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Structural and mechanical properties of homogeneous solid-liquid interface of Al modelled with COMB3 potential

机译:COMB3电位模型的均匀固液界面的结构和力学性能

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摘要

In this study, the homogeneous (1 0 0), (1 1 0) and (1 1 1) interface between solid Al and liquid Al are examined using a recently developed third generation of charge-optimized many body (COMB3) potential and moleculardynamics simulation (MD). The estimated melting point is about 22% higher than the experimental value, but the reproduced radial distribution function of liquid Al agrees pretty well with experimental result. The interfacial widths (delta) of the (1 0 0), (1 1 0) and (1 1 1) interface derived from smoothed density profiles are about 4, 6 and 4 crystal layers, respectively. The stress profiles are highly orientation dependent and the magnitudes of the stress peaks near the homogeneous interfaces are weaker than those near heterogeneous interfaces. Excess interfacial stress and excess interfacial potential energy are also obtained. The information about the homogeneous interfaces obtained in this study can enrich the understanding of homogeneous solid-liquid interface and will serve as a useful reference for future studies of Al-ceramic interfaces using COMB3 potentials.
机译:在该研究中,使用最近开发的第三代电荷优化的许多身体(Comb3)潜在和分子力检查固体Al和液体Al之间的均相(1 0 0),(110)和(111)界面仿真(MD)。估计的熔点比实验值高约22%,但液体Al的再现径向分布功能与实验结果相当良好。 (1 0 0),(110)和(111)界面的界面宽度(δ)分别导出的平滑密度分布的界面是约4,6和4个晶体层。应力分布是高度取向的,并且均匀接口附近的应力峰的大小较弱,而不是异质界面。还获得过量的界面应力和过量的界面势能。关于本研究中获得的均匀接口的信息可以丰富对均匀固体液体界面的理解,并将作为使用COMB3电位的Al陶瓷界面的未来研究的有用参考。

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