首页> 外文会议>International Conference on Environmental Degradation of Materials in Nuclear Power Systems - Water Reactors >EFFECT OF MARTENSITE ON SCC INITIATION IN AUSTENTITC STAINLESS STEELS IN SIMULATED PWR PRIMARY WATER ENVIRONMENT
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EFFECT OF MARTENSITE ON SCC INITIATION IN AUSTENTITC STAINLESS STEELS IN SIMULATED PWR PRIMARY WATER ENVIRONMENT

机译:马氏体对模拟PWL初级水环境中Austentitc不锈钢SCC发育的影响

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Metastable austenitic stainless steels are susceptibleto martensitic transformations during cold-working;however, their implication on SCC initiation in PWRprimary water is unclear. In this study, cold -rolling andwarm-forging were applied to austenitic stainless steelstype 304L and 316L in order to introduce differentamounts of martensite. Multiple specimens were thenextracted from these rolled/forged materials and testedunder slow strain rate tensile (SSRT) test conditions inPWR primary water to assess their SCC initiationbehaviors. These specimens were characterized prior toand after the tests, using SEM and EBSD. The resultsshowed that a plastic strain of ~3% during SSRT testinginduced extensive intergranular SCC initiation in thesteels which did not contain martensite. However, coldrolled304L, which contained martensite, showed fewSCC cracks even when strained to ~4.5% and only limitedcracking occurred on specimens strained to ~5.8%. Post–test characterization revealed that extensive preferentialoxidation of martensite occurred in the cold-rolled 304Lwhereas only intergranular oxidation was observed forthe steels in which no martensite was detected. Thecorrelation between martensite and oxidationbehavior/SCC initiation is discussed.
机译:亚稳奥氏体不锈钢易感在冷工作期间的马氏体转变;但是,它们对PWR中SCC启动的含义初级水尚不清楚。在这项研究中,冷 - 滚动和温暖锻造应用于奥氏体不锈钢键入304L和316L,以便引入不同的马氏体的数量。然后是多个标本从这些轧制/锻造材料中提取并测试在慢速应变率拉伸(SSRT)测试条件下PWR初级水评估他们的SCC发起行为。这些样品的特征在于测试后,使用SEM和EBSD。结果在SSRT测试期间表明塑性应变〜3%〜3%诱导广泛的晶间SCC启动没有包含马氏体的钢。但是,ColdLoled.304L含有马氏体,显示了很少SCC裂缝即使应变为约4.5%,只有有限裂缝发生在标本上应变为约5.8%。邮政-测试表征显示出广泛的优惠冷轧304L发生马氏体的氧化而只观察到晶间氧化没有检测到马氏体的钢。这马氏体与氧化的相关性讨论行为/ SCC启动。

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