 117 117 117 117 117 117 117 117 117 105 88.9 75.3 62.7 45.5
33 118 118 118 118 118 118 114 107 104 101 97.8 89.1 75.4 62.6 45.5
34 118 118 118 118 118 118 114 107 104 101 97.8 89.1 75.4 62.6 45.5
35 118 118 118 118 118 118 114 107 104 101 97.8 89.1 75.4 62.6 45.5
36 118 118 118 118 118 118 114 107 104 101 97.8 89.1 75.4 62.6 45.5
37 118 118 118 118 118 118 114 107 104 101 97.8 … … … …
38 118 118 118 118 118 118 114 107 104 101 97.8 89.1 75.4 62.6 45.5
39 118 118 118 118 118 118 114 107 104 101 97.8 89.1 75.4 62.6 45.5
40 118 118 118 118 118 118 114 107 104 101 97.8 89.1 75.4 62.6 45.5
41 118 118 118 118 118 118 114 107 104 101 97.8 89.1 75.4 62.6 45.5
42 118 118 118 118 118 118 118 115 112 108 104 88.9 75.3 62.7 45.5
43 118 118 118 118 118 118 118 115 112 108 104 88.9 75.3 62.7 45.5
44 118 118 118 118 118 118 118 115 112 108 104 … … … …
45 118 118 118 118 118 118 118 115 112 108 104 … … … …
46 118 118 118 118 118 118 118 115 112 108 104 … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
15
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
500 525 550 575 600 625 650 675 700 725 750 775 800 825 850 875 900
1 … … … … … … … … … … … … … … … … …
2 … … … … … … … … … … … … … … … … …
3 31.6 … … … … … … … … … … … … … … … …
4 … … … … … … … … … … … … … … … … …
5 … … … … … … … … … … … … … … … … …
6 … … … … … … … … … … … … … … … … …
7 31.6 21.9 12.7 … … … … … … … … … … … … … …
8 31.6 21.9 12.7 … … … … … … … … … … … … … …
9 … … … … … … … … … … … … … … … … …
10 … … … … … … … … … … … … … … … … …
11 … … … … … … … … … … … … … … … … …
12 … … … … … … … … … … … … … … … … …
13 … … … … … … … … … … … … … … … … …
14 … … … … … … … … … … … … … … … … …
15 28.2 … … … … … … … … … … … … … … … …
16 … … … … … … … … … … … … … … … … …
17 28.2 … … … … … … … … … … … … … … … …
18 … … … … … … … … … … … … … … … … …
19 … … … … … … … … … … … … … … … … …
20 … … … … … … … … … … … … … … … … …
21 … … … … … … … … … … … … … … … … …
22 … … … … … … … … … … … … … … … … …
23 … … … … … … … … … … … … … … … … …
24 … … … … … … … … … … … … … … … … …
25 … … … … … … … … … … … … … … … … …
26 … … … … … … … … … … … … … … … … …
27 31.6 21.9 12.7 … … … … … … … … … … … … … …
28 … … … … … … … … … … … … … … … … …
29 … … … … … … … … … … … … … … … … …
30 … … … … … … … … … … … … … … … … …
31 31.6 21.9 12.7 … … … … … … … … … … … … … …
32 31.6 21.9 12.7 … … … … … … … … … … … … … …
33 31.6 21.9 12.7 … … … … … … … … … … … … … …
34 31.6 21.9 12.7 … … … … … … … … … … … … … …
35 31.6 21.9 12.7 … … … … … … … … … … … … … …
36 31.6 21.9 12.7 … … … … … … … … … … … … … …
37 … … … … … … … … … … … … … … … … …
38 31.6 21.9 12.7 … … … … … … … … … … … … … …
39 … … … … … … … … … … … … … … … … …
40 31.6 … … … … … … … … … … … … … … … …
41 31.6 21.9 12.7 … … … … … … … … … … … … … …
42 31.6 21.9 12.7 … … … … … … … … … … … … … …
43 31.6 21.9 12.7 … … … … … … … … … … … … … …
44 … … … … … … … … … … … … … … … … …
45 … … … … … … … … … … … … … … … … …
46 … … … … … … … … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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16
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 Carbon steel Wld. pipe SA–672 B60 K02401 … … 1 1
2 Carbon steel Wld. pipe SA–672 C60 K02100 … … 1 1
3 Carbon steel Wld. pipe SA–672 E60 K02402 … … 1 1
4 Carbon steel Wld. pipe SA–134 A283D K02702 … … 1 1
5 Carbon steel Plate SA–283 D K02702 … …1 1
6 Carbon steel Wld. pipe SA–53 E/B K03005 … … 1 1
7 Carbon steel Wld. pipe SA–53 E/B K03005 … … 1 1
8 Carbon steel Smls. pipe SA–53 S/B K03005 … … 1 1
9 Carbon steel Smls. pipe SA–53 S/B K03005 … … 1 1
10 Carbon steel Smls. pipe SA–106 B K03006 … … 1 1
11 Carbon steel Wld. pipe SA–135 B … … … 1 1
12 Carbon steel Smls. & wld. fittings SA–234 WPB K03006 … … 1 1
13 Carbon steel Smls. & wld. pipe SA–333 6 K03006 … … 1 1
14 Carbon steel Wld. pipe SA–333 6 K03006 … … 1 1
15 Carbon steel Smls. & wld. tube SA–334 6 K03006 … … 1 1
16 Carbon steel Wld. tube SA–334 6 K03006 … … 1 1
17 Carbon steel Forged pipe SA–369 FPB K03006 … … 1 1
18 Carbon steel Forgings SA–372 A K03002 … … 1 1
19 Carbon steel Sheet SA–414 D K02505 … … 1 1
20 Carbon steel Smls. & wld. fittings SA–420 WPL6 … … … 1 1
21 Carbon steel Smls. pipe SA–524 I K02104 … … 1 1
22 Carbon steel Bar SA–696 B K03200 … … 1 1
23 Carbon steel Forgings SA–727 … K02506 … … 1 1
24 Carbon steel Wld. tube SA–178 C K03503 … … 1 1
25 Carbon steel Wld. tube SA–178 C K03503 … … 1 1
26 Carbon steel Wld. tube SA–178 C K03503 … … 1 1
27 Carbon steel Smls. tube SA–210 A–1 K02707 … … 1 1
28 Carbon steel Smls. tube SA–556 B2 K02707 … … 1 1
29 Carbon steel Wld. tube SA–557 B2 K03007 … … 1 1
30 Carbon steel Plate, bar SA/CSA–G40.21 38W … … … 1 1
31 Carbon steel Plate SA/AS 1548 PT430N … Normalized ≤150 1 1
32 Carbon steel Plate SA/AS 1548 PT430NR … Norm. rld. ≤150 1 1
33 Carbon steel Plate SA/EN 10028–2 P295GH … … 150 < t ≤ 250 1 1
34 Carbon steel Plate SA/EN 10028–2 P295GH … … 100 < t ≤ 150 1 1
35 Carbon steel Bar SA–675 65 … … … 1 1
36 Carbon steel Castings SA–352 LCB J03003 … … 1 1
37 Carbon steel Plate SA–515 65 K02800 … … 1 1
38 Carbon steel Plate SA–516 65 K02403 … … 1 1
39 Carbon steel Wld. pipe SA–671 CB65 K02800 … … 1 1
40 Carbon steel Wld. pipe SA–671 CC65 K02403 … … 1 1
41 Carbon steel Wld. pipe SA–672 B65 K02800 … … 1 1
42 Carbon steel Wld. pipe SA–672 C65 K02403 … … 1 1
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
17
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 415 220 NP 371 NP NP CS–2 S6, W10, W12
2 415 220 NP 371 NP NP CS–2 S6, W10, W12
3 415 220 NP 371 NP NP CS–2 S6, W10, W12
4 415 230 NP 149 (Cl. 3 only) NP NP CS–2 W12
5 415 230 NP 149 (Cl. 3 only) 343 343 CS–2 …
6 415 240 482 149 (Cl. 3 only) NP NP CS–2 G10, S1, T1, W12, W13
7 415 240 482 NP 482 343 CS–2 G3, G10, G24, S1, T1, W6
8 415 240 482 149 (Cl. 3 only) NP NP CS–2 G10, S1, T1
9 415 240 NP 371 (SPT) 482 343 CS–2 G10, T1
10 415 240 538 371 538 343 CS–2 G10, S1, T1
11 415 240 NP NP 482 343 CS–2 G24, T1, W6
12 415 240 538 371 538 343 CS–2 G10, S1, T1
13 415 240 371 371 538 343 CS–2 G10, T1, W12, W13, W14
14 415 240 371 NP NP NP CS–2 T1
15 415 240 NP 371 343 343 CS–2 T1, W12, W14
16 415 240 NP NP 343 343 CS–2 G24, W6
17 415 240 538 NP NP NP CS–2 G10, S1, T1
18 415 240 NP NP 343 343 CS–2 …
19 415 240 NP NP 482 343 CS–2 G10, T1
20 415 240 NP 371 454 343 CS–2 G10, T1, W14
21 415 240 NP NP 538 343 CS–2 G10, T1
22 415 240 NP 371 NP NP CS–2 T1
23 415 250 NP 371 538 343 CS–2 G10, G22, T1
24 415 255 538 NP NP NP CS–2 G4, G10, S1, T2
25 415 255 538 371 NP NP CS–2 G10, S1, T1, W13
26 415 255 538 NP 538 343 CS–2 G3, G10, G24, S1, T2, W6
27 415 255 538 371 538 343 CS–2 G10, S1, T1
28 415 255 NP NP 538 343 CS–2 G10, T1
29 415 255 NP NP 538 343 CS–2 G24, T1, W6
30 415 260 NP NP 343 343 CS–2 …
31 430 … 538 NP 538 NP CS–2 G10, G18, S1, T1
32 430 … 538 NP 538 NP CS–2 G10, G18, S1, T1
33 430 220 454 NP 538 NP CS–2 G10, S1, T2
34 440 235 454 NP 538 NP CS–2 G10, S1, T2
35 450 225 454 343 (Cl. 3 only) 538 343 CS–2 G10, G15, G22, S1, T2
36 450 240 NP 371 343 343 CS–2 G1, G17
37 450 240 538 371 538 343 CS–2 G10, S1, T2
38 450 240 454 371 538 343 CS–2 G10, S1, T2
39 450 240 NP 371 NP NP CS–2 S6, W10, W12
40 450 240 NP 371 NP NP CS–2 S6, W10, W12
41 450 240 NP 371 NP NP CS–2 S6, W10, W12
42 450 240 NP 371 NP NP CS–2 S6, W10, W12
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
18
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
40 65 100 125 150 200 250 300 325 350 375 400 425 450 475
1 118 118 118 118 118 118 118 115 112 108 104 … … … …
2 118 118 118 118 118 118 118 115 112 108 104 … … … …
3 118 118 118 118 118 118 118 115 112 108 104 … … … …
4 118 118 118 118 118 … … … … … … … … … …
5 118 118 118 118 118 118 118 118 115 111 … … … … …
6 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
7 101 101 101 101 101 101 101 101 101 99.7 89.7 75.9 64.1 53.3 38.6
8 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
9 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
10 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
11 101 101 101 101 101 101 101 101 101 99.7 89.7 75.9 64.1 53.3 38.6
12 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
13 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
14 101 101 101 101 101 101 101 101 101 99.7 89.7 … … … …
15 118 118 118 118 118 118 118 118 118 117 105 … … … …
16 101 101 101 101 101 101 101 101 101 101 … … … … …
17 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
18 118 118 118 118 118 118 118 118 118 118 … … … … …
19 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
20 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
21 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
22 118 118 118 118 118 118 118 118 118 117 105 … … … …
23 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
24 118 118 118 118 118 118 118 118 118 117 105 88.9 75.2 63.2 40.5
25 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
26 101 101 101 101 101 101 101 101 101 99.7 89.7 75.9 64.1 53.3 38.6
27 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
28 118 118 118 118 118 118 118 118 118 117 105 88.9 75.3 62.7 45.5
29 101 101 101 101 101 101 101 101 101 99.7 89.7 75.9 64.1 53.3 38.6
30 118 118 118 118 118 118 118 118 118 118 … … … … …
31 123 123 123 123 123 123 123 123 123 123 114 95.0 79.6 63.2 45.3
32 123 123 123 123 123 123 123 123 123 123 114 95.0 79.6 63.2 45.3
33 123 123 123 123 123 123 121 114 111 108 105 96.2 79.1 62.1 46.0
34 126 126 126 126 126 126 126 122 119 115 112 96.2 79.1 62.1 46.0
35 128 128 128 128 128 128 123 117 113 110 106 95.2 79.6 63.8 39.2
36 128 128 128 128 128 128 128 125 122 118 114 … … … …
37 128 128 128 128 128 128 128 125 122 118 114 95.0 79.6 63.2 45.3
38 128 128 128 128 128 128 128 125 122 118 114 95.0 79.6 63.2 45.3
39 128 128 128 128 128 128 128 125 122 118 114 … … … …
40 128 128 128 128 128 128 128 125 122 118 114 … … … …
41 128 128 128 128 128 128 128 125 122 118 114 … … … …
42 128128 128 128 128 128 128 125 122 118 114 … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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19
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
500 525 550 575 600 625 650 675 700 725 750 775 800 825 850 875 900
1 … … … … … … … … … … … … … … … … …
2 … … … … … … … … … … … … … … … … …
3 … … … … … … … … … … … … … … … … …
4 … … … … … … … … … … … … … … … … …
5 … … … … … … … … … … … … … … … … …
6 31.6 … … … … … … … … … … … … … … … …
7 26.8 … … … … … … … … … … … … … … … …
8 31.6 … … … … … … … … … … … … … … … …
9 31.6 … … … … … … … … … … … … … … … …
10 31.6 21.9 12.7 … … … … … … … … … … … … … …
11 26.8 … … … … … … … … … … … … … … … …
