Mechanical, Elastic and Microstructural Investigations on HCP Phase High-Entropy Alloys

被引:0
|
作者
Ajit Kumar Maddheshiya
Navneet Yadav
Shakti Pratap Singh
Devraj Singh
Phool Singh Yadav
Raja Ram Yadav
机构
[1] University of Allahabad,Department of Physics
[2] V.B.S. Purvanchal University,Department of Physics, Prof. Rajendra Singh (Rajju Bhaiya) Institute of Physical Sciences for Study & Research
来源
MAPAN | 2023年 / 38卷
关键词
High-entropy alloys; Elastic properties; Mechanical properties; Grüneisen number;
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中图分类号
学科分类号
摘要
Hexagonal-structured high-entropy alloys (HEAs) are in use for engineering materials, for critical components in chemical processing, power generation and gas turbine. The present work described how HEAs behave regarding their thermophysical properties and their exceptional elastic and mechanical properties. In the beginning, higher-order elastic constants (HOECs) of the HEAs, namely Cr10Mn30Fe50Co10, Cr20Mn20Fe34Co20Ni6, Cr20Mn20Fe30Co20Ni10, Cr20Mn20Fe20Co20Ni20 and Cr25Fe25Co25Ni25, in their hcp phase have been computed with the help of simple interaction potential approach. Utilizing HOECs, the elastic moduli, anisotropy factor (fE), Pugh’s ratio (B/G), Kleinman’s parameter (ζ), Poisson’s ratio (σ), microhardness (H), Vicker’s hardness (HV), Lame’s constants (λ and µ) and ratio of linear compressibility coefficients (f) have been computed. Later on, the Grüneisen parameter for the shear wave and longitudinal wave of considered HEAs has been calculated utilizing the obtained values of HOECs and lattice parameters. The results of second-order elastic constants were compared with the results obtained from different theories. The obtained results may be further explored for determining the inherent properties of HEAs.
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页码:1019 / 1026
页数:7
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