首页> 外文会议>Proceedings of the 28th international conference on ocean, offshore and arctic engineering 2009 >HYDROGEN INDUCED STRESS CRACKING (HISC) IN DUPLEX STAINLESS STEELS - DNV-RP-F112, DESIGN OF DUPLEX STAINLESS STEEL SUBSEA EQUIPMENT EXPOSED TO CATHODIC PROTECTION
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HYDROGEN INDUCED STRESS CRACKING (HISC) IN DUPLEX STAINLESS STEELS - DNV-RP-F112, DESIGN OF DUPLEX STAINLESS STEEL SUBSEA EQUIPMENT EXPOSED TO CATHODIC PROTECTION

机译:双相不锈钢中的氢致应力开裂(HISC)-DNV-RP-F112,用于阴极保护的双相不锈钢基体设备的设计

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Both 22Cr and 25Cr duplex (ferritic-austenitic) stainless steels have been extensively used for subsea equipment.rnIn general the experience is good but some significant failures have occurred where Hydrogen Induced Stress Cracking (HISC) have been identified as a contributing factor.rnBecause of these failures there was identified a need within the offshore industry for a design guideline treating HISC as a failure mode and reflecting best practice based on today's knowledge, experience from in-service failures and recent research.rnThe paper starts with a brief review of some of the failures and the main results from the comprehensive test program in the HISC JIP conducted in cooperation between Sintef and DNV.rnThe JIP is supported by several major oil companies, subsea contractors and material suppliers and constitute the main scientific background for the recently issued Recommended Practice, DNV-RP-F112, Design of Duplex Stainless Steel Subsea Equipment Exposed to Cathodic Protection (October 2008).
机译:22Cr和25Cr双相(铁素体-奥氏体)不锈钢已被广泛用于海底设备。总体而言,经验是不错的,但在氢致应力裂纹(HISC)被确定为影响因素的情况下却发生了一些重大故障。这些故障被确定为海上行业需要设计指南,将HISC视为故障模式,并基于当今的知识,在役故障的经验和最新研究来反映最佳实践。rn本文首先简要回顾了其中的一些问题。 Sintef和DNV合作进行的HISC JIP综合测试计划的失败和主要结果。rnJIP得到了几家主要石油公司,海底承包商和材料供应商的支持,构成了最近发布的推荐实践的主要科学背景。 ,DNV-RP-F112,暴露于阴极Protec的双相不锈钢海底设备的设计tion(2008年10月)。

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