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First-Principles Phase Stability Calculations of Zr3Al_(1-x)Nb_x Alloys with L1_2, and DO_a Structures

机译:具有L1_2和DO_a结构的Zr3Al_(1-x)Nb_x合金的第一性原理相稳定性计算

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We reports the effect of substitution of Nb on the physical properties of Zr3Al1-xNbx using the FP-LAPW method based on the density functional theory (DFT) for structural, electronic, and mechanical properties. In order to understand the relative stability between L12 and DOa structures by the gradual substitution of Nb in Zr3Al, we have performed total-energy calculations for Zr3Al0.75Nb0.25, Zr3Al0.5Nb0.5, and Zr3Al0.25Nb0.75 in both L12 and DOa structures at different volumes. The first-principles calculations clearly show that the cubic symmetry, which favors greater ductility, is retained by the alloy up to the composition Zr3Al0.5Nb0.5 and hence may be of potential use for structural applications. The transition from cubic to orthorhombic structure is found to be in good agreement with experimental observation. The cohesive energy, equilibrium lattice constants, and bulk modulus, including its pressure derivative as a function of Nb substitution, are also calculated and compared with the available experimental values.
机译:我们使用基于密度泛函理论(DFT)的FP-LAPW方法,针对结构,电子和机械性能,报告了Nb替代对Zr3Al1-xNbx物理性能的影响。为了通过逐步替换Zr3Al中的Nb来了解L12和DOa结构之间的相对稳定性,我们对L12中的Zr3Al0.75Nb0.25,Zr3Al0.5Nb0.5和Zr3Al0.25Nb0.75进行了总能量计算和不同体积的DOa结构。第一性原理计算清楚地表明有利于更大延展性的立方对称性一直被合金保留到Zr3Al0.5Nb0.5的组成,因此可能在结构应用中具有潜在的用途。发现从立方到正交结构的转变与实验观察非常吻合。还计算了内聚能,平衡晶格常数和体积模量(包括其压力导数作为Nb替代的函数),并与可用的实验值进行了比较。

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