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Influence of stresses on structure and properties of Ti and Zr-based alloys from first-principles simulations

机译:胁迫对第一原理模拟Ti和Zr基合金结构和性能的影响

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Computer simulations in the framework of the Density Functional Theory have become an established tool for computer simulations of materials properties. In most cases, however, information is obtained at ambient conditions, preventing design of materials for applications at extreme conditions. In this work we employ ab initio calculations to investigate the influence of stresses on structure and stability of Ti-Mo and Zr-Nb alloys, an important class of construction materials. Calculations reproduce known phase stability trends in these systems, and we resolve the controversy regarding the stability of body-centered cubic solid solution in Mo-rich Ti-Mo alloys against the isostructural decomposition. Calculated results are explained in terms of the electronic structure effects, as well as in terms of physically transparent thermodynamic arguments that relate phase stability to deviations of concentration dependence of atomic volume from the linear behavior.
机译:密度函数理论框架中的计算机模拟已成为材料性质计算机模拟的建立工具。然而,在大多数情况下,在环境条件下获得信息,防止在极端条件下为应用的材料设计。在这项工作中,我们雇用AB Initio计算来研究强调对Ti-Mo和Zr-Nb合金结构和稳定性的影响,这是一类重要的建筑材料。计算在这些系统中再现已知的相位稳定性趋势,并且我们解决了对富含Mo的Ti-Mo合金中的身体中心立方体固体溶液的稳定性的争议,抵御IsoStronation分解。计算结果是在电子结构效应方面解释的,以及与物理透明的热力学争论相关,其将相位稳定性与原子体积的浓度依赖性与线性行为相关。

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