作者
Darby Jon Luscher, Jason Rhea Mayeur, Hashem Mohamed Mourad, Abigail Hunter, Mark Andrew Kenamond
发表日期
2016/1/1
期刊
International Journal of Plasticity
卷号
76
页码范围
111-129
出版商
Pergamon
简介
We have developed a multi-physics modeling approach that couples continuum dislocation transport, nonlinear thermoelasticity, crystal plasticity, and consistent internal stress and deformation fields to simulate the single-crystal response of materials under extreme dynamic conditions. Dislocation transport is modeled by enforcing dislocation conservation at a slip-system level through the solution of advection-diffusion equations. Nonlinear thermoelasticity provides a thermodynamically consistent equation of state to relate stress (including pressure), temperature, energy densities, and dissipation. Crystal plasticity is coupled to dislocation transport via Orowan's expression where the constitutive description makes use of recent advances in dislocation velocity theories applicable under extreme loading conditions. The configuration of geometrically necessary dislocation density gives rise to an internal stress field that …
引用总数
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