12 31.6 21.9 12.7 … … … … … … … … … … … … … …
13 31.6 21.9 12.7 … … … … … … … … … … … … … …
14 … … … … … … … … … … … … … … … … …
15 … … … … … … … … … … … … … … … … …
16 … … … … … … … … … … … … … … … … …
17 31.6 21.9 12.7 … … … … … … … … … … … … … …
18 … … … … … … … … … … … … … … … … …
19 31.6 … … … … … … … … … … … … … … … …
20 … … … … … … … … … … … … … … … … …
21 31.6 21.9 12.7 … … … … … … … … … … … … … …
22 … … … … … … … … … … … … … … … … …
23 31.6 21.9 12.7 … … … … … … … … … … … … … …
24 26.2 18.8 10.5 … … … … … … … … … … … … … …
25 31.6 21.9 12.7 … … … … … … … … … … … … … …
26 26.8 18.6 10.5 … … … … … … … … … … … … … …
27 31.6 21.9 12.7 … … … … … … … … … … … … … …
28 31.6 21.9 12.7 … … … … … … … … … … … … … …
29 26.8 18.6 10.5 … … … … … … … … … … … … … …
30 … … … … … … … … … … … … … … … … …
31 31.7 21.9 12.7 … … … … … … … … … … … … … …
32 31.7 21.9 12.7 … … … … … … … … … … … … … …
33 32.1 21.2 14.4 … … … … … … … … … … … … … …
34 32.1 21.2 14.4 … … … … … … … … … … … … … …
35 30.1 22.4 12.5 … … … … … … … … … … … … … …
36 … … … … … … … … … … … … … … … … …
37 31.7 21.9 12.7 … … … … … … … … … … … … … …
38 31.7 21.9 12.7 … … … … … … … … … … … … … …
39 … … … … … … … … … … … … … … … … …
40 … … … … … … … … … … … … … … … … …
41 … … … … … … … … … … … … … … … … …
42 … … … … … … … … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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20
ASME BPVC.II.D.M-2019
#
#
#
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 Carbon steel Sheet SA–414 E K02704 … … 1 1
2 Carbon steel Plate SA–662 B K02203 … … 1 1
3 Carbon steel Plate SA–537 … K12437 1 65 < t ≤ 100 1 2
4 Carbon steel Wld. pipe SA–691 CMSH–70 K12437 … 65 < t ≤ 100 1 2
5 Carbon steel Plate, bar SA/CSA–G40.21 44W … … t ≤ 200 1 1
6 Carbon steel Plate, bar SA/CSA–G40.21 50W … … t ≤ 150 1 1
7 Carbon steel Plate SA/AS 1548 PT460N … Normalized ≤150 1 1
8 Carbon steel Plate SA/AS 1548 PT460NR … Norm. rld. ≤150 1 1
9 Carbon steel Forgings SA/EN 10222–2 P280GH … NT or QT 35 < t ≤ 160 1 1
10 Carbon steel Plate SA/EN 10028–2 P295GH … … 60 < t ≤ 100 1 1
11 Carbon steel Plate SA/EN 10028–2 P295GH … … ≤60 1 1
12 Carbon steel Forgings SA/EN 10222–2 P280GH … Normalized t ≤ 35 1 1
13 Carbon steel Plate SA/GB 713 Q345R … … 150 < t ≤ 200 1 2
14 Carbon steel Plate SA/EN 10028–2 P355GH … … 150 < t ≤ 250 1 2
15 Carbon steel Plate SA/GB 713 Q345R … … 100 < t ≤ 150 1 2
16 Carbon steel Plate SA/EN 10028–2 P355GH … … 100 < t ≤ 150 1 2
17 Carbon steel Plate SA–455 … K03300 … 15 < t ≤ 20 1 2
18 Carbon steel Bar SA–675 70 … … … 1 2
19 Carbon steel Forgings SA–105 … K03504 … … 1 2
20 Carbon steel Forgings SA–181 … K03502 70 … 1 2
21 Carbon steel Castings SA–216 WCB J03002 … … 1 2
22 Carbon steel Forgings SA–266 2 K03506 … … 1 2
23 Carbon steel Forgings SA–266 4 K03017 … … 1 2
24 Carbon steel Forgings SA–350 LF2 K03011 1 … 1 2
25 Carbon steel Forgings SA–350 LF2 K03011 2 … 1 2
26 Carbon steel Forgings SA–508 1 K13502 … … 1 2
27 Carbon steel Forgings SA–508 1A K13502 … … 1 2
28 Carbon steel Forgings SA–541 1 K03506 … … 1 2
29 Carbon steel Forgings SA–541 1A K03020 … … 1 2
30 Carbon steel Cast pipe SA–660 WCB J03003 … … 1 2
31 Carbon steel Forgings SA–765 II K03047 … … 1 2
32 Carbon steel Plate SA–515 70 K03101 … … 1 2
33 Carbon steel Plate SA–516 70 K02700 … … 1 2
34 Carbon steel Wld. pipe SA–671 CB70 K03101 … … 1 2
35 Carbon steel Wld. pipe SA–671 CC70 K02700 … … 1 2
36 Carbon steel Wld. pipe SA–672 B70 K03101 … … 1 2
37 Carbon steel Wld. pipe SA–672 C70 K02700 … … 1 2
38 Carbon steel Plate SA/JIS G3118 SGV480 … … … 1 2
39 Carbon steel Smls. pipe SA–106 C K03501 … … 1 2
40 Carbon steel Wld. tube SA–178 D … … … 1 2
41 Carbon steel Wld. tube SA–178 D … … … 1 2
42 Carbon steel Wld. tube SA–178 D … … … 1 2
43 Carbon steel Smls. tube SA–210 C K03501 … … 1 2
44 Carbon steel Castings SA–216 WCC J02503 … … 1 2
45 Carbon steel Smls. & wld. fittings SA–234 WPC K03501 … … 1 2
46 Carbon steel Castings SA–352 LCC J02505 … … 1 2
47 Carbon steel Castings SA–487 16 … A … 1 2
48 Carbon steel Plate SA–537 … K12437 3 100 < t ≤ 150 1 3
Copyright ASME International (BPVC) 
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21
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 450 260 NP NP 482 343 CS–2 G10, T1
2 450 275 NP NP 371 343 CS–2 T1
3 450 310 NP 371 343 343 CS–2 T1
4 450 310 NP 371 NP NP CS–2 G26, T1, W10, W12
5 450 … 343 NP 343 343 CS–2 G18
6 450 … 343 NP 343 343 CS–2 G18
7 460 … 538 NP 538 NP CS–2 G10, G18, S1, T1
8 460 … 538 NP 538 NP CS–2 G10, G18, S1, T1
9 460 255 538 NP 538 NP CS–2 G10, S1, T2
10 460 260 454 NP 538 NP CS–2 G10, S1, T1
11 460 … 454 NP 538 343 CS–2 G10, G18, S1, T1
12 460 280 538 NP 538 NP CS–2 G10, S1, T2
13 470 265 427 NP 427 NP CS–2 T1
14 470 280 454 NP 538 NP CS–2 G10, S1, T1
15 480 285 427 NP 427 NP CS–2 T1
16 480 295 454 NP 538 NP CS–2 G10, S1, T1
17 485 240 NP 204 (Cl. 3 only) 343 343 CS–2 …
18 485 240 454 343 (Cl. 3 only) 538 343 CS–2 G10, G15, G22, S1, T2
19 485 250 538 371 538 343 CS–2 G10, S1, T2
20 485 250 538 371 538 343 CS–2 G10, S1, T2
21 485 250 538 371 538 343 CS–2 G1, G10, G17, S1, T2
22 485 250 538 371 538 343 CS–2 G10, S1, T2
23 485 250 NP NP 538 343 CS–2 G10, T2
24 485 250 454371 538 343 CS–2 G10, T2
25 485 250 454 371 538 343 CS–2 G10, T2
26 485 250 NP 371 538 343 CS–2 G10, T2
27 485 250 NP 371 538 343 CS–2 G10, T2
28 485 250 NP 371 538 343 CS–2 G10, T2
29 485 250 NP 371 538 343 CS–2 G10, T2
30 485 250 538 371 NP NP CS–2 G1, G10, G17, S1, T2
31 485 250 NP NP 538 343 CS–2 G10, T2
32 485 260 538 371 538 343 CS–2 G10, S1, T2
33 485 260 454 371 538 343 CS–2 G10, S1, T2
34 485 260 NP 371 NP NP CS–2 S5, W10, W12
35 485 260 NP 371 NP NP CS–2 S6, W10, W12
36 485 260 NP 371 NP NP CS–2 S5, W10, W12
37 485 260 NP 371 NP NP CS–2 S6, W10, W12
38 485 260 454 NP NP NP CS–2 G10, S1, T2
39 485 275 538 371 538 343 CS–2 G10, S1, T1
40 485 275 538 NP NP NP CS–2 G10, S1, T1, W13
41 485 275 538 NP NP NP CS–2 G4, G10, S1, T4
42 485 275 538 NP NP NP CS–2 G3, G10, S1, T2
43 485 275 538 NP 538 343 CS–2 G10, S1, T1
44 485 275 538 371 538 343 CS–2 G1, G10, G17, S1, T1
45 485 275 427 371 427 343 CS–2 G10, T1, W14
46 485 275 NP 371 NP NP CS–2 G17, T1
47 485 275 NP 371 NP NP CS–2 …
48 485 275 NP NP 371 343 CS–2 G23, W11
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22
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
40 65 100 125 150 200 250 300 325 350 375 400 425 450 475
1 128 128 128 128 128 128 128 128 128 127 114 95.1 79.6 63.1 45.7
2 128 128 128 128 128 128 128 128 128 127 114 … … … …
3 128 128 128 128 128 128 128 128 128 127 114 … … … …
4 128 128 128 128 128 128 128 128 128 127 114 … … … …
5 128 128 128 128 128 128 128 128 128 128 … … … … …
6 128 128 128 128 128 128 128 128 128 128 … … … … …
7 131 131 131 131 131 131 131 131 131 129 114 95.1 79.6 63.2 45.3
8 131 131 131 131 131 131 131 131 131 129 114 95.1 79.6 63.2 45.3
9 131 131 131 131 131 131 131 131 128 124 120 101 83.9 67.0 51.1
10 131 131 131 131 131 131 131 131 131 127 112 96.2 79.1 62.1 46.0
11 131 131 131 131 131 131 131 131 131 127 112 96.2 79.1 62.1 46.0
12 131 131 131 131 131 131 131 131 131 131 131 101 83.9 67.0 51.1
13 134 134 134 134 134 134 134 134 134 130 123 101 83.8 67.1 …
14 134 134 134 134 134 134 134 134 134 134 123 101 83.8 67.1 51.0
15 137 137 137 137 137 137 137 137 137 137 123 101 83.8 67.1 …
16 137 137 137 137 137 137 137 137 137 137 123 101 83.8 67.1 51.0
17 138 138 138 138 138 137 132 126 122 119 … … … … …
18 138 138 138 138 138 137 132 126 122 119 114 101 83.9 67.0 51.1
19 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
20 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
21 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
22 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
23 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
24 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
25 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
26 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
27 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
28 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
29 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
30 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
31 138 138 138 138 138 138 136 129 125 122 117 101 83.9 67.0 51.1
32 138 138 138 138 138 138 138 136 132 128 123 101 83.8 67.1 51.0
33 138 138 138 138 138 138 138 136 132 128 123 101 83.8 67.1 51.0
34 138 138 138 138 138 138 138 136 132 128 123 … … … …
35 138 138 138 138 138 138 138 136 132 128 123 … … … …
36 138 138 138 138 138 138 138 136 132 128 123 … … … …
37 138 138 138 138 138 138 138 136 132 128 123 … … … …
38 138 138 138 138 138 138 138 136 132 128 123 101 83.8 67.1 51.0
39 138 138 138 138 138 138 138 138 138 135 123 101 83.8 67.0 51.0
40 138 138 138 138 138 138 138 138 138 135 123 101 83.8 67.0 51.0
41 138 138 138 138 138 138 138 138 138 135 123 101 83.7 67.6 45.5
42 117 117 117 117 117 117 117 117 117 115 104 86.1 71.3 56.9 43.4
43 138 138 138 138 138 138 138 138 138 135 123 101 83.8 67.0 51.0
44 138 138 138 138 138 138 138 138 138 135 123 101 83.8 67.0 51.0
45 138 138 138 138 138 138 138 138 138 135 123 101 83.8 67.0 …
46 138 138 138 138 138 138 138 138 138 135 123 … … … …
47 138 138 137 133 129 125 123 123 123 123 123 … … … …
48 138 138 138 137 136 135 131 126 123 121 118 … … … …
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Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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23
ASME BPVC.II.D.M-2019
#
#
#
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
500 525 550 575 600 625 650 675 700 725 750 775 800 825 850 875 900
1 28.3 … … … … … … … … … … … … … … … …
2 … … … … … … … … … … … … … … … … …
3 … … … … … … … … … … … … … … … … …
4 … … … … … … … … … … … … … … … … …
5 … … … … … … … … … … … … … … … … …
6 … … … … … … … … … … … … … … … … …
7 31.7 21.9 12.7 … … … … … … … … … … … … … …
8 31.7 21.9 12.7 … … … … … … … … … … … … … …
9 33.6 21.3 12.9 … … … … … … … … … … … … … …
10 32.1 21.2 14.4 … … … … … … … … … … … … … …
11 32.1 21.2 14.4 … … … … … … … … … … … … … …
12 33.6 21.3 12.9 … … … … … … … … … … … … … …
13 … … … … … … … … … … … … … … … … …
14 33.6 21.3 12.9 … … … … … … … … … … … … … …
15 … … … … … … … … … … … … … … … … …
16 33.6 21.3 12.9 … … … … … … … … … … … … … …
17 … … … … … … … … … … … … … … … … …
18 33.6 21.3 12.9 … … … … … … … … … … … … … …
19 33.6 21.3 12.9 … … … … … … … … … … … … … …
20 33.6 21.3 12.9 … … … … … … … … … … … … … …
21 33.6 21.3 12.9 … … … … … … … … … … … … … …
22 33.6 21.3 12.9 … … … … … … … … … … … … … …
23 33.6 21.3 12.9 … … … … … … … … … … … … … …
