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Void nucleation and growth in irradiated polycrystalline metals: a phase-field model

机译:辐照多晶金属中的空泡形核和生长:相场模型

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摘要

We present a phase-field model for void formation in polycrystalline metals with vacancy concentrations exceeding the thermal equilibrium values. By incorporating a coupled set of Cahn-Hilliard and Allen-Cahn equations, the model captures several relevant processes including vacancy annihilation and nucleation at grain boundaries (GBs), vacancy diffusion toward sinks (including GBs and void surfaces) as well as void nucleation and growth due to vacancy supersaturations occurring in the grain interiors. Illustrative results are presented that characterize the rate of annihilation of the vacancy population at the GB sinks, as well as the formation of void denuded zones adjacent to GBs in bicrystalline and polycrystalline samples, the width of which is found to depend on both the vacancy diffusivity and the vacancy production rate.
机译:我们提出了空位浓度超过热平衡值的多晶金属中空洞形成的相场模型。通过合并耦合的一组Cahn-Hilliard和Allen-Cahn方程,该模型捕获了几个相关过程,包括空位ni灭和晶界(GBs)形核,空位向沉的扩散(包括GBs和空洞表面)以及空洞成核和由于晶粒内部出现空位过饱和而导致生长增加。给出了说明性结果,这些结果表征了GB阱处空位人口的of灭率,以及双晶和多晶样品中GBs附近的空洞剥蚀区的形成,发现其宽度取决于空位扩散率和空缺率。

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