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Transverse vibrations of single-walled carbon nanotubes with initial stress under magnetic field

机译:磁场作用下具有初始应力的单壁碳纳米管的横向振动

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This article presents an analytical study, by considering the initial stress presence, for the transverse vibrations of single-walled carbon nanotubes under longitudinal magnetic field. The behavior of single-walled carbon nanotube is modelled as a Timoshenko beam. The explicit solutions are derived for both a combined stress/strain and a combined strain/inertia gradient elasticity theories. A numerical application is carried out for a simply supported single walled carbon nanotube. The numerical results showing the effects of initial stress and longitudinal magnetic field are presented in detail, for the different length scale parameters. This analysis reveals new significant findings for the critical buckling stress and the different capabilities of scale parameters under the magnetic field. This work carried out for the effect of longitudinal magnetic field on the wave propagation in the carbon nanotubes containing the initial stress may be useful particularly in the design and applications of nano electro mechanical systems.
机译:本文考虑了初始应力的存在,对纵向磁场作用下单壁碳纳米管的横向振动进行了分析研究。将单壁碳纳米管的行为建模为Timoshenko束。对于组合的应力/应变和组合的应变/惯性梯度弹性理论,都导出了显式解。对简单支撑的单壁碳纳米管进行了数值应用。对于不同的长度尺度参数,详细给出了显示初始应力和纵向磁场影响的数值结果。该分析揭示了对于临界屈曲应力和磁场条件下尺度参数的不同能力的新的重要发现。对于纵向磁场对包含初始应力的碳纳米管中的波传播的影响而进行的这项工作可能在纳米机电系统的设计和应用中特别有用。

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