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Longitudinal, transverse, and torsional vibrations and stabilities of axially moving single-walled carbon nanotubes

机译:轴向移动的单壁碳纳米管的纵向,横向和扭转振动和稳定性

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摘要

Thanks to the brilliant mechanical properties of single-walled carbon nanotubes (SWCNTs), they are suggested as high speed nanoscale vehicles. To date, various aspects of vibrations of SWCNTs have been addressed; however, vibrations and instabilities of moving SWCNTs have not been thoroughly assessed. Herein, vibrational properties of an axially moving SWCNT with simply supported ends are studied using nonlocal Rayleigh beam theory. Employing assumed mode and Galerkin methods, the discrete governing equations pertinent to longitudinal, transverse, and torsional motions of the moving SWCNT are obtained. The resulting eigenvalue equations are then numerically solved. The speeds corresponding to the initiation of the instability within the moving nanostructure are calculated. The roles of the speed of the moving SWCNT, small-scale parameter, and aspect ratio on the characteristics of longitudinal, transverse, and torsional vibrations of axially moving SWCNTs are scrutinized. The obtained results show that the appearance of the small-scale parameter would result in the occurrence of both divergence and flutter instabilities at lower levels of the speed.
机译:由于单壁碳纳米管(SWCNT)的出色机械性能,它们被建议用作高速纳米级车辆。迄今为止,已经解决了SWCNT的振动的各个方面。但是,尚未完全评估移动的SWCNT的振动和不稳定性。在此,使用非局部瑞利束理论研究了具有简单支撑端的轴向移动SWCNT的振动特性。利用假定模式和Galerkin方法,获得了与移动SWCNT的纵向,横向和扭转运动有关的离散控制方程。然后对所得的特征值方程进行数值求解。计算与移动的纳米结构内的不稳定性的引发相对应的速度。仔细研究了移动SWCNT的速度,小尺度参数和纵横比对轴向移动SWCNT的纵向,横向和扭转振动特性的影响。获得的结果表明,小尺度参数的出现将导致在较低的速度水平下发散和颤动不稳定性的发生。

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