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首页> 外文期刊>Computational Materials Science >Validation of a novel higher-order multi-phase-field model for grain-growth simulations using anisotropic grain-boundary properties
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Validation of a novel higher-order multi-phase-field model for grain-growth simulations using anisotropic grain-boundary properties

机译:使用各向异性晶粒边界特性验证晶粒生长模拟的新型高阶多相模型

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摘要

The multi-phase-field (MPF) model proposed by Steinbach et al. has several advantages when it comes to numerically simulating the grain growth, recrystallization, and multiple phase transitions. In this study, in order to improve the accuracy of MPF simulations using the anisotropic grain-boundary energy and mobility, which depend strongly on the misorientation angles, we account for the triple-junction properties in the MPF model. Further, two-dimensional simulations of grain-boundary migrations in three-grain systems as well as simulations of abnormal grain growth in a polycrystalline system are performed using the proposed model, in order to confirm its validity. The results show that the proposed model allows for the introduction of the anisotropic energy and mobility with high accuracy for a wider range of misorientations, in contrast to the conventional model. (C) 2015 Elsevier B.V. All rights reserved.
机译:Steinbach等人提出的多相场(MPF)模型。 在数值上模拟晶粒生长,重结晶和多相转变时具有几个优点。 在这项研究中,为了利用各向异性晶界能量和移动性来提高MPF模拟的准确性,这依赖于误导性角度,我们考虑了MPF模型中的三界性质。 此外,使用所提出的模型进行三谷系统中的三粒系统中的晶界迁移的二维模拟,以及多晶系统中的异常晶粒生长的模拟,以确认其有效性。 结果表明,该模型允许引入各向异性能量和移动性,以高精度地进行更广泛的误导性,与传统模型相比。 (c)2015 Elsevier B.v.保留所有权利。

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