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Nano-Plasticity of Single-Wall Carbon Nanotubes Under Uniaxial Compression

机译:单壁碳纳米管在单轴压缩下的纳米塑性

摘要

Nano-plasticity of thin single-wall carbon nanotubes under uniaxial compression is investigated through generalized tight-binding molecular dynamics (GTBMD) and ab-initio electronic structure methods. A novel mechanism of nano-plasticity of carbon nanotubes under uniaxial compression is observed in which bonding geometry collapses from a graphitic (sp(sup 2)) to a localized diamond like (sp(sup 3)) reconstruction. The computed critical stress (approximately equals 153 G Pa) and the shape of the resulting plastic deformation is in good agreement with recent experimental observation of collapse and fracture of compressed carbon nanotubes in polymer composites.
机译:通过广义紧密结合分子动力学(GTBMD)和从头算电子结构方法研究了单轴压缩下单壁碳纳米管的纳米可塑性。观察到单轴压缩下碳纳米管的纳米可塑性的新机制,其中键的几何结构从石墨(sp(sup 2))崩溃到局部菱形(sp(sup 3))重建。计算出的临界应力(大约等于153 G Pa)以及所产生的塑性变形的形状与最近对聚合物复合材料中压缩碳纳米管的塌陷和断裂的实验观察非常吻合。

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