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Grain boundary traction signatures: Quantifying the asymmetrical dislocation emission processes under tension and compression

机译:晶界牵引特征:量化拉伸和压缩下的不对称位错发射过程

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摘要

The disruption in crystallographic arrangement of atoms across a grain boundary interface generates local stress fields in the vicinity. Here, we reconstruct the continuum-equivalent grain boundary tractions from local atomic stresses near symmetrical-tilt <110> Ni grain boundaries. We show that the resolved shear stress contribution from the grain boundary tractions, τ_(GB). along active slip-systems either assists or prevents the emission of dislocations, depending on its direction with respect to the resolved shear stress contribution from external loading, τ_(ext). When τ_(GB) acts in the same direction as τ_(ext), Shockley partial dislocations are readily emitted from the boundary once |τ_(GB)+τ_(ext)| exceeds the critical barrier stress for shear-slip. When τ_(GB) opposes τ_(ext), the higher sustainable stresses in the grain boundary structure instead triggers: (a) emission of dislocations from the bulk, or (b) reconfiguration of the grain boundary atomic structure and subsequent emission of non-Schmid dislocations or formation of extrinsic stacking faults. Our results quantitatively explain the asymmetrical grain boundary dislocation emission processes observed in molecular dynamics (MD) simulations under applied tensile and compressive loads. The relationship between the traction signatures and periodic structural units along the grain boundary is discussed.
机译:横跨晶界界面的原子的晶体学排列的破坏在附近产生局部应力场。在这里,我们从对称倾斜<110> Ni晶界附近的局部原子应力重建连续等效晶界牵引力。我们证明了晶界牵引力τ_(GB)的解析剪切应力贡献。沿着主动滑移系统,沿其相对于外部载荷τ_(ext)的解析剪切应力贡献的方向,有助于或防止错位的产生。当τ_(GB)沿与τ_(ext)相同的方向作用时,一旦|τ_(GB)+τ_(ext)|,肖克利局部位错就很容易从边界发射。超过了剪切滑移的临界势垒应力。当τ_(GB)与τ_(ext)相对时,晶界结构中较高的可持续应力反而触发:(a)散发位错,或(b)晶界原子结构的重新构型以及随后的非原子发射。施密德位错或外在堆垛层错的形成。我们的研究结果定量地解释了在施加拉伸和压缩载荷的分子动力学(MD)模拟中观察到的不对称晶界位错发射过程。讨论了沿晶界的牵引特征和周期性结构单元之间的关系。

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