ASME STP-PT-058-2013 TEMPER BEAD QUALIFICATION HARDNESS ACCEPTANCE CRITERIA《回火焊道条件硬度验收标准》.pdf
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1、STP-PT-058TEMPER BEAD QUALIFICATION HARDNESS ACCEPTANCE CRITERIASTP-PT-058 TEMPER BEAD QUALIFICATION HARDNESS ACCEPTANCE CRITERIA Prepared by: David Abson, Adrienne Barnes and Sayee Raghunathan TWI Ltd Steve Jones Rolls-Royce plc Date of Issuance: June 28, 2013 This document was prepared as an accou
2、nt of work supported by ASME Pressure Technology Codes and Standards (PTCS) through the ASME Standards Technology, LLC (ASME ST-LLC). Neither ASME, ASME ST-LLC, the authors, nor others involved in the preparation or review of this report, nor any of their respective employees, members or persons act
3、ing on their behalf, make any warranty, express or implied, or assumes any legal liability or responsibility for the accuracy, completeness or usefulness of any information, apparatus, product or process disclosed, or represents that its use would not infringe upon privately owned rights. Reference
4、herein to any specific commercial product, process or service by trade name, trademark, manufacturer or otherwise does not necessarily constitute or imply its endorsement, recommendation or favoring by ASME ST-LLC or others involved in the preparation or review of this report, or any agency thereof.
5、 The views and opinions of the authors, contributors and reviewers of the report expressed herein do not necessarily reflect those of ASME ST-LLC or others involved in the preparation or review of this report, or any agency thereof. ASME ST-LLC does not take any position with respect to the validity
6、 of any patent rights asserted in connection with any items mentioned in this document, and does not undertake to insure anyone utilizing a publication against liability for infringement of any applicable Letters Patent, nor assumes any such liability. Users of a publication are expressly advised th
7、at 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 thi
8、s publication. ASME is the registered trademark 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. ASME Standards Technology, LLC Two Park Aven
9、ue, New York, NY 10016-5990 ISBN No. 978-0-7918-6908-6 Copyright 2013 by ASME Standards Technology, LLC All Rights Reserved Temper Bead Qualification Hardness Acceptance Criteria STP-PT-058 iii TABLE OF CONTENTS Foreword . vi Executive Summary . vii PART I . 1 1 INTRODUCTION . 2 2 OVERVIEW OF CONTRO
10、LLED DEPOSITION REPAIR STRATEGIES 4 3 REPAIR USING NEAR-MATCHING WELD METAL 5 4 REPAIR USING NI-BASE WELD METAL 10 5 HAZ HARDNESS . 11 6 RESIDUAL STRESSES 18 7 REPAIR OF SERVICE AND AGED MATERIAL 19 8 CODES AND STANDARDS 20 8.1 Fabrication Specifications, Codes and Standards 20 8.1.1 American Codes
11、and Standards 20 8.1.2 European Codes and Standards 21 9 VARIABLES AFFECTING TEMPER BEAD 22 10 SUMMARY AND CONCLUSIONS 23 References Part I . 24 PART II 29 1 INTRODUCTION . 30 2 EXPERIMENTAL DETAILS . 31 2.1 Parent Steels 31 2.2 Welding Consumables . 31 2.3 Welding Details . 31 2.4 Metallographic Pr
12、eparation and Examination . 33 2.5 Hardness Testing . 33 2.6 Charpy Impact Testing 34 3 RESULTS 36 3.1 Parent Steels 36 3.2 Welding . 38 3.3 Weld Metal Chemical Composition 38 3.4 Metallographic Observations 39 3.5 Hardness Data 49 3.6 Charpy Impact Data . 54 3.7 Investigation of the relationship be
13、tween HAZ hardness and HAZ Charpy Toughness . 58 4 DISCUSSION 62 5 CONCLUSIONS . 64 STP-PT-058 Temper Bead Qualification Hardness Acceptance Criteria iv 6 RECOMMENDATIONS . 65 References Part II . 66 Appendix A “Poor” and “Optimum” welding procedures . 67 Appendix B Hardness Test Records 73 Appendix
