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使用第一性原理计算研究 Al0.75X0.75B14(X=Sc、Ti、V、Cr、Y、Zr、Nb、Mo)的稳定性、弹性性质和断裂韧性。

Stability, elastic properties and fracture toughness of Al0.75X0.75B14 (X=Sc, Ti, V, Cr, Y, Zr, Nb, Mo) investigated using ab initio calculations.

机构信息

Materials Chemistry, RWTH Aachen University, Kopernikusstrasse 10, D-52074 Aachen, Germany.

出版信息

J Phys Condens Matter. 2013 Aug 21;25(33):335501. doi: 10.1088/0953-8984/25/33/335501. Epub 2013 Jul 23.

Abstract

The effect of the transition metal valence electron concentration on the energy of formation, effective charge of B icosahedra, elastic properties, surface energy and fracture toughness was calculated using density functional theory for icosahedral transition metal borides of AlXB14 (X=Sc, Ti, V, Cr, Y, Zr, Nb, Mo). Consistent with previous work on AlYB14 (Kölpin et al 2009 J. Phys.: Condens. Matter 21 355006) it is shown that phase stability is generally dependent on the effective charge of the icosahedral transition metal borides. Also, ionization potential and electronegativity are identified as parameters affecting the effective charge of B icosahedra suitable for use in predicting the phase stability. Al0.75Y0.75B14, Al0.75Sc0.75B14 and Al0.75Zr0.75B14 have been identified as promising phases for application as protective coatings as they exhibit high phase stability and stiffness combined with a comparatively high fracture toughness.

摘要

使用密度泛函理论计算了 AlXB14(X=Sc、Ti、V、Cr、Y、Zr、Nb、Mo)二十面体过渡金属硼化物的形成能、有效 B 二十面体电荷、弹性性能、表面能和断裂韧性随过渡金属价电子浓度的变化。与之前关于 AlYB14(Kölpin 等人,2009 年,《物理:凝聚态物质》21 355006)的工作一致,表明相稳定性通常取决于有效电荷的二十面体过渡金属硼化物。此外,电离势和电负性被确定为影响 B 二十面体有效电荷的参数,可用于预测相稳定性。Al0.75Y0.75B14、Al0.75Sc0.75B14 和 Al0.75Zr0.75B14 被确定为有前途的应用于防护涂层的相,因为它们具有高的相稳定性和刚度,同时具有较高的断裂韧性。

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