24 33.6 21.3 12.9 … … … … … … … … … … … … … …
25 33.6 21.3 12.9 … … … … … … … … … … … … … …
26 33.6 21.3 12.9 … … … … … … … … … … … … … …
27 33.6 21.3 12.9 … … … … … … … … … … … … … …
28 33.6 21.3 12.9 … … … … … … … … … … … … … …
29 33.6 21.3 12.9 … … … … … … … … … … … … … …
30 33.6 21.3 12.9 … … … … … … … … … … … … … …
31 33.6 21.3 12.9 … … … … … … … … … … … … … …
32 33.6 21.3 12.9 … … … … … … … … … … … … … …
33 33.6 21.3 12.9 … … … … … … … … … … … … … …
34 … … … … … … … … … … … … … … … … …
35 … … … … … … … … … … … … … … … … …
36 … … … … … … … … … … … … … … … … …
37 … … … … … … … … … … … … … … … … …
38 … … … … … … … … … … … … … … … … …
39 33.6 21.3 12.9 … … … … … … … … … … … … … …
40 33.6 21.3 12.9 … … … … … … … … … … … … … …
41 27.9 18.3 10.6 … … … … … … … … … … … … … …
42 28.6 18.1 10.7 … … … … … … … … … … … … … …
43 33.6 21.3 12.9 … … … … … … … … … … … … … …
44 33.6 21.3 12.9 … … … … … … … … … … … … … …
45 … … … … … … … … … … … … … … … … …
46 … … … … … … … … … … … … … … … … …
47 … … … … … … … … … … … … … … … … …
48 … … … … … … … … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale,07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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24
ASME BPVC.II.D.M-2019
#
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Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 Carbon steel Smls. tube SA–556 C2 K03006 … … 1 2
2 Carbon steel Wld. tube SA–557 C2 K03505 … … 1 2
3 Carbon steel Cast pipe SA–660 WCC J02505 … … 1 2
4 Carbon steel Bar SA–696 C K03200 … … 1 2
5 Carbon steel Sheet SA–414 F K03102 … … 1 2
6 Carbon steel Plate SA–662 C K02007 … … 1 2
7 Carbon steel Plate SA–537 … K12437 2 100 < t ≤ 150 1 3
8 Carbon steel Plate SA–738 C K02008 … 100 < t ≤ 150 1 3
9 Carbon steel Plate SA–537 … K12437 1 ≤65 1 2
10 Carbon steel Wld. pipe SA–671 CD70 K12437 … ≤65 1 2
11 Carbon steel Wld. pipe SA–672 D70 K12437 … ≤65 1 2
12 Carbon steel Wld. pipe SA–691 CMSH–70 K12437 … ≤65 1 2
13 Carbon steel Plate SA–841 A … 1 ≤100 1 2
14 Carbon steel Forgings SA/EN 10222–2 P305GH … NT 35 < t ≤ 160 1 2
15 Carbon steel Forgings SA/EN 10222–2 P305GH … Normalized t ≤ 35 1 2
16 Carbon steel Plate SA/GB 713 Q345R … … 60 < t ≤ 100 1 2
17 Carbon steel Plate SA/EN 10028–2 P355GH … … 60 < t ≤ 100 1 2
18 Carbon steel Plate SA/GB 713 Q345R … … 36 < t ≤ 60 1 2
19 Carbon steel Plate SA/GB 713 Q345R … … 16 < t ≤ 36 1 2
20 Carbon steel Plate SA–455 … K03300 … 9.5 < t ≤ 15 1 2
21 Carbon steel Forgings SA/EN 10222–2 P305GH … QT t ≤ 70 1 2
22 Carbon steel Plate SA/GB 713 Q345R … … 3 ≤ t ≤ 16 1 2
23 Carbon steel Plate SA/EN 10028–2 P355GH … … ≤60 1 2
24 Carbon steel Forgings SA–266 3 K05001 … … 1 2
25 Carbon steel Plate SA–455 … K03300 … ≤9.5 1 2
26 Carbon steel Plate SA–299 A K02803 … >25 1 2
27 Carbon steel Wld. pipe SA–671 CK75 K02803 … >25 1 2
28 Carbon steel Wld. pipe SA–672 N75 K02803 … >25 1 2
29 Carbon steel Wld. pipe SA–691 CMS–75 K02803 … >25 1 2
30 Carbon steel Plate SA–299 A K02803 … ≤25 1 2
31 Carbon steel Wld. pipe SA–691 CMS–75 K02803 … ≤25 1 2
32 Carbon steel Forgings SA–372 B K04001 … … 1 2
33 Carbon steel Sheet SA–414 G K03103 … … 1 2
34 Carbon steel Plate SA–738 A K12447 … … 1 2
35 Carbon steel Plate SA–537 … K12437 3 65 < t ≤ 100 1 3
36 Carbon steel Plate SA–537 … K12437 2 65 < t ≤ 100 1 3
37 Carbon steel Wld. pipe SA–691 CMSH–80 K12437 … 65 < t ≤ 100 1 3
38 Carbon steel Plate SA–738 C K02008 … 65 < t ≤ 100 1 3
39 Carbon steel Plate SA–299 B K02803 … >25 1 3
40 Carbon steel Plate SA–299 B K02803 … ≤25 1 3
41 Carbon steel Forgings SA–765 IV K02009 … … 1 3
42 Carbon steel Plate SA–537 … K12437 3 ≤65 1 3
43 Carbon steel Plate SA–537 … K12437 2 ≤65 1 3
44 Carbon steel Wld. pipe SA–671 CD80 K12437 … ≤65 1 3
45 Carbon steel Wld. pipe SA–672 D80 K12437 … ≤65 1 3
46 Carbon steel Wld. pipe SA–691 CMSH–80 K12437 … ≤65 1 3
47 Carbon steel Plate SA–738 C K02008 … ≤65 1 3
48 Carbon steel Plate SA–841 B … 2 ≤65 1 3
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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25
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 485 275 NP NP 427 343 CS–2 G10, T1
2 485 275 NP NP 538 343 CS–2 G24, T2, W6
3 485 275 538 371 NP NP CS–2 G1, G10, G17, S1, T1
4 485 275 NP 371 NP NP CS–2 T1
5 485 290 NP NP 482 343 CS–2 G10, T1
6 485 295 NP NP 371 343 CS–3 T1
7 485 315 NP 371 371 343 CS–3 G23, T1, W11
8 485 315 NP 343 343 343 CS–3 G23, W11
9 485 345 NP 371 343 343 CS–3 G23, T1
10 485 345 NP 371 NP NP CS–3 S6, T1, W10, W12
11 485 345 NP 371 NP NP CS–3 S6, T1, W10, W12
12 485 345 NP 371 NP NP CS–3 S6, T1, W10, W12
13 485 345 NP NP 343 NP CS–3 …
14 490 280 538 NP 538 NP CS–2 G10, S1, T2
15 490 305 538 NP 538 NP CS–2 G10, S1, T1
16 490 305 427 NP 427 NP CS–2 T1
17 490 315 454 NP 538 NP CS–2 G10, S1, T1
18 490 315 427 NP 427 NP CS–2 T1
19 500 325 427 NP 427 NP CS–2 T1
20 505 255 NP 204 (Cl. 3 only) 343 343 CS–2 …
21 510 285 538 NP 538 NP CS–2 G10, S1, T2
22 510 345 427 NP 427 NP CS–2 T1
23 510 … 454 NP 538 NP CS–2 G10, G18, S1, T1
24 515 260 538 371 538 NP CS–2 G10, S1, T2, W8, W11
25 515 260 NP 204 (Cl. 3 only) 343 343 CS–2 …
26 515 275 538 371 538 343 CS–2 G10, S1, T2
27 515 275 NP 371 NP NP CS–2 S6, W10, W12
28 515 275 NP 371 NP NP CS–2 S6, W10, W12
29 515 275 NP 371 NP NP CS–2 S6, W10, W12
30 515 290 538 371 538 343 CS–2 G10, S1, T1
31 515 290 NP 371 NP NP CS–2 T1, W10, W12
32 515 310 NP NP 343 343 CS–3 W11
33 515 310 NP NP 482 343 CS–3 G10, T1
34 515 310 NP NP 371 343 CS–2 T1
35 515 345 NP NP 371 343 CS–5 G23, T1, W11
36 515 380 NP 371 343 343 CS–5 G23, T1, W11
37 515 380 NP 371 NP NP CS–5 G26, T1, W10, W12
38 515 380 NP 343 343 343 CS–5 G23, W11
39 550 310 427 NP 538 343 CS–3 G10, S1, T1
40 550 325 427 NP 538 343 CS–3 G10, S1, T1
41 550 345 NP NP 371 NP CS–3 …
42 550 380 NP NP 371 343 CS–5 G23, T1, W11
43 550 415 NP 371 343 343 CS–5 G23, S6, T1, W10, W11, W12
44 550 415 NP 371 NP NP CS–5 S6, T1, W10, W12
45 550 415 NP 371 NP NP CS–5 S6, T1, W10, W12
46 550 415 NP 371 NP NP CS–5 S6, T1, W10, W12
47 550 415 NP 343 343 343 CS–5 G23, W11
48 550 415 NP NP 343 NP CS–3 …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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26
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
40 65 100 125 150 200 250 300 325 350 375 400 425 450 475
1 138 138 138 138 138 138 138 138 138 135 123 101 83.8 67.0 …
2 117 117 117 117 117 117 117 117 117 115 104 86.1 71.3 56.9 43.4
3 138 138 138 138 138 138 138 138 138 135 123 101 83.8 67.0 51.0
4 138 138 138 138 138 138 138 138 138 135 123 … … … …
5 138 138 138 138 138 138 138 138 138 137 123 101 83.8 67.1 50.8
6 138 138 138 138 138 138 138 138 138 137 123 … … … …
7 138 138 138 137 136 134 134 134 134 133 125 … … … …
8 138 138 138 137 136 134 134 134 134 133 … … … … …
9 138 138 138 137 136 134 134 134 134 133 125 … … … …
10 138 138 138 137 136 134 134 134 134 133 125 … … … …
11 138 138 138 137 136 134 134 134 134 133 125 … … … …
12 138 138 138 137 136 134 134 134 134 133 125 … … … …
13 138 138 138 138 138 138 138 138 138 138 … … … … …
14 140 140 140 140 140 140 140 140 140 136132 101 83.9 67.0 51.1
15 140 140 140 140 140 140 140 140 140 140 136 101 83.9 67.0 51.1
16 140 140 140 140 140 140 140 140 140 140 123 101 83.8 67.1 …
17 140 140 140 140 140 140 140 140 140 140 123 101 83.8 67.1 51.0
18 140 140 140 140 140 140 140 140 140 140 123 101 83.8 67.1 …
19 143 143 143 143 143 143 143 143 143 143 123 101 83.8 67.1 …
20 144 144 144 144 144 144 140 133 129 125 … … … … …
21 146 146 146 146 146 146 146 146 143 139 134 101 83.9 67.0 51.1
22 146 146 146 146 146 146 146 146 146 146 123 101 83.8 67.1 …
23 146 146 146 146 146 146 146 146 146 146 123 101 83.8 67.1 51.0
24 148 148 148 148 148 148 142 135 131 127 122 107 88.3 67.5 50.9
25 148 148 148 148 148 148 143 136 132 129 … … … … …
26 148 148 148 148 148 148 148 143 139 135 130 107 88.1 67.5 50.8
27 148 148 148 148 148 148 148 143 139 135 130 … … … …
28 148 148 148 148 148 148 148 143 139 135 130 … … … …
29 148 148 148 148 148 148 148 143 139 135 130 … … … …
30 148 148 148 148 148 148 148 148 147 141 133 107 88.1 67.6 50.8
31 148 148 148 148 148 148 148 148 147 141 133 … … … …
32 148 148 148 148 148 148 148 148 148 148 … … … … …
33 148 148 148 148 148 148 148 148 148 146 132 107 88.2 67.6 50.6
34 148 148 148 148 148 148 148 148 148 146 132 … … … …
35 148 148 147 147 145 144 144 144 144 142 123 … … … …
36 148 148 147 147 145 144 144 144 144 143 134 … … … …
37 148 148 147 147 145 144 144 144 144 143 134 … … … …
38 148 148 147 147 145 144 144 144 144 143 … … … … …
39 158 158 158 158 158 158 158 158 157 152 133 107 88.1 67.6 50.8
40 158 158 158 158 158 158 158 158 158 158 133 107 88.1 67.6 50.8
41 158 158 158 158 158 156 156 156 156 155 153 … … … …
42 158 158 158 157 156 154 154 154 154 151 132 … … … …
43 158 158 158 157 156 154 154 154 154 151 132 … … … …
44 158 158 158 157 156 154 154 154 154 151 132 … … … …
45 158 158 158 157 156 154 154 154 154 151 132 … … … …
46 158 158 158 157 156 154 154 154 154 151 132 … … … …
47 158 158 158 157 156 154 154 154 154 151 … … … … …
48 158 158 158 158 158 158 158 158 158 158 … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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27
ASME BPVC.II.D.M-2019
#
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Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
500 525 550 575 600 625 650 675 700 725 750 775 800 825 850 875 900
1 … … … … … … … … … … … … … … … … …
2 28.6 18.1 10.7 … … … … … … … … … … … … … …
3 33.6 21.3 12.9 … … … … … … … … … … … … … …
4 … … … … … … … … … … … … … … … … …
5 34.7 … … … … … … … … … … … … … … … …
6 … … … … … … … … … … … … … … … … …
7 … … … … … … … … … … … … … … … … …
8 … … … … … … … … … … … … … … … … …
9 … … … … … … … … … … … … … … … … …
10 … … … … … … … … … … … … … … … … …
11 … … … … … … … … … … … … … … … … …
12 … … … … … … … … … … … … … … … … …
13 … … … … … … … … … … … … … … … … …
14 33.6 21.3 12.9 … … … … … … … … … … … … … …
15 33.6 21.3 12.9 … … … … … … … … … … … … … …
16 … … … … … … … … … … … … … … … … …
17 33.6 21.3 12.9 … … … … … … … … … … … … … …
18 … … … … … … … … … … … … … … … … …
19 … … … … … … … … … … … … … … … … …
20 … … … … … … … … … … … … … … … … …
21 33.6 21.3 12.9 … … … … … … … … … … … … … …
22 … … … … … … … … … … … … … … … … …
23 33.6 21.3 12.9 … … … … … … … … … … … … … …
24 33.7 21.3 12.9 … … … … … … … … … … … … … …
25 … … … … … … … … … … … … … … … … …
26 33.7 21.3 12.9 … … … … … … … … … … … … … …
27 … … … … … … … … … … … … … … … … …
28 … … … … … … … … … … … … … … … … …
29 … … … … … … … … … … … … … … … … …
