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Phase-Field Model for Microstructure Evolution at the Mesoscopic Scale

机译:介观尺度下微结构演化的相场模型

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This review presents a phase-field model that is generally applicable to homogeneous and heterogeneous systems at the mesoscopic scale. Reviewed first are general aspects about first- and second-order phase transitions that need to be considered to understand the theoretical background of a phase field. The mesoscopic model equations are defined by a coarse-graining procedure from a microscopic model in the continuum limit on the atomic scale. Special emphasis is given to the question of how to separate the interface and bulk contributions to the generalized thermodynamic functional, which forms the basis of all phase-field models. Numerical aspects of the discretization are discussed at the lower scale of applicability. The model is applied to spinodal decomposition and ripening in Ag-Cu with realistic thermodynamic and kinetic data from a database.
机译:这篇评论提出了一个相场模型,该模型通常适用于介观尺度的同质和异质系统。首先复习的是有关一阶和二阶相变的一般方面,需要理解它们来理解相场的理论背景。介观模型方程是在原子尺度的连续极限范围内通过微观模型的粗粒度过程定义的。特别强调了如何分离对广义热力学函数的接口和主体贡献的问题,广义热力学函数构成了所有相场模型的基础。离散化的数值方面在较低的适用范围内进行了讨论。利用来自数据库的实际热力学和动力学数据,将该模型应用于Ag-Cu中的旋节线分解和成熟。

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