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First-Principles Design of Refractory High Entropy Alloy VMoNbTaW

机译:难熔高熵合金VMoNbTaW的第一性原理设计

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The elastic properties of seventy different compositions were calculated to optimize the composition of a V–Mo–Nb–Ta–W system. A new model called maximum entropy approach (MaxEnt) was adopted. The influence of each element was discussed. Molybdenum (Mo) and tungsten (W) are key elements for the maintenance of elastic properties. The V–Mo–Nb–Ta–W system has relatively high values of C 44 , bulk modulus ( B ), shear modulus ( G ), and Young’s modulus ( E ), with high concentrations of Mo + W. Element W is brittle and has high density. Thus, low-density Mo can substitute part of W. Vanadium (V) has low density and plays an important role in decreasing the brittleness of the V–Mo–Nb–Ta–W system. Niobium (Nb) and tantalum (Ta) have relatively small influence on elastic properties. Furthermore, the calculated results can be used as a general guidance for the selection of a V–Mo–Nb–Ta–W system.
机译:计算了70种不同成分的弹性,以优化V–Mo–Nb–Ta–W系统的成分。采用了称为最大熵方法(MaxEnt)的新模型。讨论了每个元素的影响。钼(Mo)和钨(W)是保持弹性的关键元素。 V–Mo–Nb–Ta–W系统具有较高的C 44值,体积模量(B),剪切模量(G)和杨氏模量(E),且Mo + W浓度较高。元素W易碎并且密度高。因此,低密度Mo可以替代W的一部分。钒(V)具有低密度,并且在降低V-Mo-Nb-Ta-W系统的脆性中起重要作用。铌(Nb)和钽(Ta)对弹性的影响相对较小。此外,计算结果可以用作选择V–Mo–Nb–Ta–W系统的一般指导。

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