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Polycrystalline patterns in far-from-equilibrium freezing: a phase field study

机译:远离平衡冻结的多晶模式:相场研究

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We discuss the formation of polycrystalline microstructures within the framework of phase field theory. First, the model is tested for crystal nucleation in a hard sphere system. It is shown that, when evaluating the model parameters from molecular dynamics simulations, the phase field theory predicts the nucleation barrier for hard spheres accurately. The formation of spherulites is described by an extension of the model that incorporates branching with a definite orientational mismatch. This effect is induced by a metastable minimum in the orientational free energy. Spherulites are an extreme example of polycrystalline growth, a phenomenon that results from the quenching of orientational defects (grain boundaries) into the solid as the ratio of the rotational to the translational diffusion coefficient is reduced, as is found at high undercoolings. It is demonstrated that a broad variety of spherulitic patterns can be recovered by changing only a few model parameters.
机译:我们在相场理论的框架内讨论了多晶微观结构的形成。首先,测试模型在硬球系统中的晶体成核。结果表明,在通过分子动力学模拟评估模型参数时,相场理论可以准确预测硬球的形核屏障。球晶的形成是通过模型的扩展来描述的,该模型合并了具有明确方向失配的分支。定向自由能的亚稳态最小值引起了这种效应。球晶是多晶生长的一个极端例子,这种现象是由于定向缺陷(晶界)淬灭到固体中而导致的,这种现象是随着旋转与平移扩散系数的比值降低而形成的,这种现象在高过冷度中就发现了。结果表明,仅改变几个模型参数就可以恢复各种各样的球状图案。

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