首页> 外文会议>Asia-Pacific Symposium on Engineering Plasticity and Its Applications(AEPA 2006); 20060925-29; Nagoya(JP) >Investigation of the Dynamic Buckling in the Carbon Nanotube under Impact Torque
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Investigation of the Dynamic Buckling in the Carbon Nanotube under Impact Torque

机译:冲击扭矩作用下碳纳米管的动态屈曲研究

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The dynamic buckling caused by propagation of a stress wave in single-wall carbon nanotube subjected to impact torque is investigated. The single-wall carbon nanotube is modeled by a cylindrical shell with semi-infinite length, and the dynamic buckling under impact torque is reduced to a bifurcation problem caused by the propagation of torsion stress wave. The bifurcation problem can be converted to solving a group of nonlinear algebraic equations. The numerical computation is carried out, and the effects of the different parameters on dynamic buckling are discussed. It is found that if critical buckling time of the carbon nanotube is different, the corresponding buckling model is different, too. Relation between the critical buckling stress and the critical buckling time is given. Molecular-dynamic simulations of torsional deformation of a single-wall carbon nanotube have been used to obtain the critical buckling strain, which is 0.064. In this work, the critical buckling strain obtained by the continuum model is 0.061, which is very close to the value 0.064. Single-wall carbon nanotubes have very much powerful anti-impact torque, and the critical buckling shearing stress can reach up to 132GPa.
机译:研究了应力波在冲击扭矩作用下在单壁碳纳米管中传播引起的动态屈曲。单壁碳纳米管由具有半无限长的圆柱壳建模,并且在冲击扭矩下的动态屈曲减少为由扭转应力波的传播引起的分叉问题。分叉问题可以转换为求解一组非线性代数方程。进行了数值计算,并讨论了不同参数对动态屈曲的影响。发现如果碳纳米管的临界屈曲时间不同,则相应的屈曲模型也不同。给出了临界屈曲应力与临界屈曲时间之间的关系。单壁碳纳米管扭转变形的分子动力学模拟已用于获得临界屈曲应变,该屈曲应变为0.064。在这项工作中,通过连续体模型获得的临界屈曲应变为0.061,非常接近值0.064。单壁碳纳米管具有非常强大的抗冲击扭矩,临界屈曲剪切应力可高达132GPa。

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