论文标题

模拟具有不同迁移率的两相系统中的变形

Simulation of coarsening in two-phase systems with dissimilar mobilities

论文作者

Andrews, W. Beck, Voorhees, Peter W., Thornton, Katsuyo

论文摘要

在这项工作中,我们应用相位模拟来检查形态复杂的两相微结构的粗糙行为,其中这些相具有高度相似的迁移率,这种情况接近实验性固液体系统中。具体而言,我们考虑在关键组合物($ 50 \%$体积分数)的两阶段系统中,这两个阶段的迁移率差异为100倍。使用具有浓度依赖性动态的Cahn-Hilliard模型,在两个和三个维度中模拟了该系统,并将结果与​​恒定移动性进行比较。在二维系统(对应于薄膜几何形状)的层状过程中,形态学转变发生,导致嵌入在低型矩阵中的高弹性相的近圆形颗粒的系统。这种形态学的过渡导致变形速率常数随着时间的流逝而降低,这解释了为什么先前的研究发现与理论$ t^{1/3} $ POWER LAW缺乏一致的原因。具有不同迁移率的三维系统导致了双连续的微观结构,这些微观结构可以从界面形状分布的定量分析来确定自相似。在初始短暂阶段之后的$ t {1/3} $ Power Law紧密同意的三维动力学。得出一个模型以解释在此瞬态阶段观察到的缩放速率常数与缩放平均曲率方差之间的几乎线性关系。

In this work, we apply phase field simulations to examine the coarsening behavior of morphologically complex two-phase microstructures in which the phases have highly dissimilar mobilities, a condition approaching that found in experimental solid-liquid systems. Specifically, we consider a two-phase system at the critical composition ($50\%$ volume fraction) in which the mobilities of the two phases differ by a factor of 100. This system is simulated in two and three dimensions using the Cahn-Hilliard model with a concentration-dependent mobility, and results are compared to simulations with a constant mobility. A morphological transition occurs during coarsening of the two-dimensional system (corresponding to a thin film geometry) with dissimilar mobilities, resulting in a system of nearly-circular particles of high-mobility phase embedded in a low-mobility matrix. This morphological transition causes the coarsening rate constant to decrease over time, which explains why a previous study found lack of agreement with the theoretical $t^{1/3}$ power law. Three-dimensional systems with dissimilar mobilities resulted in bicontinuous microstructures that evolve self-similarly, as determined by quantitative analysis of the interfacial shape distribution. Coarsening kinetics in three dimensions agreed closely with the $t^{1/3}$ power law after the initial transient stage. A model is derived to explain a nearly-linear relationship between the coarsening rate constant and the variance of scaled mean curvature that is observed during this transient stage.

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