30 33.7 21.3 12.9 … … … … … … … … … … … … … …
31 … … … … … … … … … … … … … … … … …
32 … … … … … … … … … … … … … … … … …
33 34.9 … … … … … … … … … … … … … … … …
34 … … … … … … … … … … … … … … … … …
35 … … … … … … … … … … … … … … … … …
36 … … … … … … … … … … … … … … … … …
37 … … … … … … … … … … … … … … … … …
38 … … … … … … … … … … … … … … … … …
39 33.7 21.3 12.9 … … … … … … … … … … … … … …
40 33.7 21.3 12.9 … … … … … … … … … … … … … …
41 … … … … … … … … … … … … … … … … …
42 … … … … … … … … … … … … … … … … …
43 … … … … … … … … … … … … … … … … …
44 … … … … … … … … … … … … … … … … …
45 … … … … … … … … … … … … … … … … …
46 … … … … … … … … … … … … … … … … …
47 … … … … … … … … … … … … … … … … …
48 … … … … … … … … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
28
ASME BPVC.II.D.M-2019
#
#
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 Carbon steel Plate SA–612 … K02900 … 12.5 < t ≤ 25 10C 1
2 Carbon steel Plate SA–612 … K02900 … ≤12.5 10C 1
3 Carbon steel Plate SA–738 B K12007 … … 1 3
4 Carbon steel Forgings SA–372 C K04801 … … … …
5 Carbon steel Plate SA–724 A K11831 … … 1 4
6 Carbon steel Plate SA–724 C K12037 … … 1 4
7 Carbon steel Plate SA–724 B K12031 … … 1 4
8 C–Mn–Si–Cb Plate SA–737 B K12001 … … 1 2
9 C–Mn–Si–Cb Plate SA/AS 1548 PT490N … Normalized ≤150 1 2
10 C–Mn–Si–Cb Plate SA/AS 1548 PT490NR … Norm. rld. ≤150 1 2
11 C–Mn–Si–Cb Plate SA/GB 713 Q370R … Normalized 36 < t ≤ 60 1 2
12 C–Mn–Si–Cb Plate SA/GB 713 Q370R … Normalized 16 < t ≤ 36 1 2
13 C–Mn–Si–Cb Plate SA/GB 713 Q370R … Normalized 10 ≤ t ≤ 16 1 2
14 C–Mn–Si–V Plate SA–737 C K12202 … … 1 3
15 C–Mn–Si–V–Cb Plate SA–656 T3 … … ≤50 1 1
16 C–Mn–Si–V–Cb Plate SA–656 T7 … … ≤50 1 1
17 C–Mn–Si–V–Cb Plate SA–656 T3 … … ≤40 1 2
18 C–Mn–Si–V–Cb Plate SA–656 T7 … … ≤40 1 2
19 C–Mn–Si–V–Cb Plate SA–656 T3 … … ≤25 1 3
20 C–Mn–Si–V–Cb Plate SA–656 T7 … … ≤25 1 3
21 C–Mn–Si–V–Cb Plate SA–656 T3 … … ≤20 1 4
22 C–Mn–Si–V–Cb Plate SA–656 T7 … … ≤20 1 4
23 C–Mn–Ti Plate, sheet SA–562 … K11224 … … 1 1
24 C–Si–Ti Forgings SA–836 … … 1 … 1 1
25 C–0.3Mo Smls. tube SA/EN 10216–2 16Mo3 … … 40 < t ≤ 60 3 1
26 C–0.3Mo Smls. tube SA/EN 10216–2 16Mo3 … … 16 < t ≤ 40 3 1
27 C–0.3Mo Smls. tube SA/EN 10216–2 16Mo3 … … t ≤ 16 3 1
28 C–1/2Mo Smls. & wld. fittings SA–234 WP1 K12821 … … 3 1
29 C–1/2Mo Smls. tube SA–209 T1b K11422 … … 3 1
30 C–1/2Mo Wld. tube SA–250 T1b K11422 … … 3 1
31 C–1/2Mo Wld. tube SA–250 T1b K11422 … … 3 1
32 C–1/2Mo Smls. tube SA–209 T1 K11522 … … 3 1
33 C–1/2Mo Wld. tube SA–250 T1 K11522 … … 3 1
34 C–1/2Mo Wld. tube SA–250 T1 K11522 … … 3 1
35 C–1/2Mo Smls. pipe SA–335 P1 K11522 … … 3 1
36 C–1/2Mo Forged pipe SA–369 FP1 K11522 … … 3 1
37 C–1/2Mo Smls. tube SA–209 T1a K12023 … … 3 1
38 C–1/2Mo Wld. tube SA–250 T1a K12023 … … 3 1
39 C–1/2Mo Wld. tube SA–250 T1a K12023 … … 3 1
40 C–1/2Mo Castings SA–217 WC1 J12524 … … 3 1
41 C–1/2Mo Castings SA–352 LC1 J12522 … … 3 1
42 C–1/2Mo Cast pipe SA–426 CP1 J12521 … … 3 1
43 C–1/2Mo Plate SA–204 A K11820 … … 3 1
44 C–1/2Mo Wld. pipe SA–672 L65 K11820 … … 3 1
45 C–1/2Mo Wld. pipe SA–691 CM–65 K11820 … … 3 1
46 C–1/2Mo Wld. pipe SA–691 CM–65 K11820 … … 3 1
CopyrightASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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29
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 560 345 NP 371 343 343 CS–3 T1
2 570 345 NP 343 343 343 CS–3 …
3 585 415 NP 343 343 343 CS–5 …
4 620 380 NP NP 343 343 CS–3 W11
5 620 485 NP NP 371 343 CS–5 …
6 620 485 NP NP 371 343 CS–5 …
7 655 515 NP NP 371 343 CS–5 …
8 485 345 NP 371 371 343 CS–3 T1
9 490 … 538 NP 538 NP CS–2 G10, G18, S1, T1
10 490 … 538 NP 538 NP CS–2 G10, G18, S1, T1
11 520 340 427 NP NP NP CS–3 T1
12 530 360 427 NP NP NP CS–3 T1
13 530 370 427 NP NP NP CS–3 T1
14 550 415 NP 371 371 343 CS–3 …
15 414 345 NP NP NP 343 … …
16 414 345 NP NP NP 343 … …
17 483 414 NP NP NP 343 … …
18 483 414 NP NP NP 343 … …
19 552 483 NP NP NP 343 … …
20 552 483 NP NP NP 343 … …
21 621 552 NP NP NP 343 … …
22 621 552 NP NP NP 343 … …
23 380 205 NP NP 343 NP CS–6 G7
24 380 170 NP NP 343 343 CS–1 …
25 450 260 538 NP 538 NP CS–2 G11, S2, T3
26 450 270 538 NP 538 NP CS–2 G11, S2, T3
27 450 280 538 NP 538 NP CS–2 G11, S2, T3
28 380 205 538 371 538 343 CS–2 G11, T4, W14
29 365 195 538 NP 538 343 CS–1 G11, S3, T5
30 365 195 538 NP NP NP CS–1 G11, S2, T5, W13
31 365 195 538 NP 538 343 CS–1 G3, G11, G24, S2, T5
32 380 205 538 NP 538 343 CS–2 G11, S3, T4
33 380 205 538 NP NP NP CS–2 G11, S2, T4, W13
34 380 205 538 NP 538 343 CS–2 G3, G11, G24, S2, T4
35 380 205 538 371 538 343 CS–2 G11, S2, T4
36 380 205 538 371 538 343 CS–2 G11, S2, T4
37 415 220 538 NP 538 343 CS–2 G11, S3, T4
38 415 220 538 NP NP NP CS–2 G11, S2, T4, W13
39 415 220 538 NP 538 343 CS–2 G3, G11, G24, S2, T4
40 450 240 538 371 538 343 CS–2 G1, G11, G17, S2, T4
41 450 240 NP 371 343 343 CS–2 G1, G17
42 450 240 NP 371 NP NP CS–2 G17
43 450 255 538 371 538 343 CS–2 G11, S2, T4
44 450 255 NP 371 NP NP CS–2 G26, W10, W12
45 450 255 NP 371 NP NP CS–2 G26, W10, W12
46 450 255 NP 149 (Cl. 3 only) NP NP CS–2 G27, W10, W12
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
30
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
40 65 100 125 150 200 250 300 325 350 375 400 425 450 475
1 159 159 159 158 157 156 156 155 155 149 133 … … … …
2 163 163 163 162 161 160 160 157 154 151 … … … … …
3 168 168 168 168 168 168 168 167 165 163 … … … … …
4 177 177 177 177 177 177 177 177 175 166 … … … … …
5 177 177 177 176 175 173 173 173 173 165 148 … … … …
6 177 177 177 176 175 173 173 173 173 165 148 … … … …
7 187 187 187 186 185 183 183 183 179 165 158 … … … …
8 138 138 138 138 138 138 138 138 138 138 135 … … … …
9 140 140 140 140 140 140 140 140 140 139 123 101 83.8 67.0 51.0
10 140 140 140 140 140 140 140 140 140 139 123 101 83.8 67.0 51.0
11 149 149 149 149 149 149 149 149 149 149 133 107 88.1 67.6 …
12 151 151 151 151 151 151 151 151 151 151 133 107 88.1 67.6 …
13 151 151 151 151 151 151 151 151 151 151 133 107 88.1 67.6 …
14 158 158 158 158 158 158 158 158 158 155 135 … … … …
15 118 118 118 118 118 118 118 118 118 118 … … … … …
16 118 118 118 118 118 118 118 118 118 118 … … … … …
17 138 138 138 138 138 138 138 138 138 138 … … … … …
18 138 138 138 138 138 138 138 138 138 138 … … … … …
19 158 158 158 158 158 158 158 158 158 158 … … … … …
20 158 158 158 158 158 158 158 158 158 158 … … … … …
21 177 177 177 177 177 177 177 177 177 177 … … … … …
22 177 177 177 177 177 177 177 177 177 177 … … … … …
23 88.9 84.0 78.3 75.1 73.0 71.7 71.7 71.7 71.7 71.7 … … … … …
24 108 103 97.6 94.1 91.6 89.7 89.6 89.4 88.5 87.2 … … … … …
25 129 129 129 129 129 129 129 129 129 129 129 129 129 126 105
26 129 129 129 129 129 129 129 129 129 129 129 129 129 126 105
27 129 129 129 129 129 129 129 129 129 129 129 129 129 126 105
28 108 108 108 108 108 108 108 108 108 108 108 106 103 101 96.1
29 104 104 104 104 104 104 104 104 104 103 101 98.5 96.7 93.6 90.7
30 104 104 104 104 104 104 104 104 104 103 101 98.5 96.7 93.6 90.7
31 88.9 88.9 88.9 88.9 88.9 88.9 88.9 88.9 88.6 87.2 85.9 84.0 82.2 79.7 77.4
32 108 108 108 108 108 108 108 108 108 108 108 106 103 101 96.1
33 108 108 108 108 108 108 108 108 108 108 108 106 103 101 96.1
34 92.4 92.4 92.4 92.4 92.4 92.4 92.4 92.4 92.4 92.4 92.2 90.2 87.7 85.4 81.4
35 108 108 108 108 108 108 108 108 108 108 108 106 103 101 96.1
36 108 108 108 108 108 108 108 108 108 108 108 106 103 101 96.1
37 118 118 118 118 118 118 118 118 118 118 115 113 110 107 100
38 118 118 118 118 118 118 118 118 118 118 115 113 110 107 100
39 101 101 101 101 101 101 101 101 101 100 98.2 95.8 93.9 90.9 84.9
40 128 128 128 128 128 128 128 128 128 128 126 123 120 117 103
41 128 128 128 128 128 128 128 128 128 128 126 … … … …
42 128 128 128 128 128 128 128 128 128 128 126 … … … …
43 128 128 128 128 128 128 128 128 128 128 128 128 127 124 105
44 128 128 128 128 128 128 128 128 128 128 128 … … … …
45 128 128 128 128 128 128 128 128 128 128 128 … … … …
46 128 128 128 128 128 … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
31
ASME BPVC.II.D.M-2019
#
#
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
500 525 550 575 600 625 650 675 700 725 750 775 800 825 850 875 900
1 … … … … … … … … … … … … … … … … …
2 … … … … … … … … … … … … … … … … …
3 … … … … … … … … … … … … … … … … …
4 … … … … … … … … … … … … … … … … …
5 … … … … … … … … … … … … … … … … …
6 … … … … … … … … … … … … … … … … …
7 … … … … … … … … … … … … … … … … …
8 … … … … … … … … … … … … … … … … …
9 33.6 21.3 12.9 … … … … … … … … … … … … … …
10 33.6 21.3 12.9 … … … … … … … … … … … … … …
11 … … … … … … … … … … … … … … … … …
12 … … … … … … … … … … … … … … … … …
13 … … … … … … … … … … … … … … … … …
14 … … … … … … … … … … … … … … … … …
15 … … … … … … … … … … … … … … … … …
16 … … … … … … … … … … … … … … … … …
17 … … … … … … … … … … … … … … … … …
18 … … … … … … … … … … … … … … … … …
19 … … … … … … … … … … … … … … … … …
20 … … … … … … … … … … … … … … … … …
21 … … … … … … … … … … … … … … … … …
22 … … … … … … … … … … … … … … … … …
23 … … … … … … … … … … … … … … … … …
24 … … … … … … … … … … … … … … … … …
25 68.9 42.8 23.2 … … … … … … … … … … … … … …
26 68.9 42.8 23.2 … … … … … …… … … … … … … …
27 68.9 42.8 23.2 … … … … … … … … … … … … … …
28 72.1 41.7 23.6 … … … … … … … … … … … … … …
29 70.4 42.2 23.4 … … … … … … … … … … … … … …
30 70.4 42.2 23.4 … … … … … … … … … … … … … …
31 60.2 36.0 20.0 … … … … … … … … … … … … … …
32 72.1 41.7 23.6 … … … … … … … … … … … … … …
33 72.1 41.7 23.6 … … … … … … … … … … … … … …
34 61.3 35.7 20.1 … … … … … … … … … … … … … …
35 72.1 41.7 23.6 … … … … … … … … … … … … … …
36 72.1 41.7 23.6 … … … … … … … … … … … … … …
37 70.4 42.3 23.4 … … … … … … … … … … … … … …
38 70.4 42.3 23.4 … … … … … … … … … … … … … …
39 59.9 36.2 19.9 … … … … … … … … … … … … … …
40 69.5 42.6 23.2 … … … … … … … … … … … … … …
41 … … … … … … … … … … … … … … … … …
42 … … … … … … … … … … … … … … … … …
43 68.9 42.8 23.2 … … … … … … … … … … … … … …
44 … … … … … … … … … … … … … … … … …
45 … … … … … … … … … … … … … … … … …
46 … … … … … … … … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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32
ASME BPVC.II.D.M-2019
#
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 C–1/2Mo Forgings SA–182 F1 K12822 … … 3 2
2 C–1/2Mo Plate SA–204 B K12020 … … 3 2
3 C–1/2Mo Forgings SA–336 F1 K12520 … … 3 2
4 C–1/2Mo Wld. pipe SA–672 L70 K12020 … … 3 2
5 C–1/2Mo Wld. pipe SA–691 CM–70 K12020 … … 3 2
6 C–1/2Mo Wld. pipe SA–691 CM–70 K12020 … … 3 2
7 C–1/2Mo Plate SA–204 C K12320 … … 3 2
8 C–1/2Mo Wld. pipe SA–672 L75 K12320 … … 3 2
