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A distributed-dislocation method for treating free-surface image stresses in three-dimensional dislocation dynamics simulations

机译:三维位错动力学模拟中一种处理自由表面图像应力的分布式位错方法

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This work reports on a recent advancement in three-dimensional dislocation dynamics modelling. A method is presented for the treatment of dislocation image stresses resulting from the presence of nearby traction-free surfaces. The image stress-field of a dislocation segment below a finite-sized free surface is obtained by the distribution of N generally prismatic rectangular or square dislocation loops padding the area (the external bounding surfaces of the simulation box). The unphysical tractions created at surface collocation points by sub-surface crystal dislocations are annulled by proper determination of the loops' Burgers vectors. The image stresses on a dislocation segment are simply those stresses resulting from the surface loops. The accuracy can be improved by increasing the number of collocation points (i.e. surface loop density).
机译:这项工作报告了三维位错动力学建模的最新进展。提出了一种用于处理由于附近无牵引表面的存在而导致的位错图像应力的方法。有限尺寸的自由表面以下的位错片段的图像应力场是通过填充区域(模拟盒的外部边界表面)的N个通常呈棱柱形的矩形或正方形位错环的分布而获得的。通过适当确定环的Burgers向量,可以消除由次表面晶体位错在表面并置点处产生的非物理牵引力。位错段上的图像应力仅是表面回路产生的那些应力。可以通过增加并置点的数量(即表面环密度)来提高精度。

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