多元素过渡金属的二硼化物:物理和机械特性计算方法

Powders Pub Date : 2024-01-25 DOI:10.3390/powders3010004
D. Zakarian, Aik Khachatrian, Sergey Firstov
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引用次数: 0

摘要

通过第一原理模拟(使用 "先验假势 "方法和 "准谐波近似 "方法--作者的开发成果),计算了具有 AlB2 型结构的二硼化物和多元素过渡金属二硼化物(DMTMs)的基本特性。对于二硼化物和多元素过渡金属二硼化物,沿轴向的线性热膨胀系数(LCTE)相差不大,即过渡金属二硼化物和六方晶格多元素过渡金属二硼化物具有准各向异性。准各向同性使得我们可以使用一个取决于熔化温度的分析公式来估算 LCTE。由于缺乏有关 DMTM 熔点的实验数据,本文介绍了一种根据第一原理计算熔点的方法。根据第一性原理计算了过渡金属二硼化物和 DMTMs 的理论硬度值和平均参数。使用混合方法评估了块状和纳米尺寸 DMTM 的硬度。计算结果与现有实验数据一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diborides of Multielement Transition Metals: Methods for Calculating Physical and Mechanical Characteristics
From the first principles simulation (using the method of “a priori pseudopotential” and the “quasi-harmonic approximation” method- author’s developments), the basic characteristics of diborides and diborides of multielement transition metals (DMTMs) with an AlB2 type structure were calculated. For both diborides and DMTMs, the linear coefficients of thermal expansion (LCTE) along the axial axes differ little from each other, i.e., transition metal diborides and hexagonal lattice DMTMs are quasi-isotropic. Quasi-isotropy makes it possible to estimate the LCTE using an analytical formula that depends on the melting temperature. In the absence of experimental data on the melting point of DMTMs, a method for calculating it from first principles is presented. The theoretical hardness values of transition metal diborides and DMTMs with averaged parameters were calculated from the first principles. The hardness of both bulk and nano-sized DMTMs was assessed using a hybrid method. There is agreement between the calculated and available experimental data.
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