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SCC of Austenitic Stainless Steels Under Off-Normal Water Chemistry and Surface Conditions - Part II: Off Normal Chemistry - Long Term Oxygen Conditions and Oxygen Transients

机译:非正常水化学和表面条件下的奥氏体不锈钢SCC - 第二部分:OFF正常化学 - 长期氧气条件和氧气瞬变

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The field experience of austenitic stainless steels in PWR (Pressurized Water Reactor) primary circuits has been generally outstanding. However, the effect of so called "off normal" conditions still plays an important role regarding the SCC (Stress Corrosion Cracking) susceptibility of austenitic stainless steels (SS). Such off normal conditions can either be surface conditions or off normal water chemistry conditions, which is the topic of this paper. This paper summarizes evaluations of the SCC susceptibility of cold worked stainless steels in off normal oxygenated environment including transients. In order to study off normal chemistry conditions, SCC tests were performed in simulated PWR primary water conditions under either hydrogen water chemistry conditions or oxygenated conditions. Since the effect of transients are suspected to play a role under plant conditions, additional tests were performed with continuously changing from oxygenated to hydrogenated conditions and compared to results from tests under purely hydrogenated or oxygenated water chemistry conditions.
机译:PWR(加压水反应堆)初级电路中奥氏体不锈钢的现场经验一般都是出色的。然而,所谓的“关闭正常”条件的效果仍然对奥氏体不锈钢(SS)的SCC(应力腐蚀裂化)易感性发挥着重要作用。正常条件如正常情况,可以是表面条件或正常水化学条件,这是本文的主题。本文总结了对包括瞬态的正常含氧环境中冷加工不锈钢SCC易感性的评价。为了研究正常化学条件,在氢水化学条件或含氧条件下在模拟PWWR初级水条件下进行SCC测试。由于怀疑瞬变的效果在植物条件下发挥作用,因此进行额外的试验,通过从氧化至氢化条件中连续地进行,并与纯氢化或含氧水化学条件的试验相比。

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