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Anisotropic Nanomechanics of Boron Nitride Nanotubes: Nanostructured 'Skin' Effect

机译:氮化硼纳米管的各向异性纳米力学:纳米结构的“皮肤”效应

摘要

The stiffness and plasticity of boron nitride nanotubes are investigated using generalized tight-binding molecular dynamics and ab-initio total energy methods. Due to boron-nitride BN bond buckling effects, compressed zigzag BN nanotubes are found to undergo novel anisotropic strain release followed by anisotropic plastic buckling. The strain is preferentially released towards N atoms in the rotated BN bonds. The tubes buckle anisotropically towards only one end when uniaxially compressed from both. A "skin-effect" model of smart nanocomposite materials is proposed which will localize the structural damage towards the 'skin' or surface side of the material.
机译:氮化硼纳米管的刚度和可塑性使用广义紧密结合的分子动力学和从头算的总能量方法进行了研究。由于氮化硼BN键的屈曲效应,压缩Z字形BN纳米管被发现会发生新的各向异性应变释放,然后发生各向异性塑性屈曲。应变优先向旋转的BN键中的N原子释放。当管道从两端单向压缩时,它们仅各向异性地朝向一端弯曲。提出了一种智能纳米复合材料的“皮肤效应”模型,该模型会将结构损伤定位在材料的“皮肤”或表面侧。

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