Structural Phase Transformations of Gallium Ion Irradiated SUS304 Steel

Hanako Tsuruta, K. Shimizu, T. Murakami, Y. Kamada, H. Watanabe
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引用次数: 1

Abstract

The plan–view and cross–sectional microstructures of SUS304 steel irradiated by gallium focused–ion beam were investigated using electron backscatter diffraction and energy dispersive X–ray spectroscopy. Structural phase transformation and gallium implantation were confirmed in the region of irradiated austenite grains. The amount of bcc phase and gallium concentration increased with increasing irradiation dose, which suggests that gallium implantation plays an important role as a ferrite stabilizer and also the source of stress effect. Crystallographic orientation relationships between bcc phase and austenite matrix were analyzed by considering the angular deviation between closed–packed planes and closed–packed directions. Differences in transformation behaviors between (001) and (111) austenite grains were discussed from the view–points of fcc–bcc interface structures. [doi:10.2320/jinstmet.J2021006]
镓离子辐照SUS304钢的组织相变
采用电子背散射衍射和能量色散x射线能谱技术研究了镓聚焦离子束辐照SUS304钢的平面和截面显微组织。在辐照奥氏体晶粒区域证实了结构相变和镓的注入。随着辐照剂量的增加,bcc相的数量和镓的浓度增加,表明镓注入作为铁氧体稳定剂起着重要的作用,同时也是应力效应的来源。考虑封闭填充面与封闭填充方向之间的角偏差,分析了bcc相与奥氏体基体的晶体取向关系。从fcc-bcc界面结构的角度讨论了(001)和(111)奥氏体晶粒相变行为的差异。(doi: 10.2320 / jinstmet.J2021006)
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