首页> 外文会议>American Nuclear Society;International Conference on Environmental Degradation of Materials in Nuclear Power Systems - Water Reactors >USE OF ON-LINE MONITORING TECHNIQUES FOR EVALUATIONS OF LEAD STRESS CORROSION CRACKING (PBSCC) AND A PBSCC INHIBITOR
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USE OF ON-LINE MONITORING TECHNIQUES FOR EVALUATIONS OF LEAD STRESS CORROSION CRACKING (PBSCC) AND A PBSCC INHIBITOR

机译:在线监测技术在评估铅应力腐蚀开裂(PBSCC)和PBSCC抑制剂中的应用

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Stress corrosion cracking (SCC) of steam generatortubing is no longer the leading cause of pressurized waterreactor outages and repairs in large part because moreresistant alloys are in much wider use. Specifically, Alloy690 and Alloy 800 tubing is now used at well over 50% ofthe operating steam generators around the world.However, despite the superior performance of these alloysfor nominal water chemistries, both of these alloys alongwith Alloy 600MA and Alloy 600TT have been shown tobe susceptible to lead stress corrosion cracking (PbSCC)in faulted chemistries that could plausibly occur during aplant chemistry excursion event. Therefore, EPRI hasbeen investigating the use of an inhibitor to PbSCC thatcan be applied on the secondary side of steam generators.One significant complication for development of aninhibitor is the limited ability of traditional SG tube SCCtest methods (e.g. reverse u bend tests) to provide directdata on the initiation time for PbSCC and on crackgrowth rates. Newer testing that utilizes active load anddirect current potential drop (DCPD) for crackmeasurements can provide additional data, but the testsetup may not be as representative of plant materials andstress states. This paper will review the testingmethodologies previously used for evaluations of PbSCCand inhibitor evaluations, and then discuss the state-ofthe-art for testing utilized today including the latestresults available from on-going testing, and discuss thesteps remaining to qualify a PbSCC inhibitor for plantuse.
机译:蒸汽发生器的应力腐蚀开裂(SCC) 油管不再是加压水的主要原因 反应堆停运和维修很大程度上是因为更多 耐蚀合金的用途更加广泛。具体来说,合金 现在使用690和800合金管的比例超过50% 全世界运行的蒸汽发生器。 然而,尽管这些合金具有卓越的性能 对于标称的水化学性质,这两种合金 合金600MA和合金600TT已被证明具有 易受铅应力腐蚀开裂(PbSCC)的影响 在有缺陷的化学物质中,可能在 植物化学游览事件。因此,EPRI具有 一直在研究使用PbSCC抑制剂 可应用于蒸汽发生器的次级侧。 一个严重的并发症发展 抑制剂是传统SG管SCC的有限能力 测试方法(例如反向U形弯曲​​测试)以提供直接 PbSCC引发时间和裂纹的数据 增长率。利用主动负载和负载的更新测试 裂纹的直流电势降(DCPD) 测量可以提供其他数据,但是测试 设置可能不能代表植物材料,并且 压力状态。本文将审查测试 以前用于评估PbSCC的方法 和抑制剂评估,然后讨论 今天使用的测试技术,包括最新的 从正在进行的测试中获得的结果,并讨论 使PbSCC抑制剂符合植物标准的剩余步骤 使用。

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