9 C–1/2Mo Wld. pipe SA–691 CM–75 K12320 … … 3 2
10 C–1/2Mo Wld. pipe SA–691 CM–75 K12320 … … 3 2
11 1/2Cr–
1/5Mo Forgings SA–372 G K13049 55 … … …
12 1/2Cr–
1/5Mo Forgings SA–372 H K13547 55 … … …
13 1/2Cr–
1/5Mo Forgings SA–372 G K13049 65 … … …
14 1/2Cr–
1/5Mo Forgings SA–372 H K13547 65 … … …
15 1/2Cr–
1/5Mo Forgings SA–372 G K13049 70 … … …
16 1/2Cr–
1/5Mo Forgings SA–372 H K13547 70 … … …
17 1/2Cr–
1/5Mo–V Plate SA–517 B K11630 … ≤32 11B 4
18 1/2Cr–
1/4Mo–Si Plate SA–517 A K11856 … ≤32 11B 1
19 1/2Cr–
1/4Mo–Si Forgings SA–592 A K11856 … ≤65 11B 1
20 1/2Cr–
1/2Mo Smls. pipe SA–335 P2 K11547 … … 3 1
21 1/2Cr–
1/2Mo Forged pipe SA–369 FP2 K11547 … … 3 1
22 1/2Cr–
1/2Mo Plate SA–387 2 K12143 1 … 3 1
23 1/2Cr–
1/2Mo Wld. pipe SA–691
1/2CR K12143 … … 3 1
24 1/2Cr–
1/2Mo Wld. pipe SA–691
1/2CR K12143 … … 3 1
25 1/2Cr–
1/2Mo Smls. tube SA–213 T2 K11547 … … 3 1
26 1/2Cr–
1/2Mo Wld. tube SA–250 T2 K11547 … … 3 1
27 1/2Cr–
1/2Mo Wld. tube SA–250 T2S1 K11547 … … 3 1
28 1/2Cr–
1/2Mo Cast pipe SA–426 CP2 J11547 … … 3 1
29 1/2Cr–
1/2Mo Forgings SA–182 F2 K12122 … … 3 2
30 1/2Cr–
1/2Mo Plate SA–387 2 K12143 2 … 3 2
31 1/2Cr–
1/2Mo Wld. pipe SA–691
1/2CR K12143 … … 3 2
32 3/4Cr–
1/2Ni–Cu Smls. & wld. tube SA–423 1 K11535 … … 4 2
33 3/4Cr–
1/2Ni–Cu Wld. tube SA–423 1 K11535 … … 4 2
34 3/4Cr–
3/4Ni–Cu–Al Pipe SA–333 4 K11267 … … 4 2
35 1Cr–1/5Mo Forgings SA–372 E K13047 55 … … …
36 1Cr–1/5Mo Forgings SA–372 F G41350 55 … … …
37 1Cr–1/5Mo Forgings SA–372 J K13548 55 … … …
38 1Cr–1/5Mo Forgings SA–372 E K13047 65 … … …
39 1Cr–1/5Mo Forgings SA–372 F G41350 65 … … …
40 1Cr–1/5Mo Forgings SA–372 J K13548 65 … … …
41 1Cr–1/5Mo Forgings SA–372 E K13047 70 … … …
42 1Cr–1/5Mo Forgings SA–372 F G41350 70 … … …
43 1Cr–1/5Mo Forgings SA–372 J K13548 70 … … …
44 1Cr–1/5Mo Forgings SA–372 J G41370 110 … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
33
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 485 275 538 371 538 343 CS–2 G11, S2, T4
2 485 275 538 371 538 343 CS–2 G11, S2, T4
3 485 275 538 371 538 343 CS–2 G11, S2, T4
4 485 275 NP 371 NP NP CS–2 G26, W10, W12
5 485 275 NP 371 NP NP CS–2 G26, W10, W12
6 485 275 NP 149 (Cl. 3 only) NP NP CS–2 G27, W10, W12
7 515 295 538 371 538 343 CS–2 G11, S2, T4, W12
8 515 295 NP 371 NP NP CS–2 G26, W10, W12
9 515 295 NP 371 NP NP CS–2 G26, W10, W12
10 515 295 NP 149 (Cl. 3 only) NP NP CS–2 G27, W10, W12
11 585 380 NP NP 315 315 CS–3 W11
12 585 380 NP NP 315 315 CS–3 W11
13 725 450 NP NP 315 315 CS–3 W11
14 725 450 NP NP 315 315 CS–3 W11
15 825 485 NP NP 93 93 CS–3 W11
16 825 485 NP NP 93 93 CS–3 W11
17 795 690 NP 343 (SPT) 343 343 HT–1 …
18 795 690 NP 343 (SPT) 343 343 HT–1 …
19 795 690 NP 343 (SPT) 343 343 HT–1 …
20 380 205 538 371 538 343 CS–2 T5
21 380 205 538 371 538 343 CS–2 T5
22 380 230 538 371 538 343 CS–2 T5
23 380 230 NP 371 NP NP CS–2 G26, W10, W12
24 380 230 NP 149 (Cl. 3 only) NP NP CS–2 G27, W10, W12
25 415 205 538 371 538 343 CS–2 T5
26 415 205 538 NP NP NP CS–2 G3, T5
27 415 205 538 NP NP NP CS–2 T5, W13
28 415 205 NP 371 NP NP CS–2 G17
29 485 275 538 NP 538 343 CS–2 T5
30 485 310 NP 371 538 343 CS–3 T5
31 485 310 NP 371 NP NP CS–3 G26, W10, W12
32 415 255 371 NP 343 NP CS–2 W13, W14
33 415 255 371 NP 343 NP CS–2 G3, G24
34 415 240 NP 371 343 NP CS–2 …
35 585 380 NP NP 315 315 CS–3 W11
36 585 380 NP NP 315 315 CS–3 W11
37 585 380 NP NP 315 315 CS–3 W11
38 725 450 NP NP 343 343 CS–2 W11
39 725 450 NP NP 315 315 CS–3 W11
40 725 450 NP NP 343 343 CS–2 W11
41 825 485 NP NP 343 343 CS–5 W11
42 825 485 NP NP 343 343 CS–5 W11
43 825 485 NP NP 343 343 CS–5 W11
44 930 760 NP NP 343 343 HT–1 W11
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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34
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
40 65 100 125 150 200 250 300 325 350 375 400 425 450 475
1 138 138 138 138 138 138 138 138 138 138 138 138 137 134 107
2 138 138 138 138 138 138 138 138 138 138 138 138 137 134 107
3 138 138 138 138 138 138 138 138 138 138 138 138 137 134 107
4 138 138 138 138 138 138 138 138 138 138 138 … … … …
5 138 138 138 138 138 138 138 138 138 138 138 … … … …
6 138 138 138 138 138 … … … … … … … … … …
7 148 148 148 148 148 148 148 148 148 148 148 148 148 144 109
8 148 148 148 148 148 148 148 148 148 148 148 … … … …
9 148 148 148 148 148 148 148 148 148 148 148 … … … …
10 148 148 148 148 148 … …… … … … … … … …
11 167 167 167 167 167 167 167 167 167 … … … … … …
12 167 167 167 167 167 167 167 167 167 … … … … … …
13 207 207 207 207 207 207 207 207 207 … … … … … …
14 207 207 207 207 207 207 207 207 207 … … … … … …
15 236 236 236 … … … … … … … … … … … …
16 236 236 236 … … … … … … … … … … … …
17 227 227 227 227 227 227 227 227 227 226 … … … … …
18 227 227 227 227 227 227 227 227 227 226 … … … … …
19 227 227 227 227 227 227 227 227 227 226 … … … … …
20 108 108 108 108 108 108 108 108 108 108 108 106 103 100 97.1
21 108 108 108 108 108 108 108 108 108 108 108 106 103 100 97.1
22 108 108 108 108 108 108 108 108 108 108 108 108 108 106 103
23 108 108 108 108 108 108 108 108 108 108 108 … … … …
24 108 108 108 108 108 … … … … … … … … … …
25 118 118 118 118 118 118 117 114 112 110 108 106 103 100 97.1
26 100 100 100 100 100 100 99.6 96.7 95.5 93.8 91.5 90.2 87.7 85.3 82.4
27 118 118 118 118 118 118 117 114 112 110 108 106 103 100 97.1
28 118 118 118 118 118 118 117 114 112 110 108 … … … …
29 138 138 138 138 138 138 138 138 138 138 138 138 137 134 130
30 138 138 138 138 138 138 138 138 138 138 138 138 138 135 130
31 138 138 138 138 138 138 138 138 138 138 138 … … … …
32 118 118 118 118 118 118 118 118 118 118 118 … … … …
33 101 101 101 101 101 101 101 101 101 101 101 … … … …
34 118 118 118 118 118 118 118 118 118 118 118 … … … …
35 167 167 167 167 167 167 167 167 167 … … … … … …
36 167 167 167 167 167 167 167 167 167 … … … … … …
37 167 167 167 167 167 167 167 167 167 … … … … … …
38 207 207 207 207 207 207 207 207 207 205 … … … … …
39 207 207 207 207 207 207 207 207 207 … … … … … …
40 207 207 207 207 207 207 207 207 207 205 … … … … …
41 236 236 236 236 236 236 236 236 236 235 … … … … …
42 236 233 229 227 225 223 222 220 217 209 … … … … …
43 236 236 236 236 236 236 236 236 236 235 … … … … …
44 265 260 254 254 253 252 249 248 245 234 … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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35
ASME BPVC.II.D.M-2019
#
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
500 525 550 575 600 625 650 675 700 725 750 775 800 825 850 875 900
1 68.1 43.1 23.1 … … … … … … … … … … … … … …
2 68.1 43.1 23.1 … … … … … … … … … … … … … …
3 68.1 43.1 23.1 … … … … … … … … … … … … … …
4 … … … … … … … … … … … … … … … … …
5 … … … … … … … … … … … … … … … … …
6 … … … … … … … … … … … … … … … … …
7 67.2 43.3 23.0 … … … … … … … … … … … … … …
8 … … … … … … … … … … … … … … … … …
9 … … … … … … … … … … … … … … … … …
10 … … … … … … … … … … … … … … … … …
11 … … … … … … … … … … … … … … … … …
12 … … … … … … … … … … … … … … … … …
13 … … … … … … … … … … … … … … … … …
14 … … … … … … … … … … … … … … … … …
15 … … … … … … … … … … … … … … … … …
16 … … … … … … … … … … … … … … … … …
17 … … … … … … … … … … … … … … … … …
18 … … … … … … … … … … … … … … … … …
19 … … … … … … … … … … … … … … … … …
20 77.0 49.5 31.3 … … … … … … … … … … … … … …
21 77.0 49.5 31.3 … … … … … … … … … … … … … …
22 76.7 49.6 31.2 … … … … … … … … … … … … … …
23 … … … … … … … … … … … … … … … … …
24 … … … … … … … … … … … … … … … … …
25 77.0 49.5 31.3 … … … … … … … … … … … … … …
26 65.3 42.0 26.5 … … … … … … … … … … … … … …
27 77.0 49.5 31.3 … … … … … … … … … … … … … …
28 … … … … … … … … … … … … … … … … …
29 89.1 46.0 32.5 … … … … … … … … … … … … … …
30 88.9 46.0 32.5 … … … … … … … … … … … … … …
31 … … … … … … … … … … … … … … … … …
32 … … … … … … … … … … … … … … … … …
33 … … … … … … … … … … … … … … … … …
34 … … … … … … … … … … … … … … … … …
35 … … … … … … … … … … … … … … … … …
36 … … … … … … … … … … … … … … … … …
37 … … … … … … … … … … … … … … … … …
38 … … … … … … … … … … … … … … … … …
39 … … … … … … … … … … … … … … … … …
40 … … … … … … … … … … … … … … … … …
41 … … … … … … … … … … … … … … … … …
42 … … … … … … … … … … … … … … … … …
43 … … … … … … … … … … … … … … … … …
44 … … … … … … … … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
36
ASME BPVC.II.D.M-2019
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 1Cr–1/2Mo Plate SA–387 12 K11757 1 … 4 1
2 1Cr–1/2Mo Wld. pipe SA–691 1CR K11757 … … 4 1
3 1Cr–1/2Mo Cast pipe SA–426 CP12 J11562 … … 4 1
4 1Cr–1/2Mo Forgings SA–182 F12 K11562 1 … 4 1
5 1Cr–1/2Mo Smls. tube SA–213 T12 K11562 … … 4 1
6 1Cr–1/2Mo Smls. & wld. fittings SA–234 WP12 K12062 1 … 4 1
7 1Cr–1/2Mo Wld. tube SA–250 T12 K11562 … … 4 1
8 1Cr–1/2Mo Wld. tube SA–250 T12S1 K11562 … … 4 1
9 1Cr–1/2Mo Smls. pipe SA–335 P12 K11562 … … 4 1
10 1Cr–1/2Mo Forged pipe SA–369 FP12 K11562 … … 4 1
11 1Cr–1/2Mo Forgings SA/EN 10222–2 13CrMo4–5 … NT or QT 250 < t ≤ 500 4 1
12 1Cr–1/2Mo Plate SA/EN 10028–2 13CrMo4–5 … … 150 < t ≤ 250 4 1
13 1Cr–1/2Mo Plate SA/EN 10028–2 13CrMo4–5 … … 100 < t ≤ 150 4 1
14 1Cr–1/2Mo Plate SA/GB 713 15CrMoR … NT 100 < t ≤ 150 4 1
15 1Cr–1/2Mo Forgings SA/EN 10222–2 13CrMo4–5 … NT or QT 100 < t ≤ 250 4 1
16 1Cr–1/2Mo Plate SA/EN 10028–2 13CrMo4–5 … … 60 < t ≤ 100 4 1
17 1Cr–1/2Mo Forgings SA/EN 10222–2 13CrMo4–5 … NT or QT 70 < t ≤ 100 4 1
18 1Cr–1/2Mo Smls. tube SA/EN 10216–2 13CrMo4–5 … … 40 < t ≤ 60 4 1
19 1Cr–1/2Mo Forgings SA/EN 10222–2 13CrMo4–5 … NT 35 < t ≤ 70 4 1
20 1Cr–1/2Mo Smls. tube SA/EN 10216–2 13CrMo4–5 … … t ≤ 40 4 1
21 1Cr–1/2Mo Forgings SA/EN 10222–2 13CrMo4–5 … NT t ≤ 35 4 1
22 1Cr–1/2Mo Plate SA–387 12 K11757 2 … 4 1
23 1Cr–1/2Mo Wld. pipe SA–691 1CR K11757 … … 4 1
24 1Cr–1/2Mo Plate SA/GB 713 15CrMoR … NT 60 < t ≤ 100 4 1
25 1Cr–1/2Mo Plate SA/EN 10028–2 13CrMo4–5 … … 16 < t ≤ 60 4 1
26 1Cr–1/2Mo Plate SA/GB 713 15CrMoR … NT 6 ≤ t ≤ 60 4 1
27 1Cr–1/2Mo Plate SA/EN 10028–2 13CrMo4–5 … … t ≤ 16 4 1
28 1Cr–1/2Mo Forgings SA–182 F12 K11564 2 … 4 1
29 1Cr–1/2Mo Forgings SA–336 F12 K11564 … … 4 1
30 1Cr–V Smls. tube SA–213 T17 K12047 … … 10B 1
31 11/4Cr–
1/2Mo Castings SA–217 WC6 J12072 … … 4 1
32 11/4Cr–
1/2Mo Cast pipe SA–426 CP11 J12072 … … 4 1
33 11/4Cr–
1/2Mo Bar SA–739 B11 K11797 … … 4 1
34 11/4Cr–
1/2Mo–Si Forgings SA–182 F11 K11597 1 … 4 1
35 11/4Cr–
1/2Mo–Si Smls. tube SA–213 T11 K11597 … … 4 1
36 11/4Cr–
1/2Mo–Si Smls. & wld. fittings SA–234 WP11 … 1 … 4 1
37 11/4Cr–
1/2Mo–Si Wld. tube SA–250 T11 K11597 … … 4 1
38 11/4Cr–
1/2Mo–Si Wld. tube SA–250 T11S1 K11597 … … 4 1
39 11/4Cr–
1/2Mo–Si Smls. pipe SA–335 P11 K11597 … … 4 1
40 11/4Cr–
1/2Mo–Si Forgings SA–336 F11 K11597 1 … 4 1
