Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5447629 | Materials Chemistry and Physics | 2018 | 21 Pages |
Abstract
A systematic investigation on the structural, elastic and anisotropic properties of B19Ⲡmartensite CuZr is conducted using first principles calculations based on density-functional theory. Through geometry optimization, we observed an obvious structure change featuring a variation of the monoclinic angle β which shifts B19ⲠCuZr to a B33 type. In addition, the independent elastic constants of CuZr are determined by the stress-strain method, further enabling predictions of their Cauchy pressure, mechanical stability, anisotropic factor and Debye temperatures. Their anisotropic characters of linear compressibility, Young's modulus and shear modulus are analyzed in details by constructing three-dimensional models.
Keywords
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Physical Sciences and Engineering
Materials Science
Electronic, Optical and Magnetic Materials
Authors
Guohui Yi, Xinyu Zhang, Jinliang Ning, Jiaqian Qin, Xiaowei Sun, Qin Jing, Mingzhen Ma, Riping Liu,