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首页> 外文期刊>Archive of Applied Mechanics >Effect Of The Stone-wales Defect On The Structure And Mechanical Properties Of Single-wall Carbon Nanotubes In Axial Stretch And Twist
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Effect Of The Stone-wales Defect On The Structure And Mechanical Properties Of Single-wall Carbon Nanotubes In Axial Stretch And Twist

机译:威尔士石壁缺陷对单壁碳纳米管轴向拉伸和扭曲结构和力学性能的影响

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The effect of the Stone-Wales defect due to the rotation of a pair of neighboring atoms on the equilibrium structure and mechanical properties of single-wall carbon nanotubes in axial stretch and twist is considered. The position of carbon atoms in a test section consisting of a number of repeated units hosting a solitary Stone-Wales defect is computed by minimizing the Tersoff-Brenner potential. The energy invested in the defect is found to decrease as the radius of the nanotube becomes smaller. Numerical computations for nanotubes with zigzag and armchair chiralities show that inclined, axial, and circumferential defect orientations have a strong influence on the mechanical response in axial stretch and twist. Stretching may cause the defect energy to become negative, revealing the possibility of spontaneous defect formation leading to failure. In some cases, stretching may eliminate the defect and purify the nanotube. When the tube is twisted around its axis, a neck develops at the location of the defect, signaling possible disintegration.
机译:考虑了由于一对相邻原子的旋转而引起的Stone-Wales缺陷对单壁碳纳米管轴向拉伸和扭曲的平衡结构和力学性能的影响。通过使Tersoff-Brenner电势最小化,可以计算出测试部分中碳原子的位置,该部分由多个重复的单元组成,这些单元具有孤立的Stone-Wales缺陷。发现随着纳米管的半径变小,投入缺陷的能量减少。具有锯齿形和扶手椅手性的纳米管的数值计算表明,倾斜,轴向和周向缺陷取向对轴向拉伸和扭曲的机械响应有很大影响。拉伸可能导致缺陷能量变为负值,从而揭示了自发形成缺陷导致失效的可能性。在某些情况下,拉伸可以消除缺陷并纯化纳米管。当管子绕其轴扭曲时,在缺陷位置会形成颈部,表明可能会崩解。

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