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Physical Model of Stress and Deformation Microstructures in AISI 304L Austenitic Stainless Steel Induced by High-current Pulsed Electron Beam Surface Irradiation

机译:大电流脉冲电子束表面辐照在AISI 304L奥氏体不锈钢中产生的应力和变形微观结构的物理模型

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摘要

AISI 304L austenite stainless steel was irradiated by a high-current pulsed electron beam (HCPEB) source in different process. The deformation microstructures were investigated by scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The relationship between stress characteristic and the microstructures has been established. The current numerical simulations of the thermal-mechanical process of HCPEB treatment were also reviewed comparing with the present experimental results. Our experimental results suggest that the value of the stress induced by HCPEB is between 102-103MPa or even larger. This stress results in the change of microstructure of the irradiated material in deeper region beneath the surface. According to the experimental results, a new physical model of the thermal-stress process and related modification mechanism as a result of HCPEB irradiation has been developed.
机译:AISI 304L奥氏体不锈钢在不同的过程中被高电流脉冲电子束(HCPEB)源辐照。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了变形微观结构。已经建立了应力特性和微观结构之间的关系。与目前的实验结果比较,还综述了当前HCPEB处理的热机械过程的数值模拟。我们的实验结果表明,HCPEB引起的应力值在102-103MPa之间,甚至更大。这种应力导致被辐照的材料在表面以下较深区域的微观结构发生变化。根据实验结果,开发了一种新的热应力过程物理模型以及由于HCPEB辐照而产生的相关修饰机理。

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