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Phase field modeling of void nucleation and growth in irradiated metals

机译:辐照金属中空核和生长的相场模拟

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摘要

Motivated by the need to develop a spatially resolved theory of irradiation-induced microstructure evolution in metals, we present a phase field model for void formation in metals with vacancy concentrations exceeding the thermal equilibrium values. This model, which is phenomenological in nature, is cast in the form of coupled Cahn-Hilliard and Allen-Cahn type equations governing the dynamics of the vacancy concentration field and the void microstructure in the matrix, respectively. The model allows for a unified treatment of void nucleation and growth under the condition of random generation of vacancies, which is similar to vacancy generation by collision cascade in irradiated materials. The basic features of the model are illustrated using two-dimensional solutions for the cases of void growth and shrinkage in supersaturated and undersaturated vacancy fields, void-void interactions, as well as the spontaneous nucleation and growth of a large population of voids.
机译:由于需要发展空间解析的辐射诱导的金属微观结构演化理论,我们提出了空位浓度超过热平衡值的金属中空洞形成的相场模型。该模型本质上是现象学的,以耦合的Cahn-Hilliard和Allen-Cahn型方程的形式铸造,分别控制着空位浓度场和基质中空隙的动态。该模型允许在空位随机产生的情况下对空隙形核和长大进行统一处理,这类似于通过辐照材料中碰撞级联产生空位。使用二维解决方案说明了模型的基本特征,以解决过饱和和不饱和空位场中空隙的增长和收缩,空隙与空隙的相互作用以及大量空隙的自发成核和生长的情况。

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