4.7 Article

First-principles calculations to investigate elastic and thermodynamic properties of FeAlNixCrMn quinternary alloys

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出版社

ELSEVIER
DOI: 10.1016/j.jmrt.2022.03.046

关键词

First principles; High entropy alloy; Elastic properties; Thermodynamic property

资金

  1. Fundamental Research Program of Shanxi Province [202103021224267]
  2. National International Science and Technology Cooperation Base on Railway Vehicle Operation Engineering of Beijing Jiaotong University [BMRV20KF05]

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This study systematically investigated the structural stability, elastic properties, and thermodynamic properties of FeAlNixCrMn high-entropy alloys, showing that the Ni content has a significant influence on the alloy's properties. The research provides theoretical guidance for the design and performance prediction of high-entropy alloy components.
In this study, the structural stability, elastic properties, and thermodynamic properties of FeAlNixCrMn high-entropy alloys (HEAs) (x 1/4 0, 0.25, 0.5, and 0.75) were systematically studied. The analysis of the total density of states and Debye temperature of FeAlNixCrMn shows that the structural stability of the alloy first increased and then decreased with the increasing of Ni content. According to the elastic constant, the influence of Ni content on the elastic modulus, toughness, brittleness, and elastic anisotropy of FeAlNixCrMn was analyzed. Finally, it is found that the thermal expansion coefficient and heat capacity show shows a strong temperature dependence only at low temperature. Furthermore, the dependence of temperature on the Gru spacing diaeresis neisen parameter is just the opposite of that of the Debye temperature. This study provides a reference and theoretical guidance for the design and performance prediction of HEAs components. (C) 2022 The Author(s). Published by Elsevier B.V.

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