41 11/4Cr–
1/2Mo–Si Forged pipe SA–369 FP11 K11597 … … 4 1
42 11/4Cr–
1/2Mo–Si Plate SA–387 11 K11789 1 … 4 1
43 11/4Cr–
1/2Mo–Si Wld. pipe SA–691 1
1/4CR K11789 … … 4 1
44 11/4Cr–
1/2Mo–Si Wld. pipe SA–691 1
1/4CR K11789 … … 4 1
Copyright ASME International (BPVC)Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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37
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 380 230 649 371 649 NP CS–2 S4, T5
2 380 230 NP 371 NP NP CS–2 G26, W10, W12
3 415 205 NP 371 NP NP CS–2 G17
4 415 220 649 NP 649 NP CS–2 T5
5 415 220 649 371 649 NP CS–2 S4, T5
6 415 220 649 371 649 NP CS–2 S4, T5, W14
7 415 220 649 NP NP NP CS–2 G3, S4, T5
8 415 220 649 NP NP NP CS–2 S4, T5, W13
9 415 220 649 371 649 NP CS–2 S4, T5
10 415 220 649 371 649 NP CS–2 S4, T5
11 420 240 649 NP 649 NP CS–2 S4, T4
12 420 245 649 NP 649 NP CS–2 S4, T4
13 430 255 649 NP 649 NP CS–2 S4, T4
14 440 225 649 NP NP NP CS–2 S4, T4
15 440 265 649 NP 649 NP CS–2 S4, T4
16 440 270 649 NP 649 NP CS–2 S4, T4
17 440 275 649 NP 649 NP CS–2 S4, T4
18 440 280 649 NP 649 NP CS–2 T4
19 440 285 649 NP 649 NP CS–2 S4, T4
20 440 290 649 NP 649 NP CS–2 T4
21 440 295 649 NP 649 NP CS–2 S4, T4
22 450 275 649 371 649 NP CS–2 S4, T5
23 450 275 NP 371 NP NP CS–2 G26, W10, W12
24 450 275 649 NP NP NP CS–2 S4, T4
25 450 290 649 NP 649 NP CS–2 S4, T4
26 450 295 649 NP NP NP CS–2 S4, T4
27 450 300 649 NP 649 NP CS–2 S4, T4
28 485 275 649 371 649 NP CS–2 S4, T4
29 485 275 649 371 649 NP CS–2 S4, T4
30 415 205 NP NP 343 343 CS–2 …
31 485 275 593 371 593 NP CS–2 G1, G17, T4
32 485 275 NP 371 NP NP CS–2 G17
33 485 310 NP 371 649 NP CS–3 T4
34 415 205 649 NP 649 NP CS–2 S4, T5
35 415 205 649 371 649 NP CS–2 S4, T5
36 415 205 649 371 649 NP CS–2 S4, T5, W14
37 415 205 649 NP NP NP CS–2 G3, S4, T5
38 415 205 649 NP NP NP CS–2 S4, T5, W13
39 415 205 649 371 649 NP CS–2 S4, T5
40 415 205 649 NP NP NP CS–2 S4, T5
41 415 205 649 371 649 NP CS–2 S4, T5
42 415 240 649 371 649 NP CS–2 S4, T4
43 415 240 NP 149 (Cl. 3 only) NP NP CS–2 G27, W10, W12
44 415 240 NP 371 NP NP CS–2 G26, W10, W12
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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38
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
40 65 100 125 150 200 250 300 325 350 375 400 425 450 475
1 108 107 106 105 104 104 104 104 104 104 104 104 104 104 102
2 108 107 106 105 104 104 104 104 104 104 104 … … … …
3 118 117 116 115 114 112 109 106 104 103 102 … … … …
4 118 118 115 114 114 114 114 113 112 110 109 107 106 103 101
5 118 117 116 114 114 114 114 113 112 110 109 107 106 103 101
6 118 117 116 114 114 114 114 113 112 110 109 107 106 103 101
7 100 100 98.2 97.0 96.5 96.5 96.5 95.8 94.7 93.4 92.2 91.0 89.7 87.9 85.7
8 118 118 115 114 114 114 114 113 112 110 109 107 106 103 101
9 118 117 116 114 114 114 114 113 112 110 109 107 106 103 101
10 118 117 116 114 114 114 114 113 112 110 109 107 106 103 101
11 120 120 118 116 115 114 114 114 114 114 114 114 114 113 110
12 120 120 117 116 116 116 115 115 115 115 115 115 115 115 112
13 123 123 120 119 118 118 118 118 118 118 118 118 118 118 116
14 126 126 123 122 121 121 118 115 114 112 111 109 107 105 103
15 126 126 124 122 121 120 120 120 120 120 120 120 120 120 117
16 126 126 123 122 121 121 121 121 121 121 121 121 121 120 119
17 126 126 124 122 121 120 120 120 120 120 120 120 120 120 117
18 126 126 126 126 126 126 126 126 126 126 126 126 126 123 118
19 126 126 124 122 121 120 120 120 120 120 120 120 120 120 117
20 126 126 126 126 126 126 126 126 126 126 126 126 126 123 118
21 126 126 124 122 121 120 120 120 120 120 120 120 120 120 117
22 128 128 125 124 123 123 123 123 123 123 123 123 123 123 123
23 128 127 125 124 123 123 123 123 123 123 123 … … … …
24 129 129 126 125 124 124 124 123 123 123 123 123 123 123 121
25 129 129 126 125 124 124 124 123 123 123 123 123 123 123 121
26 129 129 126 125 124 124 124 123 123 123 123 123 123 123 121
27 129 129 126 125 124 124 124 123 123 123 123 123 123 123 121
28 138 137 135 133 132 132 132 132 132 132 132 132 132 129 125
29 138 138 134 133 132 132 132 132 132 132 132 132 132 129 125
30 118 118 118 118 118 116 112 109 108 106 … … … … …
31 138 138 138 138 138 138 138 138 138 138 138 136 133 130 105
32 138 138 138 138 138 138 138 138 138 138 138 … … … …
33 138 138 138 138 138 138 138 138 138 138 138 138 138 135 107
34 118 118 118 118 118 116 112 109 108 106 104 102 99.5 96.9 94.7
35 118 118 118 118 118 116 112 109 108 106 104 102 99.5 96.9 94.7
36 118 118 118 118 118 116 112 109 108 106 104 102 99.5 96.9 94.7
37 100 100 100 100 100 98.8 95.8 92.5 91.3 89.8 88.0 86.8 84.3 82.3 80.7
38 118 118 118 118 118 116 112 109 108 106 104 102 99.5 96.9 94.7
39 118 118 118 118 118 116 112 109 108 106 104 102 99.5 96.9 94.7
40 118 118 118 118 118 116 112 109 108 106 104 102 99.5 96.9 94.7
41 118 118 118 118 118 116 112 109 108 106 104 102 99.5 96.9 94.7
42 118 118 118 118 118 118 118 118 118 118 118 118 116 114 101
43 118 118 118 118 118 … … … … … … … … … …
44 118 118 118 118 118 118 118 118 118 118 118 … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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39
ASME BPVC.II.D.M-2019
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
500 525 550 575 600 625 650 675 700 725 750 775 800 825 850 875 900
1 88.8 61.7 40.3 26.4 17.3 11.7 7.40 … … … … … … … … … …
2 … … … … … … … … … … … … … … … … …
3 … … … … … … … … … … … … … … … … …
4 88.3 61.9 40.3 26.4 17.3 11.7 7.40 … … … … … … … … … …
5 88.3 61.9 40.3 26.4 17.3 11.7 7.40 … … … … … … … … … …
6 88.3 61.9 40.3 26.4 17.3 11.7 7.40 … … … … … … … … … …
7 72.9 53.2 33.7 22.5 14.8 9.71 6.34 … … … … … … … … … …
8 88.3 61.9 40.3 26.4 17.3 11.7 7.40 … … … … … … … … … …
9 88.3 61.9 40.3 26.4 17.3 11.7 7.40 … … … … … … … … … …
10 88.3 61.9 40.3 26.4 17.3 11.7 7.40 … … … … … … … … … …
11 97.2 59.3 41.0 26.2 17.3 11.7 7.40 … … … … … … … … … …
12 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
13 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
14 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
1597.2 59.3 41.0 26.2 17.3 11.7 7.40 … … … … … … … … … …
16 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
17 97.2 59.3 41.0 26.2 17.3 11.7 7.40 … … … … … … … … … …
18 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
19 97.2 59.3 41.0 26.2 17.3 11.7 7.40 … … … … … … … … … …
20 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
21 97.2 59.3 41.0 26.2 17.3 11.7 7.40 … … … … … … … … … …
22 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
23 … … … … … … … … … … … … … … … … …
24 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
25 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
26 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
27 94.4 60.2 40.8 26.3 17.3 11.7 7.40 … … … … … … … … … …
28 97.2 59.3 41.0 26.2 17.3 11.7 7.40 … … … … … … … … … …
29 97.2 59.3 41.0 26.2 17.3 11.7 7.40 … … … … … … … … … …
30 … … … … … … … … … … … … … … … … …
31 73.3 52.1 36.4 25.2 17.6 … … … … … … … … … … … …
32 … … … … … … … … … … … … … … … … …
33 72.9 52.3 36.3 25.2 17.6 12.4 8.08 … … … … … … … … … …
34 72.9 51.0 36.7 25.1 17.6 12.4 8.08 … … … … … … … … … …
35 72.9 51.0 36.7 25.1 17.6 12.4 8.08 … … … … … … … … … …
36 72.9 51.0 36.7 25.1 17.6 12.4 8.08 … … … … … … … … … …
37 62.8 43.5 31.5 21.5 15.0 10.4 6.73 … … … … … … … … … …
38 72.9 51.0 36.7 25.1 17.6 12.4 8.08 … … … … … … … … … …
39 72.9 51.0 36.7 25.1 17.6 12.4 8.08 … … … … … … … … … …
40 72.9 51.0 36.7 25.1 17.6 12.4 8.08 … … … … … … … … … …
41 72.9 51.0 36.7 25.1 17.6 12.4 8.08 … … … … … … … … … …
42 72.9 51.7 36.5 25.2 17.6 12.4 8.08 … … … … … … … … … …
43 … … … … … … … … … … … … … … … … …
44 … … … … … … … … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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40
ASME BPVC.II.D.M-2019
ð19Þ
ð19Þ
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#
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Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 11/4Cr–
1/2Mo–Si Forgings SA–182 F11 K11572 2 … 4 1
2 11/4Cr–
1/2Mo–Si Forgings SA–336 F11 K11572 2 … 4 1
3 11/4Cr–
1/2Mo–Si Forgings SA–336 F11 K11572 3 … 4 1
4 11/4Cr–
1/2Mo–Si Plate SA–387 11 K11789 2 … 4 1
5 11/4Cr–
1/2Mo–Si Wld. pipe SA–691 1
1/4CR K11789 … … 4 1
6 13/4Cr–
1/2Mo–Cu Forgings SA–592 E K11695 … 65 < t ≤ 100 11B 2
7 13/4Cr–
1/2Mo–Cu Forgings SA–592 E K11695 … ≤65 11B 2
8 13/4Cr–
1/2Mo–Ti Plate SA–517 E K21604 … 65 < t ≤150 11B 2
9 13/4Cr–
1/2Mo–Ti Plate SA–517 E K21604 … ≤65 11B 2
10 21/4Cr–1Mo Forgings SA–182 F22 K21590 1 … 5A 1
11 21/4Cr–1Mo Smls. tube SA–213 T22 K21590 … … 5A 1
12 21/4Cr–1Mo Smls. & wld. fittings SA–234 WP22 K21590 1 … 5A 1
13 21/4Cr–1Mo Wld. tube SA–250 T22 K21590 … … 5A 1
14 21/4Cr–1Mo Wld. tube SA–250 T22S1 K21590 … … 5A 1
15 21/4Cr–1Mo Smls. pipe SA–335 P22 K21590 … … 5A 1
16 21/4Cr–1Mo Forgings SA–336 F22 K21590 1 … 5A 1
17 21/4Cr–1Mo Forged pipe SA–369 FP22 K21590 … … 5A 1
18 21/4Cr–1Mo Plate SA–387 22 K21590 1 … 5A 1
19 21/4Cr–1Mo Wld. pipe SA–691 2
1/4CR K21590 … … 5A 1
20 21/4Cr–1Mo Plate SA/EN 10028–2 10CrMo9–10 … … 150 < t ≤ 250 5A 1
21 21/4Cr–1Mo Forgings SA/EN 10222–2 11CrMo9–10 … NT or QT 200 < t ≤ 500 5A 1
22 21/4Cr–1Mo Plate SA/EN 10028–2 10CrMo9–10 … … 100 < t ≤ 150 5A 1
23 21/4Cr–1Mo Plate SA/EN 10028–2 10CrMo9–10 … … 60 < t ≤ 100 5A 1
24 21/4Cr–1Mo Smls. tube SA/EN 10216–2 10CrMo9–10 … … 40 < t ≤ 60 5A 1
25 21/4Cr–1Mo Smls. tube SA/EN 10216–2 10CrMo9–10 … … t ≤ 40 5A 1
26 21/4Cr–1Mo Plate SA/EN 10028–2 10CrMo9–10 … … t ≤ 60 5A 1
27 21/4Cr–1Mo Castings SA–217 WC9 J21890 … … 5A 1
28 21/4Cr–1Mo Cast pipe SA–426 CP22 J21890 … … 5A 1
29 21/4Cr–1Mo Forgings SA–182 F22 K21590 3 … 5A 1
30 21/4Cr–1Mo Forgings SA–336 F22 K21590 3 … 5A 1
31 21/4Cr–1Mo Plate SA–387 22 K21590 2 … 5A 1
32 21/4Cr–1Mo Wld. pipe SA–691 2
1/4CR K21590 … … 5A 1
33 21/4Cr–1Mo Bar SA–739 B22 K21390 … … 5A 1
34 21/4Cr–1Mo Forgings SA/EN 10222–2 11CrMo9–10 … NT t ≤ 200 5A 1
35 21/4Cr–1Mo Castings SA–487 8 J22091 A … 5C 1
36 21/4Cr–1Mo Forgings SA–508 22 K21590 3 … 5C 1
37 21/4Cr–1Mo Forgings SA–541 22 K21390 3 … 5C 1
38 21/4Cr–1Mo Plate SA–542 B K21590 4 … 5C 1
39 21/4Cr–1Mo–V Forgings SA–182 F22V K31835 … … 5C 1
40 21/4Cr–1Mo–V Forgings SA–336 F22V K31835 … … 5C 1
41 21/4Cr–1Mo–V Forgings SA–541 22V K31835 … … 5C 1
42 21/4Cr–1Mo–V Plate SA–542 D K31835 4a … 5C 1
43 21/4Cr–1Mo–V Plate SA–832 22V K31835 … … 5C 1
44 3Cr–1Mo Smls. tube SA–213 T21 K31545 … … 5A 1
45 3Cr–1Mo Smls. pipe SA–335 P21 K31545 … … 5A 1
46 3Cr–1Mo Forgings SA–336 F21 K31545 1 … 5A 1
