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Study of the Mechanical Behavior of Radially Grown Fivefold Twinned Nanowires on the Atomic Scale

机译:径向尺度上径向生长五倍孪晶纳米线的力学行为研究

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摘要

In situ bending tests and dynamic modeling simulations are for the first time revealing the mechanical behavior of copper nanowires (NW) with radially grown fivefold twin structures on the atomic scale. Combining the simulations with the experimental results it is shown that both the twin boundaries (TBs) and the twin center act as dislocation sources. TB migration and L-locks are readily observed in these types of radially grown fivefold-twin structures.
机译:原位弯曲测试和动态建模仿真首次揭示了在原子尺度上具有径向生长的五重孪晶结构的铜纳米线(NW)的机械性能。将模拟结果与实验结果相结合,结果表明孪晶边界(TBs)和孪晶中心都是位错源。在这些类型的径向生长的五重结构中,很容易观察到结核迁移和L型锁。

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