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High spatial resolution X-ray microanalysis of radiation-induced segregation in proton-irradiated stainless steels

机译:质子辐照不锈钢中辐射诱导辐射辐射的高空间分辨率X射线微分析

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The spatial redistribution of alloying elements and impurities near grain boundaries in several stainless steel alloys arising from non-equilibrium processes have been measured by analytical electron microscopy (AEM) in a field emission scanning transmission electron microscope. Radiation-induced segregation (RIS) has been shown to result in significant compositional changes at point defects sinks, such as grain boundaries. The influence of irradiation dose and temperature, alloy composition, prior heat treatment, and post-irradiation annealing on the grain boundary composition profiles have been investigated. Understanding the importance of these microchemical changes relative to the radiation-induced microstractural change in irradiation-assisted stress corrosion cracking (IASCC) of the irradiated materials is the primary goal of this study.
机译:通过在场发射扫描透射电子显微镜中的分析电子显微镜(AEM)测量了几种不锈钢合金中产生的几种不锈钢合金中的晶界附近的晶界附近的空间再分配。已经显示出辐射诱导的偏析(RIS)导致点缺陷下沉的显着成分变化,例如晶界。研究了辐照剂量和温度,合金组合物,先前热处理和在晶界组成谱上的照射后退火的影响。了解相对于辐射辅助应力腐蚀裂解(IASCC)的辐射诱导的微型化变化的重要性是辐照材料的辐照辅助腐蚀裂解(IASCC)是本研究的主要目标。

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