静水压力
各向异性
德拜模型
热力学
热膨胀
流体静力平衡
材料科学
相(物质)
弹性模量
化学
凝聚态物理
物理
有机化学
量子力学
作者
Yongmei Zhang,Xiaopan Wang,Yuqi Gao,Xiuqing Zhang
摘要
Abstract The effect of hydrostatic pressure on the relative stabilities of the four main structures in CuZr has been estimated using first‐principles calculations. The results indicate that hydrostatic pressure induces the B 19′ → B 19 transformation at ~40 GPa and Cm → B 19 transformation at ~68 GPa. At 0 GPa, these CuZr structures exhibit analogous values of B , G , and E and small difference in σ . However, the differences between these structures become appreciable in B , G , E , and σ values. 3D graphs of Young's modulus reflect the elasticity is directional. Pressure promotes the increase of elastic anisotropy degree of B 2. For B 19′ and Cm , the variation trends under pressure firstly decrease, then slightly increase, while that is opposite for B 19. The quasi‐harmonic Debye model is used to evaluate the effects of temperature and pressure on the thermodynamic properties (heat capacity, thermal expansion coefficient, Debye temperature, and Grüneisen parameter) of the CuZr structures.
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