晶界扩散率分布对奥氏体钢塑性流动的影响I:显微组织表征。确定晶界扩散系数的分布

W.A. Swiatnicki, M.W. Grabski
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引用次数: 10

摘要

本文介绍了0.12C22Cr17Ni奥氏体钢在不同热处理方式下扩展时的外源晶界位错(EGBDs)动力学测量和显微组织研究。利用材料各状态活化能的统计分布研究了晶界的扩散特性。结果表明,随着退火温度的升高,该分布向较高的值偏移。讨论了造成所观察到的效果的结构和化学因素。考虑了晶粒长大、GB组织恢复、析出和析出相溶解等过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of distribution of grain boundary diffusivity on plastic flow of austenitic steel I: Characterization of microstructure. Determining the distribution of grain boundary diffusivity

Measurements of the kinetics of extrinsic grain boundary dislocations (EGBDs) when spreading and investigations of the microstructure of 0.12C22Cr17Ni austenitic steel subjected to different variants of thermal treatment are presented. Diffusional properties of grain boundaries (GB) were studied by the statistical distribution of activation energy for each state of the material. It was found that the distribution shifts towards higher values when the annealing temperature rises. The discussion deals with the structural and chemical factors responsible for the effects observed. The processes of grain growth, recovery of GB structure, secregation and precipitate dissolution have been taken into consideration.

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