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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Structural, elastic and electronic properties of B2-type modified by ternary additions FeAl-based intermetallics: First-principles study
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Structural, elastic and electronic properties of B2-type modified by ternary additions FeAl-based intermetallics: First-principles study

机译:由Ternary添加Feal-Methallics修改的B2型的结构,弹性和电子性质:第一原理研究

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摘要

The structural, elastic and electronic properties of FeAI (B2) intermetallics modified by ternary additions have been investigated by first-principles calculations based on density functional theory (DFT). The calculations of the formation enthalpy indicate that Al atoms are more easily replaced by the alloying elements X (X = V, Sc, Mn, Si, Mg, Co, Zr, Cu, Zn, Nb, Cr, Mo, W, Ti, Ni). The ratio of the bulk modulus to shear modulus BIG and Poisson's ratio v show that the FeAI-Cr, FeAI-Ti, and FeAl-Co systems are ductile materials and FeAI-Co (BIG = 1.92, v = 0.28) is the most ductile phase among these alloy phases. The electronic structure calculations indicate that the doping by Cr, Ti and Co may lead to the charge redistribution, the weakening of the Al-Al interaction, and strengthening of the Fe-Fe and Fe-Al interactions. It can be concluded that Cr, Ti and Co form the most stable FeAl-based intermetallics. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过基于密度泛函理论(DFT)的一致性计算,研究了由三元添加修改的FEAI(B2)金属间化合物的结构,弹性和电子性质。 形成焓的计算表明Al原子更容易被合金元素X取代(x = V,Sc,Mn,Si,Mg,Co,Zr,Cu,Zn,Nb,Cr,Mo,W,Ti, 你)。 散装模量与剪切模量大而泊松比V的比率显示,FEAI-CR,FEAI-TI和FEAL-CO系统是延性材料和FEAI-CO(BIG = 1.92,V = 0.28)是最大的延性 这些合金阶段的相。 电子结构计算表明,CR,Ti和Co的掺杂可能导致电荷再分布,铝合作相互作用的弱化,以及加强Fe-Fe和Fe-Al相互作用。 可以得出结论,CR,TI和CO形成最稳定的基于FEAL的金属间金属间化合物。 (c)2017年Elsevier B.V.保留所有权利。

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