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The role of ab initio electronic structure calculations in studies of the strength of materials

机译:从头算电子结构计算在材料强度研究中的作用

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摘要

In this paper we give an account of applications of quantum-mechanical (first-principles) electronic structure calculations to the problem of theoretical tensile strength in metals and intermetallics. First, we review previous as well as ongoing research on this subject. We then describe briefly the electronic structure calculational methods and simulation of the tensile test. This approach is then illustrated by calculations of theoretical tensile strength in iron and in the intermetallic compound Ni_3Al. The anisotropy of calculated tensile strength is explained in terms of higher-symmetry structures encountered along the deformation paths studied. The table summarizing values of theoretical tensile strengths calculated up to now is presented and the role of ab initio electronic structure calculations in contemporary studies of the strength of material is discussed.
机译:在本文中,我们说明了量子力学(第一性原理)电子结构计算在金属和金属间化合物理论抗拉强度问题上的应用。首先,我们回顾有关该主题的先前研究和正在进行的研究。然后,我们简要描述了电子结构的计算方法和拉伸试验的模拟。然后通过计算铁和金属间化合物Ni_3Al中的理论抗拉强度来说明这种方法。通过沿研究的变形路径遇到的高对称结构来解释计算的拉伸强度的各向异性。该表总结了到目前为止计算出的理论抗拉强度值,并讨论了从头算起的电子结构计算在当代材料强度研究中的作用。

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