首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Site preferences and effects of X (X = Mn, Fe, Co, Cu) on the properties of NiAl: A first-principles study
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Site preferences and effects of X (X = Mn, Fe, Co, Cu) on the properties of NiAl: A first-principles study

机译:位置偏好和X(X = Mn,Fe,Co,Cu)对NiAl性能的影响:第一性原理研究

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摘要

The site preference of X (X = Mn, Fe, Co, Cu) in NiAl and its effects on structural, electronic and elastic properties were investigated by performing first-principles calculations using density functional theory (DFT). Formation enthalpy calculations show that adding X increases the formation enthalpy of NiAl, indicating that X addition reduces the stability of system. The site preference was investigated by calculating the transfer energy of NiAl alloys with X. The results further exhibit that Mn, Fe and Cu show no site preference, but Co tends to occupy Ni site. By analyzing electronic density of states, Mulliken population, overlap population and valence charge density, the electronic property and bond characters were discussed. The elastic property calculation shows that only substitution of Ni by Cu increased the plasticity of alloy, while in the other cases the plasticity was decreased.
机译:通过使用密度泛函理论(DFT)进行第一性原理计算,研究了NiAl中X(X = Mn,Fe,Co,Cu)的位点偏好及其对结构,电子和弹性性能的影响。生成焓的计算表明,添加X会增加NiAl的生成焓,表明添加X会降低系统的稳定性。通过计算带有X的NiAl合金的转移能来研究位点偏好。结果进一步表明Mn,Fe和Cu没有位点偏好,但是Co倾向于占据Ni位点。通过分析电子的电子密度,Mulliken种群,重叠种群和价电荷密度,讨论了电子性质和键性质。弹性性能计算表明,仅用Cu代替Ni可以提高合金的可塑性,而在其他情况下可塑性却降低。

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