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Quasicontinuum analysis of dislocation-coherent twin boundary interaction to provide local rules to discrete dislocation dynamics

机译:脱位相干双边界交互的拟催化分析,为局部规则提供离散位错动态

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The interaction of a pure screw dislocation with a Coherent Twin Boundary Σ3 in copper was studied using the Quasicontinuum method. Coherent Twin Boundary behaves as a strong barrier to dislocation glide and prohibits slip transmission across the boundary. Dislocation pileup modifies the stress field at its intersection with the Grain Boundary (GB). A methodology to estimate the strength of the barrier for a dislocation to slip across CTB is proposed. A screw dislocation approaching the boundary from one side either propagates into the adjacent twin grain by cutting through the twin boundary or is stopped and increases the dislocation pileup amplitude at the GB. Quantitative estimation of the critical stress for transmission was performed using the virial stress computed by Quasicontinuum method. The transmission mechanism and critical stress are in line with the literature. Such information can be used as input for dislocation dynamic simulations for a better modeling of grain boundaries.
机译:使用Quasicontinuum方法研究了与铜中相干双边界σ3的纯螺钉脱位的相互作用。连贯的双边界表现为位错滑行的强障,并禁止在边界上滑动传输。位错堆叠在其与晶界(GB)交叉处的应力场修改。提出了一种估计跨越CTB脱位脱位的屏障强度的方法。从一侧接近边界的螺钉位错将通过切割通过双边界传播到相邻的双晶粒中或停止并增加GB处的位错堆积幅度。使用喹啉素法计算的病毒应力进行测量对瞬态应力的定量估计。传动机构和临界应力符合文献。这种信息可用作脱位动态模拟的输入,以便更好地建模晶界。

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