Interaction of irradiation defects with precipitates in CuCrZr and Cu-1Fe alloys

材料科学 辐照 晶体缺陷 透射电子显微镜 合金 辐射损伤 降水 位错 辐射 化学物理 冶金 凝聚态物理 复合材料 原子物理学 光学 纳米技术 核物理学 物理 气象学
作者
Yi-Nan Bian,Yan Lu,Jian Zhang,Bin Gao,Wenbin Wang,Wei‐Zhong Han
出处
期刊:Acta Materialia [Elsevier BV]
卷期号:253: 118964-118964 被引量:19
标识
DOI:10.1016/j.actamat.2023.118964
摘要

In this work, we employ transmission electron microscopy and helium ion irradiation to study the interactions between the radiation-induced point defects and the incoherent/semi-coherent precipitates in CuCrZr and Cu-1Fe alloys. Both thin foil and bulk implantation were used to explore the interactions of radiation defects with interfaces. The irradiated defects show a strong interface character dependence in both implanted CuCrZr and Cu-1Fe alloys after similar level of radiation damage. Large-sized voids appear around the incoherent Cr precipitates, while no visible cavities are formed around precipitates in Cu-1Fe alloy. Interestingly, three types of semi-coherent Fe precipitates exhibit various irradiation damage mitigation mechanisms, such as twin boundaries migration, short range elements redistribution and precipitate abnormal growth, which are caused by radiation defect-mediated dislocation glide, element diffusion and mass transportation. The high sink efficiency of the incoherent precipitates trap vacancies and leads to the generation of submicron-sized voids. In contrast, the semi-coherent precipitates can regulate the motion of point defects and effectively enhance the recombination rate of vacancies and interstitials.
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