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First-principles investigation of phase stability, elastic and thermodynamic properties in L1(2) Co-3(Al,Mo,Nb) phase

机译:L1(2)Co-3(Al,Mo,Nb)相的相稳定性,弹性和热力学性质的第一性原理研究

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摘要

First-principles calculations have been performed to investigate the phase stability, elastic, and thermodynamic properties of Co-3(Al,Mo,Nb) with the L1(2) structure. Calculated elastic constants show that Co-3(Al,Mo,Nb) is mechanically stable and possesses intrinsic ductility. It is found that the shear and Young's moduli of Co-3(Al,Mo,Nb) are smaller than those of Co-3(Al,W). Calculated density of states indicate the existence of covalent-like bonding in Co-3(Al,Mo,Nb). Temperature-dependent thermodynamic properties of Co-3(Al,Mo,Nb) can be described satisfactorily using the Debye-Gruneisen approach, including entropy, enthalpy, heat capacity and linear thermal expansion coefficient, showing their significant temperature dependences. Furthermore the obtained data can be employed in the modeling of thermodynamic and mechanical properties of Co-based alloys to enable the design of high temperature alloys. (C) 2016 Elsevier Ltd. All rights reserved.
机译:已经进行了第一性原理计算,以研究具有L1(2)结构的Co-3(Al,Mo,Nb)的相稳定性,弹性和热力学性质。计算出的弹性常数表明Co-3(Al,Mo,Nb)具有机械稳定性,并具有固有的延展性。发现Co-3(Al,Mo,Nb)的剪切模量和杨氏模量小于Co-3(Al,W)的剪切模量和杨氏模量。计算出的状态密度表明Co-3(Al,Mo,Nb)中存在类似共价键的结合。可以使用Debye-Gruneisen方法令人满意地描述Co-3(Al,Mo,Nb)随温度变化的热力学性质,包括熵,焓,热容和线性热膨胀系数,表明它们具有显着的温度依赖性。此外,所获得的数据可以用于对钴基合金的热力学和力学性能进行建模,以实现高温合金的设计。 (C)2016 Elsevier Ltd.保留所有权利。

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