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3D Monte-Carlo simulation of texture-controlled grain growth

机译:纹理控制晶粒生长的 3D 蒙特卡罗模拟

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摘要

A three-dimensional (3D) Monte-Carlo (MC) routine was developed to quantify the interaction of grain growth and texture development during annealing. The program included special software to enable the input of the initial grain structure and texture and incorporated a description of the misorientation-dependence of the grain-boundary mobility. Outputs from the model quantified the evolving texture in terms of pole figures or crystallite orientation distribution and statistics on the grain structure such as the grain-size distribution and boundary-misorientation distribution function. The MC routine was applied to establish grain growth and texture development in materials with random or strongly textured starting conditions and isotropic or anisotropic grain-boundary mobility. Depending on the starting condition and material properties, normal grain growth or a behavior characterized by alternating cycles of fast and slow grain growth was predicted.
机译:开发了一种三维 (3D) 蒙特卡洛 (MC) 程序来量化退火过程中晶粒生长和织构发育的相互作用。该程序包括特殊的软件,用于输入初始晶粒结构和织构,并包含对晶界迁移率的取向错误依赖性的描述。该模型的输出量化了极点图或晶粒取向分布以及晶粒结构的统计量,例如晶粒尺寸分布和边界取向误分布函数。采用MC程序建立具有随机或强纹理起始条件以及各向同性或各向异性晶界迁移率的材料的晶粒生长和织构发展。根据起始条件和材料特性,预测正常晶粒生长或以快速和慢速晶粒生长交替循环为特征的行为。

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