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Thermal and Mechanical Stability of Polycrystalline Nanowires

机译:多晶纳米线的热稳定性和机械稳定性

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We considered a polycrystalline cylindrical nanowire with bamboo microstructure strained uniaxially by an external load. Our molecular dynamic computer simulations demonstrated that grain boundary grooving plays an important role in determining the morphological stability of nanowires. Also, an exceptionally high yield stress of nanowires emphasizes the importance of diffusion in their plastic deformation under applied load. We formulated a phenomenological diffusion-based model describing morphological stability and diffusion-controlled deformation behaviour of polycrystalline nanowires. The kinetics of the shape changes was calculated numerically.
机译:我们考虑了具有竹微结构的多晶圆柱形纳米线,其竹制微结构受到外部载荷的单轴应变。我们的分子动力学计算机仿真表明,晶界开槽在确定纳米线的形态稳定性方面起着重要作用。而且,纳米线的异常高的屈服应力强调了在施加载荷的情况下扩散在其塑性变形中的重要性。我们制定了一个基于现象学扩散的模型,描述了多晶纳米线的形态稳定性和扩散控制的变形行为。数值计算形状变化的动力学。

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