14、 C Charpy Test Data . 89 Acknowledgments . 97 Abbreviations and Acronyms . 98 LIST OF TABLES Table 1HAZ Hardness Values Reported in the Literature for Controlled Deposition Repairs C-Mn steel . 12 Table 2HAZ Hardness Values Reported in the Literature for Controlled Deposition Repairs in C-Mn-Ni-Cr-M
15、o and C-Mn-Ni-Cr-Mo Steels 13 Table 3HAZ Hardness Values Reported in the Literature for Controlled Deposition Repairs 0.5%Cr-0.5%Mo-0.25%V Steel 14 Table 4HAZ Hardness Values Reported in the Literature for Controlled Deposition Repairs 1.25%Cr-0.5%Mo Steel 14 Table 5HAZ Hardness Values Reported in t
16、he Literature for Controlled Deposition Repairs 2.25%Cr-1%Mo Steel . 16 Table 6HAZ Hardness Values Reported in the Literature for Controlled Deposition Repairs 9%Cr-1%Mo Steel 17 Table 7Initial Welded Panels for Procedure Development . 32 Table 8Chemical Composition of Parent Steels (determined by T
17、WI) 37 Table 9Welded Panels for Subsequent Study . 38 Table 10Chem ical Composition of Weld Metals 38 Table 11Ha rdness Data for Weldments in P4 Parent Steels . 50 Table 12Ha rdness Data for Weldments in P5A Parent Steels 52 Table 13Parent Steel Charpy Toughness Data 56 Table 14HA Z Charpy Toughness
18、 Data Compared with the HAZ Charpy Toughness Data for P5 (Lower CE) Parent Steel Supplied by Rolls-Royce . 57 Table 15HAZ Charpy Toughness and Hardness Data 1-Layer . 60 Table 16HAZ Charpy Toughness and Hardness Data 4-Layer . 61 LIST OF FIGURES Figure 1Schematic Diagram Illustrating the Relationshi
19、p between the Fe-C Phase Diagram and the Different Regions of the HAZ 1 . 2 Figure 2Schematic Representation of Two-Layer Refinement Parameters 5 Figure 3Ill ustration of the Use of Shims, Tack Welded from the Inside of the Repair Cavity, to Avoid a Large Untempered HAZ at the Surface . 6 Temper Bea
20、d Qualification Hardness Acceptance Criteria STP-PT-058 v Figure 4Illustration of the Early Stages of a Small Patch Repair the Weld Beads Stop and Start on the Initial Peripheral Bead. 7 Figure 5Weld Metal and Parent Steel Hardness for Grade 91 Steel, as a Function of Larsen-Miller Parameter 24 . 8
21、Figure 6Schematic Representation of the Bead Arrangement for the Cascade Weld 32 Figure 7Diagram Showing the Intended Positions of Hardness Indentations in the 1-Layer and 4-Layer Sections . 34 Figure 8Completed Panels Showing the Cascade Weld and the Additional Weld Pad Added within the 4-Layer Reg
22、ion to Allow Charpy Specimens to be Machined with the Notch Lying in the HAZ . 35 Figure 9Photomicrographs of Weld Transverse Sections from Weld TW1 Reflecting the “Optimum“ Procedure in P5 Steel 39 Figure 10Photomicrographs of Weld Transverse Sections from Weld TW6 Reflecting the “Poor“ Procedure i
23、n a P4 Steel . 40 Figure 11Photom icrographs Showing a Coarse-Grain Region in the 4-Layer Region of TW 3 41 Figure 12Photom icrographs Showing a Fine-Grain Region in the 4-Layer Region of TW 3 42 Figure 13Photomicrographs Showing a Fusion Boundary Region in 1-Layer Region of TW 6 44 Figure 14Grain S
24、ize Measurements for Weldments in the Lower IIW CE P4 Steel 45 Figure 15Grain Size Measurements for Weldments in the Higher IIW CE P4 Steel . 46 Figure 16Grai n Size Measurements for Weldments in the Lower IIW CE P5 Steel 47 Figure 17Grain Size Measurements for Weldments in the Higher IIW CE P5 Stee
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