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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41
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 485 275 649 371 649 NP CS–2 S4, T4
2 485 275 649 NP 649 NP CS–2 S4, T4
3 515 310 NP NP 649 NP CS–3 T3
4 515 310 649 371 649 NP CS–3 S4, T3
5 515 310 NP 371 NP NP CS–3 G26, W10, W12
6 725 620 NP 343 (SPT) 343 343 CS–5 S7
7 795 690 NP NP 343 343 HT–1 …
8 725 620 NP 371 (Cl. MC & SPT) 343 343 CS–5 …
9 795 690 NP 371 (Cl. MC & SPT) 343 343 HT–1 …
10 415 205 649 371 649 NP CS–2 S4, T4, W7, W9
11 415 205 649 371 649 NP CS–2 S4, T4, W7, W9
12 415 205 649 371 649 NP CS–2 S4, T4, W7, W9, W14
13 415 205 649 NP NP NP CS–2 G3, S4, T4, W9
14 415 205 649 NP NP NP CS–2 S4, T4, W9, W13
15 415 205 649 371 649 NP CS–2 S4, T4, W7, W9
16 415 205 649 371 649 NP CS–2 S4, T4, W7, W9
17 415 205 649 371 649 NP CS–2 S4, T4, W7, W9
18 415 205 649 371 649 NP CS–2 S4, T4, W7, W9
19 415 205 NP 371 NP NP CS–2 G26, W10, W12
20 450 250 593 NP 593 NP CS–3 S4, T4, W7, W9
21 450 265 649 NP 649 NP CS–3 S4, T4, W7, W9
22 460 260 593 NP 593 NP CS–3 S4, T4, W7, W9
23 470 280 593 NP 593 NP CS–3 S4, T4, W7, W9
24 480 270 649 NP 649 NP CS–2 T4, W7, W9
25 480 280 649 NP 649 NP CS–2 T4, W7, W9
26 480 … 593 NP 593 NP CS–3 G18, S4, T4, W7, W9
27 485 275 649 371 649 NP CS–2 G1, G17, S4, T4, W7, W9
28 485 275 NP 371 NP NP CS–2 G17
29 515 310 649 371 649 NP CS–3 S4, T4, W7, W9
30 515 310 649 371 649 NP CS–3 S4, T4, W7, W9
31 515 310 649 371 649 NP CS–3 S4, T4, W7, W9
32 515 310 NP 371 NP NP CS–3 G26, W10, W12
33 515 310 NP 371 649 NP CS–3 T4, W7
34 520 310 649 NP 649 NP CS–3 S4, T3, W7, W9
35 585 380 NP NP 538 NP CS–3 G1, T4, W7
36 585 380 NP NP 454 NP CS–2 …
37 585 380 NP NP 454 NP CS–2 …
38 585 380 NP NP 454 NP CS–2 …
39 585 415 NP NP 482 NP CS–2 …
40 585 415 NP NP 482 NP CS–2 …
41 585 415 NP NP 482 NP CS–2 …
42 585 415 NP NP 482 NP CS–2 …
43 585 415 NP NP 482 NP CS–2 …
44 415 205 649 371 649 NP CS–2 S4, T3
45 415 205 649 371 649 NP CS–2 S4, T3
46 415 205 649 371 649 NP CS–2 S4, T3
CopyrightASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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42
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
40 65 100 125 150 200 250 300 325 350 375 400 425 450 475
1 138 138 138 138 138 138 138 138 138 138 138 136 133 130 105
2 138 138 138 138 138 138 138 138 138 138 138 136 133 130 105
3 148 148 148 148 148 148 148 148 148 148 148 148 148 143 107
4 148 148 148 148 148 148 148 148 148 148 148 148 148 143 107
5 148 148 148 148 148 148 148 148 148 148 148 … … … …
6 207 207 207 207 207 207 207 207 207 207 … … … … …
7 227 227 227 227 227 227 227 227 227 227 … … … … …
8 207 207 207 207 207 207 207 207 207 207 206 … … … …
9 227 227 227 227 227 227 227 227 227 227 221 … … … …
10 118 118 118 116 114 114 114 114 114 114 114 114 114 114 100
11 118 118 118 116 114 114 114 114 114 114 114 114 114 114 100
12 118 118 118 116 114 114 114 114 114 114 114 114 114 114 100
13 100 100 99.8 98.3 97.2 97.2 97.2 97.2 97.2 97.2 97.2 97.2 97.2 97.2 85.5
14 118 118 118 116 114 114 114 114 114 114 114 114 114 114 100
15 118 118 118 116 114 114 114 114 114 114 114 114 114 114 100
16 118 118 118 116 114 114 114 114 114 114 114 114 114 114 100
17 118 118 118 116 114 114 114 114 114 114 114 114 114 114 100
18 118 118 118 116 114 114 114 114 114 114 114 114 114 114 100
19 118 118 118 116 114 114 114 114 114 114 114 … … … …
20 129 129 128 126 125 124 123 123 122 121 120 118 116 113 109
21 129 129 129 128 126 124 124 123 123 122 121 119 116 113 109
22 131 131 131 129 128 127 126 125 125 124 123 121 119 116 112
23 134 134 134 132 131 129 129 128 127 127 125 123 121 118 114
24 137 137 137 137 135 133 132 132 132 131 129 126 123 119 113
25 137 137 137 137 135 133 132 132 132 131 129 126 123 119 113
26 137 137 137 135 133 132 132 131 130 129 128 126 124 121 117
27 138 138 138 137 136 134 133 133 132 131 129 127 124 119 113
28 138 138 138 137 136 134 133 133 132 131 129 … … … …
29 148 148 147 146 144 142 141 141 140 139 138 136 133 130 116
30 148 148 147 146 144 142 141 141 140 139 138 136 133 130 116
31 148 148 147 146 144 142 141 141 140 139 138 136 133 130 116
32 148 148 147 146 144 142 141 141 140 139 138 … … … …
33 148 148 147 146 144 142 141 141 140 139 138 136 133 130 116
34 149 149 149 148 146 143 143 142 142 141 139 137 135 131 116
35 168 168 167 165 163 162 162 161 160 160 157 154 150 145 120
36 168 168 168 168 168 168 165 161 160 159 158 156 151 142 133
37 168 168 168 168 168 168 165 161 160 159 158 156 151 142 133
38 168 168 168 168 168 168 165 161 160 159 158 156 151 142 133
39 168 168 168 168 168 168 168 165 162 159 157 153 149 145 141
40 168 168 168 168 168 168 168 165 162 159 157 153 149 145 141
41 168 168 168 168 168 168 168 165 162 159 157 153 149 145 141
42 168 168 168 168 168 168 168 165 162 159 157 153 149 145 141
43 168 168 168 168 168 168 168 165 162 159 157 153 149 145 141
44 118 118 118 116 114 114 114 114 114 114 114 114 114 113 90.5
45 118 118 118 116 114 114 114 114 114 114 114 114 114 113 90.5
46 118 118 118 116 114 114 114 114 114 114 114 114 114 113 90.5
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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43
ASME BPVC.II.D.M-2019
ð19Þ
ð19Þ
#
#
#
#
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
500 525 550 575 600 625 650 675 700 725 750 775 800 825 850 875 900
1 72.9 52.1 36.4 25.2 17.6 12.4 8.08 … … … … … … … … … …
2 72.9 52.1 36.4 25.2 17.6 12.4 8.08 … … … … … … … … … …
3 72.9 52.3 36.3 25.2 17.6 12.4 8.08 … … … … … … … … … …
4 72.9 52.3 36.3 25.2 17.6 12.4 8.08 … … … … … … … … … …
5 … … … … … … … … … … … … … … … … …
6 … … … … … … … … … … … … … … … … …
7 … … … … … … … … … … … … … … … … …
8 … … … … … … … … … … … … … … … … …
9 … … … … … … … … … … … … … … … … …
10 80.9 64.0 47.7 34.5 23.5 15.5 9.39 … … … … … … … … … …
11 80.9 64.0 47.7 34.5 23.5 15.5 9.39 … … … … … … … … … …
12 80.9 64.0 47.7 34.5 23.5 15.5 9.39 … … … … … … … … … …
13 69.0 54.5 40.4 29.1 19.8 12.9 8.06 … … … … … … … … … …
14 80.9 64.0 47.7 34.5 23.5 15.5 9.39 … … … … … … … … … …
15 80.9 64.0 47.7 34.5 23.5 15.5 9.39 … … … … … … … … … …
16 80.9 64.0 47.7 34.5 23.5 15.5 9.39 … … … … … … … … … …
17 80.9 64.0 47.7 34.5 23.5 15.5 9.39 … … … … … … … … … …
18 80.9 64.0 47.7 34.5 23.5 15.5 9.39 … … … … … … … … … …
19 … … … … … … … … … … … … … … … … …
20 88.4 64.0 44.6 30.0 19.7 … … … … … … … … … … … …
21 89.4 64.3 44.9 30.1 19.7 12.9 8.06 … … … … … … … … … …
22 88.4 64.0 44.6 30.0 19.7 … … … … … … … … … … … …
23 88.4 64.0 44.6 30.0 19.7 … … … … … … … … … … … …
24 89.4 64.3 44.9 30.1 19.7 12.9 8.06 … … … … … … … … … …
25 89.4 64.3 44.9 30.1 19.7 12.9 8.06 … … … … … … … … … …
26 88.4 64.0 44.6 30.0 19.7 … … … … … … … … … … … …
27 90.4 64.0 45.0 30.1 19.7 12.9 8.06 … … … … … … … … … …
28 … … … … … … … … … … … … … … … … …
29 89.4 64.3 44.9 30.1 19.7 12.9 8.06 … … … … … … … … … …
30 89.4 64.3 44.9 30.1 19.7 12.9 8.06 … … … … … … … … … …
31 89.4 64.3 44.9 30.1 19.7 12.9 8.06 … … … … … … … … … …
32 … … … … … … … … … … … … … … … … …
33 89.4 64.3 44.9 30.1 19.7 12.9 8.06 … … … … … … … … … …
34 89.4 64.3 44.9 30.1 19.7 12.9 8.06 … … … … … … … … … …
35 88.1 65.1 42.9 … … … … … … … … … … … … … …
36 … … … … … … … … … … … … … … … … …
37 … … … … … … … … … … … … … … … … …
38 … … … … … … … … … … … … … … … … …
39 137 … … … … … … … … … … … … … … … …
40 137 … … … … … … … … … … … … … … … …
41 137 … … … … … … … … … … … … … … … …
42 137 … … … … … … … … … … … … … … … …
43 137 … … … … … … … … … … … … … … … …
44 68.2 54.1 43.5 34.4 25.3 17.4 10.0 … … … … … … … … … …
45 68.2 54.1 43.5 34.4 25.3 17.4 10.0 … … … … … … … … … …
46 68.2 54.1 43.5 34.4 25.3 17.4 10.0 … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
--`,``,``,,`,`,,````,`,``,,,`-`-`,,`,,`,`,,`---
44
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 3Cr–1Mo Forged pipe SA–369 FP21 K31545 … … 5A 1
2 3Cr–1Mo Plate SA–387 21 K31545 1 … 5A 1
3 3Cr–1Mo Cast pipe SA–426 CP21 J31545 … … 5A 1
4 3Cr–1Mo Forgings SA–182 F21 K31545 … … 5A 1
5 3Cr–1Mo Forgings SA–336 F21 K31545 3 … 5A 1
6 3Cr–1Mo Plate SA–38721 K31545 2 … 5A 1
7 3Cr–1Mo–1/4V–Ti–B Forgings SA–182 F3V K31830 … … 5C 1
8 3Cr–1Mo–1/4V–Ti–B Forgings SA–336 F3V K31830 … … 5C 1
9 3Cr–1Mo–1/4V–Ti–B Forgings SA–508 3V K31830 … … 5C 1
10 3Cr–1Mo–1/4V–Ti–B Forgings SA–541 3V K31830 … … 5C 1
11 3Cr–1Mo–1/4V–Ti–B Plate SA–542 C K31830 4a … 5C 1
12 3Cr–1Mo–1/4V–Ti–B Plate SA–832 21V K31830 … … 5C 1
13 3Cr–1Mo–1/4V–Cb–Ca Forgings SA–182 F3VCb … … … 5C 1
14 3Cr–1Mo–1/4V–Cb–Ca Forgings SA–336 F3VCb … … … 5C 1
15 3Cr–1Mo–1/4V–Cb–Ca Forgings SA–508 3VCb … … … 5C 1
16 3Cr–1Mo–1/4V–Cb–Ca Forgings SA–541 3VCb … … … 5C 1
17 3Cr–1Mo–1/4V–Cb–Ca Plate SA–542 E … 4a … 5C 1
18 3Cr–1Mo–1/4V–Cb–Ca Plate SA–832 23V … … … 5C 1
19 5Cr–1/2Mo Smls. tube SA–213 T5 K41545 … … 5B 1
20 5Cr–1/2Mo Smls. & wld. fittings SA–234 WP5 K41545 … … 5B 1
21 5Cr–1/2Mo Smls. pipe SA–335 P5 K41545 … … 5B 1
22 5Cr–1/2Mo Forged pipe SA–369 FP5 K41545 … … 5B 1
23 5Cr–1/2Mo Plate SA–387 5 K41545 1 … 5B 1
24 5Cr–1/2Mo Wld. pipe SA–691 5CR K41545 … … 5B 1
25 5Cr–1/2Mo Forgings SA–336 F5 K41545 … … 5B 1
26 5Cr–1/2Mo Forgings SA–182 F5 K41545 … … 5B 1
27 5Cr–1/2Mo Plate SA–387 5 K41545 2 … 5B 1
28 5Cr–1/2Mo Forgings SA–336 F5A K42544 … … 5B 1
29 5Cr–1/2Mo Castings SA–217 C5 J42045 … … 5B 1
30 5Cr–1/2Mo Cast pipe SA–426 CP5 J42045 … … 5B 1
31 5Cr–1/2Mo Forgings SA–182 F5a K42544 … … 5B 1
32 5Cr–1/2Mo–Si Smls. tube SA–213 T5b K51545 … … 5B 1
33 5Cr–1/2Mo–Si Smls. pipe SA–335 P5b K51545 … … 5B 1
34 5Cr–1/2Mo–Ti Smls. tube SA–213 T5c K41245 … … 5B 1
35 5Cr–1/2Mo–Ti Smls. pipe SA–335 P5c K41245 … … 5B 1
36 9Cr–1Mo Smls. tube SA–213 T9 K90941 … … 5B 1
37 9Cr–1Mo Fittings SA–234 WP9 K90941 … … 5B 1
38 9Cr–1Mo Smls. pipe SA–335 P9 K90941 … … 5B 1
39 9Cr–1Mo Forged pipe SA–369 FP9 K90941 … … 5B 1
40 9Cr–1Mo Forgings SA–182 F9 K90941 … … 5B 1
41 9Cr–1Mo Forgings SA–336 F9 K90941 … … 5B 1
42 9Cr–1Mo Castings SA–217 C12 J82090 … … 5B 1
43 9Cr–1Mo Cast pipe SA–426 CP9 J82090 … … 5B 1
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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45
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 415 205 649 371 649 NP CS–2 S4, T3
2 415 205 649 371 649 NP CS–2 S4, T3
3 415 205 NP 371 NP NP CS–2 G17
4 515 310 649 371 649 NP CS–3 S4, T3
5 515 310 649 371 649 NP CS–3 S4, T3
6 515 310 649 371 649 NP CS–3 S4, T3
7 585 415 NP NP 482 NP CS–3 …
8 585 415 NP NP 482 NP CS–3 …
9 585 415 NP NP 482 NP CS–3 …
10 585 415 NP NP 482 NP CS–3 …
11 585 415 NP NP 482 NP CS–3 …
12 585 415 NP NP 482 NP CS–3 …
13 585 415 NP NP 482 NP CS–3 …
