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Density functional theory study of the structural, mechanical and thermal conductivity of uranium dialuminide (UAl2)

机译:密度泛函理论研究铀糖铵的结构,机械和导热系数(UAL2)

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In this work, we present a systematic study on the structural, mechanical, and thermal conductivity of uranium dialuminide (UAl2) using the ab initio calculation, based on the density functional theory (DFT). The structural and mechanical properties such as the volume expansion, thermal expansion coefficient, density variation and the bulk modulus of UAl2 as a function of temperature (between 300 K and 1500 K) are evaluated within quasiharmonic approximation (QHA). The total thermal conductivity (kappa(Tot)) of UAl2 as a function of temperature were predicted considering both the lattice thermal conductivity (kappa(ph)) and the electronic contribution (kappa(e)). The kappa(ph) was estimated by solving the Boltzmann Transport Equation (BTE) using the harmonic and anharmonic interatomic force constants. Whereas, the kappa(e) was evaluated using the Wiedemann-Franz law. The absolute value of electrical conductivity (sigma) required for the Wiedemann-Franz law was evaluated employing the BoltzTraP code and the Electron-Phonon Wannier (EPW) code. In addition to the total thermal conductivity kappa(Tot) = kappa(e) + kappa(ph), the mode-dependent phonon scattering rates and the group velocities, as well as their impacts on the lattice thermal conductivity, are discussed in detail. The results obtained demonstrated that kappa(Tot) of UAl2 decreased with increasing temperature up to 600 K and then remained nearly invariant at similar to 5.9 Wm(-1) K-1 up to 1500 K. Moreover, a large optical mode contribution (31% at 300 K) to the kappa(ph) was predicted for UAl2. (C) 2020 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们目前使用的从头计算铀dialuminide的结构,机械和热导率(UAl2)进行系统研究,基于密度泛函理论(DFT)上。的结构和机械性能,例如体积膨胀,热膨胀系数,密度变化和UAl2的体积弹性模量作为温度的函数(300 K和1500 K的)的近似quasiharmonic(QHA)内进行评价。 UAl2的作为温度的函数的总热导率(卡帕(TOT))进行了预测同时考虑晶格热导率(卡帕(PH))和电子贡献(卡帕(E))。卡伯(PH)通过使用谐波和非谐原子间力常数解决玻尔兹曼输运方程(BTE)估算。然而,卡帕(五)使用威德曼 - 弗朗兹法进行了评估。为威德曼 - 弗朗兹定律要求的导电性(Sigma公司)的绝对值进行评价采用BoltzTraP码和电子 - 声子瓦尼尔(EPW)码。除了总导热率卡帕(TOT)=卡帕(E)+卡帕(PH),则依赖于模式的声子散射率和群速度,以及它们在晶格热导率的影响,进行了详细讨论。获得的结果表明,卡帕(TOT)UAl2随温度高达600 K +减少,然后在类似的保持几乎不变的5.9了Wm(-1)K-1到1500 K.另外,大的光学模式的贡献(31 %在300 K)到卡帕(PH)中的溶液预测UAl2。 (c)2020 Elsevier B.v.保留所有权利。

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