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First-principles study on the thermal expansion of Ni-X binary alloys based on the quasi-harmonic Debye model

机译:基于准谐波德拜模型的Ni-X二元合金热膨胀的第一性原理研究

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In this study, we use the quasi-harmonic Debye model to predict the coefficient of thermal expansion of Ni- X binary alloys. The method bridges between the macroscopic elastic behavior and thermodynamic properties of materials without an expensive calculation of the volume dependence of the phonon density of states. Furthermore, the Gruneisen parameter is derived from the volume dependence of the Debye temperature, which is calculated from the first-principles elastic stiffness constants. The experimental coefficient of thermal expansion (CTE) of pure nickel is well reproduced, especially in the low temperature region. Among the few alloying elements tested, Al is predicted to slightly decrease the CTE whereas Mo and W are more effective in reducing the CTE. For the cases of Ni-X binary alloy systems, where the variation in the CTE is relatively small, the method used here appears to perform better than certain other formulations that rely entirely on the energy vs. volume relationship.
机译:在这项研究中,我们使用准谐波德拜模型来预测Ni-X二元合金的热膨胀系数。该方法在材料的宏观弹性行为和热力学性质之间架起了桥梁,而无需昂贵地计算声子密度与状态的体积相关性。此外,Gruneisen参数是由德拜温度的体积相关性得出的,该温度是根据第一原理的弹性刚度常数计算得出的。很好地再现了纯镍的实验热膨胀系数(CTE),尤其是在低温区域。在测试的少数合金元素中,预计Al会稍微降低CTE,而Mo和W在降低CTE方面更有效。对于CTE变化相对较小的Ni-X二元合金系统,此处使用的方法似乎比完全依赖于能量与体积的关系的某些其他公式更好。

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