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First principles investigation of the binary intermetallics in Pb-Mg-Al alloy: Stability, elastic properties and electronic structure

机译:Pb-Mg-Al合金中二元金属间化合物的第一性原理研究:稳定性,弹性和电子结构

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摘要

First principles calculations have been carried out to investigate the structural stability, elastic properties, Debye temperature and electronic structure of the main binary cubic phases Mg_(17)Al_(12) and Mg_2Pb with A12 and C12 structures in the new type Pb-Mg—Al alloy, respectively. The optimized structural parameters were largely consistent with the experimental values. Cohesive energy and formation enthalpy showed that the Mg_(17)Al_(12) and Mg_2Pb are of the strong structural stability as well as good alloying ability. The electronic density of states (DOS) was given. Three independent single-crystal elastic constants (C_(11), C_(12) and C_(44)) at zero pressure as well as polycrystalline elastic parameters such as bulk modulus B, Young's modulus E, shear modulus G, Poisson's ratio v and anisotropy value A for both phases have been calculated by Voigt—Reuss-Hill averaging scheme. The mechanical properties of the cubic phases such as ductility and tenacity were further analyzed and discussed.
机译:进行了第一性原理计算,以研究新型Pb-Mg-中具有A12和C12结构的主要二元立方相Mg_(17)Al_(12)和Mg_2Pb的结构稳定性,弹性性能,德拜温度和电子结构。铝合金。优化后的结构参数与实验值基本吻合。内聚能和形成焓表明,Mg_(17)Al_(12)和Mg_2Pb具有很强的结构稳定性和良好的合金化能力。给出了状态的电子密度(DOS)。零压力下的三个独立的单晶弹性常数(C_(11),C_(12)和C_(44))以及多晶弹性参数,例如体积模量B,杨氏模量E,剪切模量G,泊松比v和通过Voigt-Reuss-Hill平均方案计算了两个相的各向异性值A。立方相的力学性能,如延展性和韧性被进一步分析和讨论。

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