14 585 415 NP NP 482 NP CS–3 …
15 585 415 NP NP 482 NP CS–3 …
16 585 415 NP NP 482 NP CS–3 …
17 585 415 NP NP 482 NP CS–3 …
18 585 415 NP NP 482 NP CS–3 …
19 415 205 649 371 649 NP CS–2 T4
20 415 205 649 371 649 NP CS–2 T4, W14
21 415 205 649 371 649 NP CS–2 T4
22 415 205 649 371 649 NP CS–2 T4
23 415 205 649 371 649 NP CS–2 T4
24 415 205 NP 371 NP NP CS–2 G26, W10, W12
25 415 250 649 NP 649 NP CS–2 T4
26 485 275 649 371 649 NP CS–2 T3
27 515 310 NP 371 649 NP CS–3 T3
28 550 345 649 NP 649 NP CS–3 T3
29 620 415 649 371 649 NP CS–3 G1, G17, T3
30 620 415 NP 371 NP NP CS–3 G17
31 620 450 649 NP 649 NP CS–5 T3
32 415 205 649 NP 649 NP CS–2 T4
33 415 205 649 NP 649 NP CS–2 T4
34 415 205 649 NP 649 NP CS–2 T4
35 415 205 649 NP 649 NP CS–2 T4
36 415 205 649 371 649 NP CS–2 T5
37 415 205 649 NP 649 NP CS–2 T5
38 415 205 649 371 649 NP CS–2 T5
39 415 205 649 371 649 NP CS–2 T5
40 585 380 649 NP 649 NP CS–3 T4
41 585 380 NP NP 649 NP CS–3 T4
42 620 415 649 371 (SPT) 649 NP CS–3 G1, T4
43 620 415 NP 371 NP NP CS–3 G17
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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46
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
40 65 100 125 150 200 250 300 325 350 375 400 425 450 475
1 118 118 118 116 114 114 114 114 114 114 114 114 114 113 90.5
2 118 118 118 116 114 114 114 114 114 114 114 114 114 113 90.5
3 118 118 118 116 114 114 114 114 114 114 114 … … … …
4 148 148 147 146 144 142 141 141 140 139 138 136 133 127 100
5 148 148 147 146 144 142 141 141 140 139 138 136 133 127 100
6 148 148 147 146 144 142 141 141 140 139 138 136 133 127 100
7 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
8 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
9 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
10 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
11 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
12 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
13 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
14 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
15 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
16 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
17 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
18 168 168 167 164 161 156 154 151 150 149 147 145 144 141 139
19 118 118 118 116 114 114 113 112 111 109 107 104 100 96.1 81.4
20 118 118 118 116 114 114 113 112 111 109 107 104 100 96.1 81.4
21 118 118 118 116 114 114 113 112 111 109 107 104 100 96.1 81.4
22 118 118 118 116 114 114 113 112 111 109 107 104 100 96.1 81.4
23 118 118 118 116 114 114 113 112 111 109 107 104 100 96.1 81.4
24 118 118 118 116 114 114 113 112 111 109 107 … … … …
25 118 118 118 116 114 114 113 112 111 109 107 104 100 96.1 81.4
26 138 138 138 136 134 132 132 131 130 128 125 121 118 102 81.1
27 148 148 147 146 143 142 142 140 139 137 134 130 126 104 80.5
28 158 158 157 154 152 152 151 150 148 146 143 139 133 104 80.3
29 177 177 177 174 172 170 170 169 167 164 161 156 134 103 80.6
30 177 177 177 174 172 170 170 169 167 164 161 … … … …
31 177 177 177 174 172 170 170 169 167 164 161 156 134 103 80.6
32 118 118 118 116 114 114 113 112 111 109 107 104 100 96.1 81.4
33 118 118 118 116 114 114 113 112 111 109 107 104 100 96.1 81.4
34 118 118 118 116 114 114 113 112 111 109 107 104 100 96.1 81.4
35 118 118 118 116 114 114 113 112 111 109 107 104 100 96.1 81.4
36 118 118 118 116 114 114 113 112 111 109 107 104 100 95.8 91.8
37 118 118 118 116 114 114 113 112 111 109 107 104 100 95.8 91.8
38 118 118 118 116 114 114 113 112 111 109 107 104 100 95.8 91.8
39 118 118 118 116 114 114 113 112 111 109 107 104 100 95.8 91.8
40 168 167 166 164 162 161 161 159 157 155 152 147 142 137 121
41 168 167 166 164 162 161 161 159 157 155 152 147 142 137 121
42 177 177 177 174 172 170 170 169 167 164 161 156 151 145 123
43 177 177 177 174 172 170 170 169 167 164 161 … … ……
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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47
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Maximum Allowable Stress, MPa (Multiply by 1000 to Obtain kPa), for Metal Temperature, °C, Not Exceeding
500 525 550 575 600 625 650 675 700 725 750 775 800 825 850 875 900
1 68.2 54.1 43.5 34.4 25.3 17.4 10.0 … … … … … … … … … …
2 68.2 54.1 43.5 34.4 25.3 17.4 10.0 … … … … … … … … … …
3 … … … … … … … … … … … … … … … … …
4 72.8 54.9 40.7 29.4 20.4 15.7 8.64 … … … … … … … … … …
5 72.8 54.9 40.7 29.4 20.4 15.7 8.64 … … … … … … … … … …
6 72.8 54.9 40.7 29.4 20.4 15.7 8.64 … … … … … … … … … …
7 136 … … … … … … … … … … … … … … … …
8 136 … … … … … … … … … … … … … … … …
9 136 … … … … … … … … … … … … … … … …
10 136 … … … … … … … … … … … … … … … …
11 136 … … … … … … … … … … … … … … … …
12 136 … … … … … … … … … … … … … … … …
13 136 … … … … … … … … … … … … … … … …
14 136 … … … … … … … … … … … … … … … …
15 136 … … … … … … … … … … … … … … … …
16 136 … … … … … … … … … … … … … … … …
17 136 … … … … … … … … … … … … … … … …
18 136 … … … … … … … … … … … … … … … …
19 61.7 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
20 61.7 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
21 61.7 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
22 61.7 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
23 61.7 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
24 … … … … … … … … … … … … … … … … …
25 61.7 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
26 61.8 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
27 62.0 46.3 34.8 25.8 18.0 11.5 6.68 … … … … … … … … … …
28 62.1 46.3 34.8 25.8 18.0 11.5 6.68 … … … … … … … … … …
29 62.0 46.3 34.8 25.8 18.0 11.5 6.68 … … … … … … … … … …
30 … … … … … … … … … … … … … … … … …
31 62.0 46.3 34.8 25.8 18.0 11.5 6.68 … … … … … … … … … …
32 61.7 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
33 61.7 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
34 61.7 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
35 61.7 46.4 34.7 25.8 18.0 11.5 6.68 … … … … … … … … … …
36 80.3 61.0 42.9 30.0 20.6 14.4 10.2 … … … … … … … … … …
37 80.3 61.0 42.9 30.0 20.6 14.4 10.2 … … … … … … … … … …
38 80.3 61.0 42.9 30.0 20.6 14.4 10.2 … … … … … … … … … …
39 80.3 61.0 42.9 30.0 20.6 14.4 10.2 … … … … … … … … … …
40 89.0 60.7 43.1 30.0 20.6 14.4 10.2 … … … … … … … … … …
41 89.0 60.7 43.1 30.0 20.6 14.4 10.2 … … … … … … … … … …
42 88.2 61.0 43.0 30.0 20.6 14.4 10.2 … … … … … … … … … …
43 … … … … … … … … … … … … … … … … …
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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48
ASME BPVC.II.D.M-2019
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
ð19Þ
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No. Nominal Composition Product Form Spec. No. Type/Grade
Alloy
Desig./
UNS
No.
Class/
Condition/
Temper
Size/
Thickness,
mm P-No.
Group
No.
1 9Cr–1Mo–V Smls. tube SA–213 T91 K90901 … … 15E 1
2 … … … … … … … … …
3 9Cr–1Mo–V Fittings SA–234 WP91 K90901 … … 15E 1
4 … … … … … … … … …
5 9Cr–1Mo–V Smls. pipe SA–335 P91 K90901 … t ≤ 75 15E 1
6 9Cr–1Mo–V Smls. pipe SA–335 P91 K90901 … t > 75 15E 1
7 … … … … … … … … …
8 9Cr–1Mo–V Forged pipe SA–369 FP91 K90901 … … 15E 1
9 … … … … … … … … …
10 9Cr–1Mo–V Plate SA–387 91 K90901 2 t ≤ 75 15E 1
11 9Cr–1Mo–V Plate SA–387 91 K90901 2 t > 75 15E 1
12 9Cr–1Mo–V Forgings SA–182 F91 K90901 … t ≤ 75 15E 1
13 9Cr–1Mo–V Forgings SA–182 F91 K90901 … t > 75 15E 1
14 9Cr–1Mo–V Forgings SA–336 F91 K90901 … … 15E 1
15 11Cr–Ti Plate SA–240 … S40910 … … 7 1
16 11Cr–Ti Plate SA–240 … S40920 … … 7 1
17 11Cr–Ti Plate SA–240 … S40930 … … 7 1
18 11Cr–Ti Wld. tube SA–268 TP409 S40900 … … 7 1
19 11Cr–Ti Smls. tube SA–268 TP409 S40900 … … 7 1
20 12Cr Plate SA–1010 40 S41003 … t ≤ 19 7 1
21 12Cr Bar SA–479 403 S40300 A … 6 1
22 12Cr Bar SA–479 403 S40300 1 … 6 1
23 12Cr Plate SA–1010 50 S41003 … t ≤ 19 7 1
24 12Cr–Al Bar SA/JIS G4303 SUS405 … … … 7 1
25 12Cr–Al Plate SA–240 405 S40500 … … 7 1
26 12Cr–Al Plate SA–240 405 S40500 … … 7 1
27 12Cr–Al Bar SA–479 405 S40500 … … 7 1
28 12Cr–Al Smls. & wld. tube SA–268 TP405 S40500 … … 7 1
29 12Cr–Al Wld. tube SA–268 TP405 S40500 … … 7 1
30 12Cr–Ti Wld. tube SA–268 … S40800 … … 7 1
31 12Cr–Ti Smls. tube SA–268 … S40800 … … 7 1
32 13Cr Plate SA–240 410S S41008 … … 7 1
33 13Cr Smls. & wld. tube SA–268 TP410 S41000 … … 6 1
34 13Cr Wld. tube SA–268 TP410 S41000 … … 6 1
35 13Cr Plate SA–240 410 S41000 … … 6 1
36 13Cr Forgings SA–182 F6a S41000 1 … 6 1
37 13Cr Bar SA–479 410 S41000 … … 6 1
38 13Cr Bar SA–479 410 S41000 A … 6 1
39 13Cr Bar SA–479 410 S41000 1 … 6 1
40 13Cr Forgings SA–182 F6a S41000 2 … 6 3
41 13Cr Castings SA–217 CA15 J91150 … … 6 3
42 13Cr Cast pipe SA–426 CPCA15 J91150 … … 6 3
43 13Cr Bar SA/EN 10088–3 X12Cr13 … QT650 t ≤ 160 … …
44 13Cr–4Ni Castings SA–487 CA6NM J91540 A … 6 4
45 13Cr–4Ni Forgings SA–182 F6NM S41500 … … 6 4
Copyright ASME International (BPVC) 
Provided by IHS under license with ASME Licensee=Khalda Petroleum/5986215001, User=Amer, Mohamed
Not for Resale, 07/02/2019 13:25:04 MDTNo reproduction or networking permitted without license from IHS
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49
ASME BPVC.II.D.M-2019
Table 1A (Cont'd)
Section I; Section III, Classes 2 and 3;* Section VIII, Division 1; and Section XII
Maximum Allowable Stress Values, S, for Ferrous Materials
(*See Maximum Temperature Limits for Restrictions on Class)
Line
No.
Min.
Tensile
Strength,
MPa
Min.
Yield
Strength,
MPa
Applicability and Max. Temperature Limits
(NP = Not Permitted)
(SPT = Supports Only)
External
Pressure
Chart No. NotesI III VIII-1 XII
1 585 415 649 371 649 NP CS–3 T6
2 … … … … … … … …
3 585 415 649 NP NP NP CS–3 T6
4 … … … … … … … …
5 585 415 649 371 649 NP CS–3 T6
6 585 415 649 NP 649 NP CS–3 T6
7 … … … … … … … …
8 585 415 649 NP NP NP CS–3 T6
9 … … … … … … … …
10 585 415 649 371 649 NP CS–3 T6
11 585 415 649 NP 649 NP CS–3 T6
12 620 415 649 371 649 NP CS–3 T6
13 620 415 649 NP 649 NP CS–3 T6
14 620 415 649 NP 649 NP CS–3 T6
15 380 170 NP NP 427 NP CS–1 …
16 380 170 NP NP 427 NP CS–1 …
17 380 170 NP NP 427 NP CS–1 …
18 380 170 NP NP 427 343 CS–1 G24
19 380 170 NP NP 427 343 CS–1 …
20 455 275 NP NP 316 316 CS–2 …
21 485 275 NP 371 NP NP … …
22 485 275 NP 371 NP NP … …
23 485 345 NP NP 316 316 CS–3 …
24 410 174 NP 371 538 NP CS–1 G19, T5
25 415 170 371 NP 538 343 CS–1 G19, T5
26 415 170 NP 371 NP NP CS–1 G19
27 415 170 NP 371 538 343 CS–1 G19, T5
28 415 205 371 NP 538 343 CS–2 G19, T5, W13, W14
29 415 205 371 NP 538 343 CS–2 G3, G19, G24, T5
30 380 205 NP NP 427 343

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