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First-principles prediction of the mechanical properties and electronic structure of ternary aluminum carbide Zr3Al3C5

机译:三元碳化铝Zr3Al3C5的力学性能和电子结构的第一性原理预测

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摘要

In this paper, we predicted the possible mechanical properties and presented the electronic structure of ZrALC by means of first-principles pseudopotential total energy method. The equation of state, elastic parameters (including the full set of second order elastic coefficients, bulk and shear moduli, Young's moduli, and Poisson's ratio), and ideal tensile and shear strengths are reported and compared with those of the binary compound ZrC. Furthermore, the bond relaxation and bond breaking under tensile and shear deformation from elasticity to structural instability are illustrated. Because shear induced bond breaking occurs inside the NaCl-type ZrC slabs, the ternary carbide is expected to have high hardness and strength, which are related to structural instability under shear deformation, similar to the binary carbide. In addition, mechanical properties are interpreted by analyzing the electronic structure and chemical bonding characteristics accompanying deformation paths. Based on the present results, ZrALC is predicted to be useful as a hard ceramic for high temperature applications.
机译:在本文中,我们通过第一性原理mechanical势全能法预测了可能的机械性能并提出了ZrALC的电子结构。报告了状态方程,弹性参数(包括全套二阶弹性系数,体积模量和剪切模量,杨氏模量和泊松比)以及理想的拉伸强度和剪切强度,并将其与二元化合物ZrC进行了比较。此外,还说明了在拉伸和剪切变形(从弹性到结构不稳定性)下的键松弛和键断裂。由于剪切诱导的键断裂发生在NaCl型ZrC平板内部,因此与二元碳化物类似,三元碳化物具有较高的硬度和强度,这与剪切变形下的结构不稳定性有关。另外,通过分析伴随变形路径的​​电子结构和化学键合特性来解释机械性能。根据目前的结果,ZrALC有望用作高温应用的硬质陶瓷。

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