Temperature effect on the characteristic quantities of microstructure and phase transition of the alloy Ag0.25Au0.75

Ș. Ţălu, T. Quoc, Hoang Van Ong, Ha Thi-Thanh Vu, T. Duyen, Thu-Cuc Thi Nguyen
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引用次数: 1

Abstract

In this research, Molecular Dynamics (MD) simulations were conducted to explore the temperature effect on the microstructure and phase transition of the Ag0.25Au0.75 alloy. The findings reveal that as the temperature rises, the material's phase transition switches from crystalline to liquid and vice versa. Notably, during the phase transition, significant changes occur in the link length (r), the total energy of the system (Etot), and the number of structural units FCC, HCP, BCC, and Amor. The microstructural features of the models were analyzed using the radial distribution function (RDF), a number of structural units, shape, size (l), and total energy of the system (Etot). In addition, the length of the link Ag-Ag, Ag-Au, Au-Au, the size of the material has a very small change value and is considered almost constant, and the height of the radial distribution function (RDF) decreases. The number of structural units FCC, HCP decreased, BCC, Amor increased, and the total energy of the system increased, thereby confirming that the influence of temperature on the microstructure and phase transition of the Ag0.25Au0.75 alloy is very large. Besides, the micro-structural characteristics of the Ag0.25Au0.75  alloy can be applied as a basis for future experimental studies.
温度对Ag0.25Au0.75合金显微组织和相变特征量的影响
本文采用分子动力学方法研究了温度对Ag0.25Au0.75合金微观组织和相变的影响。研究结果表明,随着温度的升高,材料的相变从晶体变为液体,反之亦然。值得注意的是,在相变过程中,链长(r)、体系总能量(Etot)以及结构单元FCC、HCP、BCC和Amor的数量都发生了显著变化。利用径向分布函数(RDF)、结构单元数、形状、尺寸(l)和系统总能量(Etot)分析了模型的微观结构特征。此外,链接长度Ag-Ag, Ag-Au, Au-Au,材料的尺寸有一个非常小的变化值,认为几乎恒定,径向分布函数(RDF)的高度减小。FCC、HCP的结构单元数减少,BCC、Amor的结构单元数增加,体系总能量增加,从而证实了温度对Ag0.25Au0.75合金的显微组织和相变的影响很大。此外,Ag0.25Au0.75合金的显微组织特征可为今后的实验研究提供依据。
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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