作者
Khanh Dang, Laurent Capolungo, Douglas E Spearot
发表日期
2017/11/13
期刊
Modelling and Simulation in Materials Science and Engineering
卷号
25
期号
8
页码范围
085014
出版商
IOP Publishing
简介
Atomistic simulations are used to determine the resolved shear stress necessary for equilibrium and the resulting geometry of nanoscale dislocation shear loops in Al. Dislocation loops with different sizes and shapes are created via superposition of elemental triangular dislocation displacement fields in the presence of an externally imposed shear stress. First, a bisection algorithm is developed to determine systematically the resolved shear stress necessary for equilibrium at 0 K. This approach allows for the identification of dislocation core structure and a correlation between dislocation loop size, shape and the computed shear stress for equilibrium. It is found, in agreement with predictions made by Scattergood and Bacon, that the equilibrium shape of a dislocation loop becomes more circular with increasing loop size. Second, the bisection algorithm is extended to study the influence of temperature on the resolved …
引用总数
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学术搜索中的文章
K Dang, L Capolungo, DE Spearot - Modelling and Simulation in Materials Science and …, 2017