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Mesoscopic simulation of two-dimensional grain growth with anisotropic grain-boundary properties

机译:具有各向异性晶界特性的二维晶粒长大的细观模拟

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Grain-boundary (GB) properties in a polycrystalline system are generally anisotropic; in particular, both the GB energy and the mobility depend on the GB misorientation. Here the effect of anisotropic GB properties on two-dimensional grain growth is investigated by computer simulation. A stochastic velocity Monte Carlo algorithm based on a variational formulation for the dissipated power is implemented. The simulations show that grain growth leads to an increase in the fraction of small-angle GBs during the growth process. The average grain area is found to grow with a smaller exponent than in a system with isotropic GB properties, An extended von Neumann-Mullins relation based on averaged GB properties is proposed. [References: 38]
机译:多晶体系中的晶界(GB)特性通常是各向异性的;特别是,GB能量和迁移率都取决于GB取向错误。在这里,通过计算机模拟研究了各向异性GB特性对二维晶粒生长的影响。实现了基于耗散变分公式的随机速度蒙特卡罗算法。模拟表明,晶粒生长导致生长过程中小角度GB的分数增加。发现平均晶粒面积比具有各向同性GB特性的系统以较小的指数增长,提出了基于平均GB特性的扩展von Neumann-Mullins关系。 [参考:38]

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