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首页> 外文期刊>Journal of Physics. Condensed Matter >First-principles study of stability of the bcc and ω phases of a low Al concentration Nb1 - XAlx alloy
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First-principles study of stability of the bcc and ω phases of a low Al concentration Nb1 - XAlx alloy

机译:低Al浓度Nb1-XAlx合金bcc和ω相稳定性的第一性原理研究。

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摘要

The phase stability and site occupancy of bcc (body centered cubic) Nb 5Al and slightly rearranged atomic structures have been examined by means of first-principles calculations. In order to use first-principles methods, a periodic cell is required and we used ordered Nb5Al compounds as a tractable example of a low Al concentration Nb 1 - xAlx alloy (in this case, for about 17at.% Al). The instability against an ω-structure atomic displacement was also studied, since this structure is detrimental to ductility. Mulliken population analysis was used to provide an understanding of the hybridization between the atoms and the electronic origin of the site occupancy and instability of the underlying bcc structures. By making calculations for several different configurations of the Nb-Al system we estimated the strengths of the Nb-Nb and Nb-Al bonds. It is shown that the stability of the underlying bcc phases is directly related to Nb-Nb and Nb-Al first-nearest-neighbor interactions. The first-principles calculations were extended to finite temperature by including various contributions to the free energy. In particular, the vibrational free energy was calculated within the quasiharmonic approximation, and it is shown that the contribution of the low energy modes to the lattice entropy helps to stabilize ordered bcc phases against ω-type phase transformations. Semi-quasi-random structures were employed to study the stability of the ordered and disordered bcc phases. Our study showed, in agreement with experiment, that the ω, ordered, and disordered phases can coexist in a nonequilibrium state at finite temperature
机译:通过第一性原理的计算,已经检查了bcc(体心立方)Nb 5Al和稍微重排的原子结构的相稳定性和位点占有率。为了使用第一性原理方法,需要一个周期性电池,并且我们使用有序Nb5Al化合物作为低Al浓度Nb 1-xAlx合金(在这种情况下,约17at。%Al)的易处理实例。还研究了针对ω结构原子位移的不稳定性,因为该结构不利于延展性。 Mulliken种群分析用于提供原子之间的杂交以及位点占据和底层bcc结构的不稳定性的电子起源的理解。通过对Nb-Al系统的几种不同构型进行计算,我们估算了Nb-Nb和Nb-Al键的强度。结果表明,底层bcc相的稳定性与Nb-Nb和Nb-Al第一近邻相互作用直接相关。通过将对自由能的各种贡献包括在内,第一性原理计算扩展到了有限温度。特别是,在准谐波近似中计算了振动自由能,结果表明,低能模对晶格熵的贡献有助于稳定有序bcc相免受ω型相变的影响。半准随机结构用于研究有序和无序bcc相的稳定性。我们的研究表明,与实验相一致,在有限温度下,ω相,有序相和无序相可以共存于非平衡状态。

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