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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Elasticity, lattice dynamics and ideal strengths of USi3 and U3Si via first principles calculations
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Elasticity, lattice dynamics and ideal strengths of USi3 and U3Si via first principles calculations

机译:通过第一原理计算,弹性,晶格动力学和USI3和U3SI的理想优势

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摘要

We have investigated the structure, elastic anisotropy, lattice dynamics, ideal tensile and shear strengths of USi3 and U3Si using first-principles method of density functional theory (DFT). The present fully relaxed structural parameters, equilibrium volumes as well as the single crystal elastic constants agree well with the available experimental data and other theoretical results. Also, the polycrystalline properties such as bulk modulus, Young's modulus, and shear modulus, Poisson's ratio and brittle/ductile properties have been evaluated using Voigt-Reuss-Hill model. The elastic anisotropy of Fmmm U3Si has been characterized by different anisotropic factors. It is concluded that Pm-3m USi3, Pm-3m U3Si, and Fmmm U3Si should be stabilized mechanically, and Pm-3m USi3 should be stabilized mechanically up to 80 GPa. The dynamical properties of U3Si and USi3 have been investigated using density functional perturbation theory (DEPT) method. The present calculations mean that both Pm-3m USi3 and Fmmm U3Si are dynamically stable, and Pm-3m USi3 should be stabilized dynamically up to 80 GPa. However, Pm-3m U3Si is not dynamically stable. Additionally, the ideal tensile strengths along typical crystallographic directions, and the ideal shear strengths in the (010)[101] slip system of Pm-3m USi3 and Fmmm U3Si have been explored using first principles total energy method. These calculated results provide useful information for the applications of uranium silicides as potential nuclear fuels. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们研究了使用密度函数理论(DFT)的一致原理方法来研究USI3和U3SI的结构,弹性各向异性,晶格动力学,理想的拉伸和剪切强度。本发明的完全放松的结构参数,平衡体积以及单晶弹性常数与可用的实验数据和其他理论结果一致。此外,已经使用Voigt-Reuss-Hill模型评估了多晶性能,例如散装模量,杨氏模量,剪切模量,泊松比和脆性/延展性。 FMMM U3SI的弹性各向异性的特征在于不同的各向异性因素。得出结论,PM-3M USI3,PM-3M U3SI和FMMM U3SI应机械稳定,PM-3M USI3应稳定机械达80GPa。使用密度函数扰动理论(DEPT)方法研究了U3SI和USI3的动态特性。本计算意味着PM-3M USI3和FMMM U3SI都是动态稳定的,PM-3M USI3应动态稳定到80GPa。但是,PM-3M U3SI不动态稳定。另外,沿典型的结晶方向的理想拉伸强度和(010)[101] PM-3M USI3和FMMM U3SI的理想剪切强度已经采用总能量方法探索。这些计算结果为硅化物作为潜在核燃料提供了有用的信息。 (c)2018年elestvier b.v.保留所有权利。

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