Energetics of nucleation of half dislocation loops at a surface crack

Guanshui Xu
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引用次数: 9

Abstract

Abstract A previously developed variational boundary integral method in the Peierls-Nabarro framework is extended to analyse nucleation of half dislocation loops at a semicircular surface crack of near-atomic dimensions. The saddle-point configurations of embryonic dislocations and their associated thermal activation energies are determined. The influence of the crack on the energetics of dislocation nucleation is ascertained by calculating these activation energies for cracks of various radii. As the radius of the crack approaches zero, the result naturally converges to that for homogeneous nucleation of a half dislocation loop from the perfect surface. Compared with previous studies of this problem based on continuum elastic dislocation theory, the model presented in this paper provides a more definitive solution because it eliminates the uncertain core cutoff parameter and presumption that the dislocation loop is of semicircular shape.
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表面裂纹中半位错环形核的能量学
摘要将先前提出的一种基于Peierls-Nabarro框架的变分边界积分方法扩展到分析近原子尺寸的半圆形表面裂纹中半位错环的成核。确定了胚胎位错的鞍点构型及其相关的热活化能。通过计算不同半径裂纹的激活能,确定了裂纹对位错成核能量的影响。当裂纹半径趋近于零时,结果自然收敛于从完美表面向半位错环均匀形核的结果。与以往基于连续弹性位错理论的研究相比,本文模型消除了不确定的岩心截止参数,并假设位错环为半圆形,从而提供了更明确的解。
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