A Molecular Dynamics Model for Studying the Influence of High Temperatures under Laser Irradiation on Changes in a BCC Crystal Structure

A. Gostevskaya, A. Markidonov, M. Starostenkov, V. K. Drobyshev
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Abstract

The paper discusses the changes in the structures of BCC crystals subjected to high-temperature exposure. The interest in the study is explained by the processes occurring in the liquid surface layer and their subsequent impact on layer crystallization. They will further affect various physical and geometric characteristics of the material surface as a whole. The presented model helps observe the imperfections of the structure caused by the appearance of pores on the surface layers of the metal. The computational cell temperature in the designed model is distributed according to the solution of the linear problem of heat conduction. The model allows for revealing a surface layer continuity violation when the excess free volume localizes in the form of a group of spherical pores. The dimensions of such imperfections, as well as the duration of their existence, differ when modeling different laser radiation energy densities. Further research reveals the conditions for the pores to remain stable throughout the entire simulation time, as well as the relationship between the crystallographic orientation of the “solid-liquid” interphase boundary and the sizes of the formed pores” interphase boundary and the sizes of the pores formed. Keywords: bcc crystal, molecular dynamics model, interface boundary, porosity.
研究激光照射下高温对 BCC 晶体结构变化影响的分子动力学模型
本文讨论了高温暴露下 BCC 晶体结构的变化。液态表层发生的过程及其随后对表层结晶的影响解释了这项研究的兴趣所在。它们将进一步影响整个材料表面的各种物理和几何特性。所提出的模型有助于观察金属表层出现气孔所导致的结构缺陷。设计模型中的计算单元温度是根据热传导线性问题的解分布的。当多余的自由体积以球形气孔群的形式存在时,该模型可以揭示出表面层连续性的缺陷。当模拟不同的激光辐射能量密度时,这种缺陷的尺寸及其存在的时间也不同。进一步的研究揭示了孔隙在整个模拟时间内保持稳定的条件,以及 "固-液 "相间边界的晶体学取向与形成的孔隙大小之间的关系。关键词:BCC 晶体、分子动力学模型、界面边界、孔隙率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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