AlSi (Silumine)合金的晶格动力学和热物理性质:DFT研究

R. Suthar, N. Pandya, A. Mevada, P. Gajjar
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引用次数: 2

摘要

本文采用平面波伪势密度泛函理论(DFT)对AlSi (Silumine)合金B1、B2和B3相的结构、电子和热物理性质进行了综合第一性原理计算。利用PBE (perdu - burke - ernzerhof)交换相关的PAW型赝势计算了AlSi合金B1、B2和B3相的性能。我们计算的平衡晶格常数与报道的结果非常吻合。为了研究AlSi合金不同相之间的组织相变,研究了AlSi合金B1、B2和B3相的能量体积依赖性和焓值压力依赖性。进一步计算了AlSi合金在基态下B1、B2和B3相的能带结构和总电子密度。研究了AlSi的B1、B2和B3相总电子密度随压力升高至100gpa时的变化规律。此外,利用准调和Debye模型计算了AlSi合金B1、B2和B3相的室温热状态方程、等温体积模量、热膨胀系数、等容压热容、Debye温度和grisen参数等各种有限温压热物理性质。根据AlSi合金的B1、B2和B3相的组织、电子和热物理性能,总结了结论。
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Lattice Dynamic and Thermophysical Properties of AlSi (Silumine) Alloy: A DFT Study
The present paper reports a comprehensive first-principles calculation of the structural, electronic and thermophysical properties of B1, B2 and B3 phases of AlSi (Silumine) alloy using plane-wave pseudopotential density functional theory (DFT). PAW type pseudopotential with the exchange correlation of Perdew-Burke-Ernzerhof (PBE) are used to compute properties of B1, B2 and B3 phases of AlSi alloy. Our computed equilibrium lattice constants are in excellent agreement with the reported results. To investigate the structural phase transitions beween different phases of AlSi alloy, volume dependence of energy and pressure dependence of enthaply are studied for B1, B2 and B3 phases of AlSi alloy. Further, the electronic band structure along with the total electronic density of states of B1, B2 and B3 phases of AlSi alloy are calculated at the ground states. Behaviour of the total electronic density of states of B1, B2 and B3 phases of AlSi is also studied with the increase in pressure up to 100 GPa. In addition, various finite temperature/pressure thermophysical properties such as the room temperature thermal equation of state, isothermal bulk modulus, coefficient of thermal expansion, heat capacity at constant volume and pressure, Debye temperature and Grüneisen parameter are computed for B1, B2 and B3 phases of AlSi alloy using quasi harmonic Debye model. Conclusions based on the structural, electronic and thermophysical properties of B1, B2 and B3 phases of AlSi alloy are summarized.
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