用分子动力学模拟方法研究了镍纯金属玻璃的显微组织和力学行为

T. E. hafi, Soufiane Assouli, O. Bajjou, H. Jabraoui, Abdelhadi Kotri, M. Mazroui, Y. Lachtioui
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引用次数: 0

摘要

本研究的目的是研究Ni纯金属玻璃的微观结构特性,并揭示系统在拉伸测试中受到机械压力时的反应。分子动力学模拟,结合嵌入原子的方法,被用来进行调查。通过分析径向分布函数和Voronoi镶嵌等结构参数,研究了镍单原子金属玻璃的局部结构。结果表明,扭曲的二十面体和是Ni体系中最重要的结构。此外,研究还揭示了力学试验对局部结构的影响。事实上,拉伸试验通过降低二十面体和类二十面体结构的比例降低了近程序的显著性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microstructural and mechanical behaviors of Nickel pure metallic glass investigated by molecular dynamics simulations
The purpose of this study is to examine the microstructural properties of Ni pure metallic glass and to uncover how the system reacts when subjected to mechanical pressure during tensile testing. Molecular dynamics simulations, in conjunction with the embedded-atom approach, were used to carry out the investigation. The local structure of the Ni-monatomic metallic glass was examined by analyzing structure parameters such as the radial distribution function and Voronoi tessellation. The results show that the distorted icosahedra <0,1,10,2> and <0,2,8,4> are the most significant structures in the Ni system. Furthermore, the study reveals that mechanical testing has an impact on the local structures. In fact, the tensile testing decreased the significance of short-range order by reducing the fraction of icosahedra and icosahedra-like structures.
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