BS 8701-2016 Full ring ovalization test for determining the susceptibility to cracking of linepipe steels in sour service Test method《测定管线钢在酸性环境下开裂敏感性的完整环椭圆度试验 试验方法》.pdf
《BS 8701-2016 Full ring ovalization test for determining the susceptibility to cracking of linepipe steels in sour service Test method《测定管线钢在酸性环境下开裂敏感性的完整环椭圆度试验 试验方法》.pdf》由会员分享,可在线阅读,更多相关《BS 8701-2016 Full ring ovalization test for determining the susceptibility to cracking of linepipe steels in sour service Test method《测定管线钢在酸性环境下开裂敏感性的完整环椭圆度试验 试验方法》.pdf(56页珍藏版)》请在麦多课文档分享上搜索。
1、BS 8701:2016 Full ring ovalization test for determining the susceptibility to cracking of linepipe steels in sour service Test method BSI Standards Publication WB11885_BSI_StandardCovs_2013_AW.indd 1 15/05/2013 15:06Publishing and copyright information The BSI copyright notice displayed in this docu
2、ment indicates when the document was last issued. The British Standards Institution 2016 Published by BSI Standards Limited 2016 ISBN 978 0 580 89474 9 ICS 77.060 The following BSI references relate to the work on this document: Committee reference PSE/17 Draft for comment 16/30319903 DC Publication
3、 history First published June 2016 Amendments issued since publication Date Text affected BS 8701:2016 BRITISH STANDARDContents Foreword iii Introduction 1 1 Scope 1 2 Normative references 2 3 Terms and definitions 2 4 Principle 5 5 Reagents 5 6 Apparatus 6 7 Samples 6 8 Surface preparation 7 9 Proc
4、edure for test specimens with internal loading 7 10 Expression of results 12 Annexes Annex A (normative) Ultrasonic examination of pipe, plate and welds during accelerated laboratory tests 13 Annex B (normative) Ring loading 17 Annex C (informative) Typical internal and external load application rig
5、s for use in the full ring test 27 Annex D (normative) Chemistry of test solutions 28 Annex E (informative) Analysis of test solution iodimetric titration procedure 29 Annex F (informative) Illustrated summary of the full ring test procedure 30 Annex G (informative) Hydrogen sulfide (H 2 S) health a
6、nd safety considerations 38 Annex H (informative) Sample identification and test record, Form 1 39 Annex I (informative) Sample identification and test record, Form 2 40 Annex J (informative) Acceptance criteria 43 Annex K (informative) Sulfide stress corrosion (SSC) and hydrogen induced cracking (H
7、IC) 43 Annex L (informative) Explanatory notes on test method: Galvanic Coupling 45 Annex M (informative) Modified test procedure for externally loaded test specimens (Diameter 12 in. 305 mm) 45 Annex N (informative) Magnetic particular inspection (MPI) procedure 46 Bibliography 47 List of figures F
8、igure 1 Full ring test using internal loading techniques 8 Figure 2 Modified full ring test using external loading technique 8 Figure A.1 Most common crack locations 13 Figure B.1 Gauge positions for seamless ring specimens 20 Figure B.2 Gauge positions for ring specimens that contain only a longitu
9、dinal seam weld 21 Figure B.3 Gauge positions on specimens having a spirally wound seam only 22 Figure B.4 Gauge positions for ring specimens that contain only a girth weld seam 22 Figure B.5 Gauge positions for ring specimens that contain both circumferential and longitudinal weld seams and have an
10、 angular gap of between 5 and 175 between longitudinal seams 23 Figure B.6 Modified gauge positions for ring specimens that contain both circumferential and longitudinal weld seams and have an angular off-set of 5 or 175 to 185 between longitudinal weld seams 24 Figure B.7 Gauge positions on specime
11、ns having spirally wound weld seams combined with a girth weld 24 BRITISH STANDARD BS 8701:2016 The British Standards Institution 2016 iFigure B.8 Gauge positions for ring specimens that contain both circumferential and longitudinal weld seams where individual plates are of unequal thickness 25 Figu
12、re C.1 External loading blocks used for ring specimens below 12 in. (305 mm) in diameter 27 Figure C.2 Internal loading rig used for ring specimens above 12 in. (305 mm) in diameter 28 Figure F.1 Ring machined and grit blasted 31 Figure F.2 Ring strain gauged 32 Figure F.3 Application of internal an
13、d external loads 32 Figure F.4 Conversion of ring into test cell 33 Figure F.5 On-line ultrasonic inspection 34 Figure F.6 Full ring after test 34 Figure F.7 Example of ultrasonic indications after test 35 Figure F.8 Example of recorded permeation data 35 Figure F.9 Typical HIC crack 36 Figure F.10
14、Typical weld SSC 37 Figure F.11 Typical soft zone crack 37 Figure F.12 Typical SOHIC 38 Figure H.1 Sample identification and test record, Form 1 39 Figure I.1 Full ring test loading data sheets, Form 2 40 Figure L.1 Typical example of potential change on a girth welded sample 45 List of tables Table
15、 B.1 Load level ranges 26 Table D.1 Standard NACE TM0177 solution A composition 29 Table D.2 Highly buffered solution composition 29 Table F.1 List of full ring test procedure figures 31 Table G.1 Chemical and physical properties of hydrogen sulfide 38 Summary of pages This document comprises a fron
16、t cover, an inside front cover, pages i to iv, pages 1 to 48, an inside back cover and a back cover. BRITISH STANDARD BS 8701:2016 ii The British Standards Institution 2016Foreword Publishing information This British Standard is published by BSI Standards Limited, under licence from The British Stan
17、dards Institution, and came into effect on 30 June 2016. It was prepared by Technical Committee PSE/17, Materials and equipment for petroleum, petrochemical and natural gas industries. A list of organizations represented on this committee can be obtained on request to its secretary. Use of this docu
18、ment It has been assumed in the preparation of this British Standard that the execution of its provisions will be entrusted to appropriately qualified and experienced people, for whose use it has been produced. Presentational conventions The provisions of this standard are presented in roman (i.e. u
19、pright) type. Its methods are expressed as a set of instructions, a description, or in sentences in which the principal auxiliary verb is “shall”. Commentary, explanation and general informative material is presented in smaller italic type, and does not constitute a normative element. Where words ha
20、ve alternative spellings, the preferred spelling of the Shorter Oxford English Dictionary is used (e.g. “organization” rather than “organisation”). Contractual and legal considerations This publication does not purport to include all the necessary provisions of a contract. Users are responsible for
21、its correct application. Compliance with a British Standard cannot confer immunity from legal obligations. BRITISH STANDARD BS 8701:2016 The British Standards Institution 2016 iiiBRITISH STANDARD BS 8701:2016 This page deliberately left blank iv The British Standards Institution 2016Introduction Sou
22、r service cracking problems in susceptible pipeline steels are caused by the various forms of hydrogen damage due to the presence of wet hydrogen sulfide (H 2 S). The main mechanisms are hydrogen pressure induced cracking (HPIC) also called hydrogen induced cracking (HIC) or stepwise cracking (SWC),
23、 sulfide stress corrosion (SSC) and stress oriented hydrogen induced cracking (SOHIC). An industry proven technique for assessing pipeline steels is to stress a full ring specimen in a sour environment. The advantage of the full ring test specified in this British Standard is that it is not necessar
24、y to pressurize the linepipe full ring specimen to achieve the required stress loading and residual stresses are retained. Equivalent stresses can be produced using mechanical means to deform the pipe by ovalization. Additional advantages are representative sample and single sided exposure. This tes
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