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Extended higher-order multi-phase-field model for three-dimensional anisotropic-grain-growth simulations

机译:三维各向异性晶粒生长模拟的扩展高阶多相场模型

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Based on the multi-phase-field (MPF) model reported by Steinbach et al., we constructed a higher-order MPF model in a previous study that contains a higher-order term and an additional kinetic parameter to represent the properties of triple junctions (TJs); this model was observed to be suitable for the simulation of 2D grain growth with anisotropic grain-boundary (GB) energy and mobility, which are strongly dependent on the misorientation angle (Delta theta). In the current study, we attempt to improve the accuracy of 3D MPF simulations of anisotropic grain growth by extending this higher-order MPF model such that it accounts for the properties of quadruple junctions as well as those of TJs. In addition, using the extended higher-order MPF model, a series of grain-growth simulations are performed for a 3D columnar structure while considering the anisotropic GB properties, through which the accuracy of the model is examined in detail. The results confirm that the extended higher-order MPF model enables the anisotropic GB properties to be handled accurately for wider-ranging Delta theta than in previous models. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于Steinbach等人报告的多相场(MPF)模型,我们在先前的研究中构建了一个高阶MPF模型,该模型包含一个高阶项和一个附加的动力学参数来表示三重连接的性质(TJ);观察到该模型适用于模拟各向异性晶粒边界(GB)能量和迁移率的2D晶粒长大,这些晶粒和取向强烈依赖于取向差角(Delta theta)。在当前的研究中,我们试图通过扩展此高阶MPF模型来解决各向异性晶粒长大的3D MPF模拟的准确性,从而考虑到四重结和TJ的属性。此外,使用扩展的高阶MPF模型,在考虑各向异性GB特性的情况下,针对3D柱状结构执行了一系列晶粒生长模拟,通过该模拟可以详细检查模型的准确性。结果证实,与以前的模型相比,扩展的高阶MPF模型可以更宽范围的Delta theta准确地处理各向异性GB属性。 (C)2016 Elsevier B.V.保留所有权利。

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