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Role of the defect core in energetics of vacancies

机译:缺陷核心在空缺能量中的作用

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Electronic structure calculations at macroscopic scales are employed to investigate the crucial role of a defect core in the energetics of vacancies in aluminium. We find that vacancy core energy is significantly influenced by the state of deformation at the vacancy core, especially volumetric strains. Insights from the core electronic structure and computed displacement fields show that this dependence on volumetric strains is closely related to the changing nature of the core structure under volumetric deformations. These results are in sharp contrast to mechanics descriptions based on elastic interactions that often consider defect core energies as an inconsequential constant. Calculations suggest that the variation in core energies with changing macroscopic deformations is quantitatively more significant than the corresponding variation in relaxation energies associated with elastic fields. Upon studying the influence of various macroscopic deformations, which include volumetric, uniaxial, biaxial and shear deformations, on the formation energies of vacancies, we show that volumetric deformations play a dominant role in governing the energetics of these defects. Further, by plotting formation energies of vacancies and di-vacancies against the volumetric strain corresponding to any macroscopic deformation, we find that all variations in the formation energies collapse on to a universal curve. Tins suggests a universal role of volumetric strains in the energetics of vacancies. Implications of these results in the context of dynamic failure in metals through shock-induced spalling are analysed.
机译:宏观尺度的电子结构计算被用来研究缺陷核在铝空位能中的关键作用。我们发现空位核心能量受空位核心变形状态特别是体积应变的影响很大。从核心电子结构和计算出的位移场得出的见解表明,这种对体积应变的依赖性与体积变形下核心结构的变化性质密切相关。这些结果与基于弹性相互作用的力学描述形成鲜明对比,该力学相互作用通常将缺陷核心能量视为无关紧要的常数。计算表明,随着宏观变形的变化,核心能量的变化在数量上比与弹性场相关的弛豫能量的相应变化更为显着。通过研究各种宏观变形(包括体积变形,单轴变形,双轴变形和剪切变形)对空位形成能的影响,我们表明,体积变形在控制这些缺陷的能量方面起着主导作用。此外,通过绘制空位和双空位的形成能与对应于任何宏观形变的体积应变的关系图,我们发现形成能的所有变化都塌陷到通用曲线上。罐头表明体积应变在空缺能量中具有普遍作用。分析了这些结果在冲击引起的剥落中金属动态失效的情况下的意义。

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