API PUBL 939-A-1994 Research Report on Characterization and Monitoring of Cracking in Wet H2S Service《湿H2S设备开裂的特性和检测用研究报告》.pdf
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1、 API PUBL*939 94 0732270 0539Z07 bTT Research Report on Characterization and Monitoring of Cracking in Wet H2S Service API PUBLICATION 939 OCTOBER 1994 American Petroleum Institute 1220 L Street, Northwest Washington, D.C. 20005 SPECIAL NOTES (1) API publications necessarily address problems of a ge
2、neral nature. With respect to particular circumstances, local, state, and federal laws and regulations should be reviewed. (2) API is not undertaking to meet the duties of employers, manufacturers, or suppliers to warn and properly train and equip their employees, and others exposed, concerning heal
3、th and safety risks and precautions, nor undertaking their obligations under local, state, or federal laws. (3) Information concerning safety and health risks and proper precautions with respect to particular materials and conditions should be obtained from the employer, the manufacturer or supplier
4、 of that material, or the material safety data sheet. (4) Nothing contained in any API publication is to be construed as granting any right, by implication or otherwise, for the manufacture, sale, or use of any method, apparatus, or product covered by letters patent. Neither should anything con- tai
5、ned in the publication be construed as insuring anyone against liability for infringement of letters patent. (5) Generally, API standards are reviewed and revised, reaffirmed, or withdrawn at least every five years. Sometimes a one-time extension of up to two years will be added to this review cycle
6、. This publication will no longer be in effect five years after its publication date as an operative API standard or, where an extension has been granted, upon republication. Status of the publication can be ascertained from the API Authoring Department telephone (202) 682-8000. A catalog of API pub
7、lications and materials is published annually and updated quarterly by API, 1220 L Street, N.W., Washington, D.C. 20005. Copyrighe 1994 Welding Research Council Inc. API PUBL*939 94 0732290 0539209 472 Research Report on Characterization and Monitoring of Cracking in Wet H2S Service FOREWORD In 1990
8、 cracking of refinery process equipment in wet H2S service was being widely reported. As a result, committees and task groups of industry organiza- tions, including API, NACE and the Materials Properties Council, were actively seeking improved understanding of the phenomenon. Of particular concern w
9、ere conditions leading to cracking and blistering, the incidence of cracking, the consequences of such damage, and the efficacy of NDE methods for detection and monitoring. The Program reported herein was one of several significant industry-wide efforts on this subject. It was intended to supplement
10、 other activities by examining, in a large-scale test vessel, issues which could not be addressed satisfactorily either with conventional small-scale laboratory specimens or with in-situ exposures in refineries. The construction of a welded steel pressure vessel with a replaceable “window” for test
11、purposes was proposed by MPC to the API Subcommittee on Corrosion and Materials. Its Task Group on Materials and Corrosion Research developed the program to study the effect of variables on cracking and the capabilities of certain NDE monitoring methods. At that time, it was realized that the result
12、s would not be directly translatable to field application because the environment to be used would be extremely severe, and the thickness of the steel studied was limited to 0.5 inch. Nevertheless the guidance to be obtained would be valuable. The results of the program have helped to provide valida
13、tion of observations of conventional laboratory test specimens and clarify the roles of the variables considered. The work on acoustic emission monitoring was particularly enlight- ening. However, it must be realized that the information obtained is to be viewed in the context of specific service de
14、mands before application in the plant should be attempted. For example, pressure vessels usually have thicker shells than used in the test which will affect NDE capabilities, hydrogen permeation and material behavior. A large measure of the credit for the success of this program goes to the members
15、of the API Subcommittee and Task Group and the MPC Sponsor Committees who contributed their ideas and vast experience. M. Prager E? - API PUBLr939 94 E O732290 0537230 174 Research Report on Characterization and Monitoring of Cracking in Wet H2S Service M. S. Cayard, R. D. Kane, L. Kaley, andM. Prag
16、er CONTENTS 1.0 Executive Summary . 1 2.0 Introduction . 2 2.1 Background . 2 2.2 Goal . 3 2.3 Technical Approach . 3 2.4 Terminology. 3 2.4.1 Wet H2S Cracking Mechanisms . 3 2.4.1.1 Hydrogen Blistering .3 2.4.1.2 Hydrogen Induced Cracking (HIC) . .3 2.4.1.3 Stress Oriented Hydrogen Induced Cracking
17、 (SOHIC) . .4 2.4.1.4 Sulfide Stress Cracking (SSC) . .4 2.4.2 Steels 4 2.4.2.1 Conventional Steel .4 2.4.2.2 Low Sulfur Conventional Steel .4 2.4.2.3 “HIC Resistant” Steel 4 2.4.2.4 Ultra-Low Sulfur Advanced Steels . .4 2.4.3 General Terminology . .4 2.4.3.1 Crack Length Ratio (CLR) .4 2.4.3.2 Crac
18、k Thickness Ratio (CTR) . .5 2.4.3.3 Crack Sensitivity Ratio (CSR) . .5 2.4.3.4 Longitudinal-Transverse (LT) Section . .5 2.4.3.5 Transverse-Longitudinal (TL) Section . .5 3.0 Experimental Procedures . 5 3.1 Materials Evaluated .5 3.2 Specimen Configurations 5 3.3 Experimental Overview . 7 3.3.1 Eva
19、luation of Plate Containing Pre-existing HIC Damage . .9 Hard Welds (HRC 22-30). . .9 3.3.2 Evaluation of Plate Containing M. S. Cayard and R. D. Kane are with CLI International; L. Kaley is with Det Norske Veritas Industry; and M. Prager is with The Materials Pro erties Council. TKis WRC Bulletin c
20、ontains a Report of Research funded cooperatively by The Materials Properties Council, Inc. and the American Petroleum Insti- tute under the direction of the Task Group on Materials and Corrosion %search of the API Subcommittee on Corrosion and Materials. 3.3.3 Evaluation of the Repair of 3.3.4 Simu
21、lation of the Cracking Behavior of Thick Plate 10 3.3.5 Evaluation of HIC Resistant Plate/I.D. Surface Cleaning/ Severe Hydrogen Charging Conditions . 10 3.3.6 Evaluation of Nozzle Attachments/Effect of PWHT . 11 3.3.7 Verification of AE Signature for Hydrogen Blistering and SSC . 11 4.0 Results and
22、 Discussion . 12 4.1 Materials Selection. 12 4.2 Fabrication . 13 4.3 Inspection 17 4.4 Vessel Design and Integrity .28 5.0 References .31 Appendix I-Serviceability of HIC Damaged Steel .33 Appendix II-Serviceability of Hard Welds .45 Appendix III-Evaluation of Weld Repair/PWHT 57 Appendix IV-Simula
23、tion of Thick Plate Behavior . 75 Appendix V-Environment al Staging/ Effect of Cleaning .93 Appendix VI-Serviceability of Nozzle Attachments and PWHT . 121 a HIC Damaged Vessel. . 10 1.0 Executive Summary This report presents the experimental methods and findings of a research program of MPC entitle
24、d “Characterization and Monitoring of Cracking in Wet H,S Service.” The program was supported by the Refining Division of the American Petroleum Insti- tute (MI) and by The Materials Properties Council (MPC) and its Fitness-for-Service group-sponsored program. The two main objectives of the program
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