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Non-singular descriptions of dislocation cores: a hybrid ab initio continuum approach

机译:位错核心的非单一描述:混合从头开始连续方法

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摘要

The core structure of straight and curved dislocations is studied by developing a hybrid approach that links the parametric dislocation dynamics method with ab initio calculations. The approach is an extension of the Peierls-Nabarro (PN) model, with the following features: (1) all three components of the displacement vector for atoms within the dislocation core are included; (2) the entire generalized stacking fault energy surface (GSFS) obtained from ab initio calculations is utilized; and (3) the method is generalized to treat curved dislocations. We combine the parametric dislocation dynamics (DD) approach for the interaction and motion of dislocations with ab initio calculations of lattice restoring forces. These forces, which are extracted from the GSFS (gamma-surface), are calculated from both first-principles density functional theory (DFT) and the embedded-atom method (EAM). Dislocation core structures in aluminium and silver are determined. For straight dislocations, the results from the model are shown to be in excellent agreement with experiments for both Al and Ag. In contrast to undissociated dislocation loops in Al, it is found that the core width and the separations between partials in Ag vary along the angular direction measured with respect to the Burgers vector. It is also shown that the core-cutoff radius, which is usually employed in DD calculations to avoid singularities, must be adjusted as a function of loop size to account for the correct dislocation core energy.
机译:通过开发将参数位错动力学方法与从头算术联系起来的混合方法,研究了直位错和弧形位错的核心结构。该方法是Peierls-Nabarro(PN)模型的扩展,具有以下特征:(1)包含位错核内原子的位移矢量的所有三个分量; (2)利用从头算得到的整个广义堆垛层错能面(GSFS); (3)该方法被普遍用于治疗弯曲位错。我们结合用于位错的相互作用和运动的参数位错动力学(DD)方法与晶格恢复力的从头算起。这些力是从GSFS(伽马表面)中提取的,是根据第一原理密度泛函理论(DFT)和嵌入原子方法(EAM)来计算的。确定了铝和银的位错核心结构。对于直位错,模型的结果显示与Al和Ag的实验非常吻合。与Al中未解离的位错环相反,发现Ag的核宽度和部分之间的间距沿着相对于Burgers矢量测得的角方向变化。还显示出,为了避免奇异性,通常在DD计算中采用的堆芯截止半径必须根据环路尺寸进行调整,以说明正确的位错堆芯能量。

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