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Effect of Grain Boundary Microchemistry on IGSCC of Alloy 132 In a Simulated BWR Environment

机译:晶界微化对模拟BWR环境中合金132 IGSCC的影响

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Intergranular stress corrosion cracking (IGSCC) of Alloy 132 weld metal in light water reactor (LWR) structural components is a great concern. The microstructure of Alloy 132 is dendritic and the grain boundaries that are parallel to the direction of the dendrites growth are known to be most susceptible to cracking. In order to correlate the grain boundary microstructure to IGSCC, and in general, improve the understanding to IGSCC of Alloy 132 weld metal, the grain boundary microstructure as well as IGSCC behavior of Alloy 132 was studied in this work. Compositional distributions of the dendritic grain boundaries in sensitized Alloy 132 were studied by using Field Emission Gun Auger Electron Spectroscopy (FEG-AES) analyses. The intergranular (IG) facets were generated by fracturing the specimen using slow strain rate test in high vacuum with the tensile stage attached to the FEG-AES. The results show that chromium and phosphorus concentrations on the IG facets vary significantly. IGSCC behavior of Alloy 132 was tested in a simulated boiling water reactor (BWR) environment. The data of compositional distributions of the dendritic grain boundaries and IGSCC crack length were evaluated statistically. By a comparison of the Weibull distributions of IGSCC penetration data and that the compositional profiles of IG facets, a correlation was found between P segregation and the SCC behavior of Alloy 132. The current study results also imply that the depletion of chromium at grain boundaries is also one cause of IGSCC of Alloy 132 in high temperature water.
机译:粒间应力腐蚀轻水反应堆(LWR)的结构部件132合金焊接金属的开裂(IGSCC)是一个极大的关注。合金132的微观结构是树突并平行于枝晶生长的方向,该晶界是已知的最容易开裂。为了关联晶界微观结构IGSCC,并且通常,提高认识到合金IGSCC 132焊接金属,晶界的微结构以及合金132的IGSCC行为在这项工作中进行了研究。在敏化合金132树枝状晶界的组成分布通过使用场发射枪俄歇电子能谱(FEG-AES)分析研究。通过与连接到FEG-AES的拉伸阶段在高真空使用慢应变速率试验压裂试样产生晶间(IG)面。结果表明在IG面铬和磷的浓度显著变化。合金132的IGSCC行为以模拟沸水反应堆(BWR)环境中进行测试。树枝状晶界和IGSCC裂纹长度的组成分布的数据进行统计学评价。通过的IGSCC渗透数据,以及IG面的组成轮廓的威布尔分布的比较,发现相关性P偏析和合金132的SCC行为目前的研究结果还暗示铬在晶界处的耗尽是间还在高温水中合金132的IGSCC的一个原因。

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