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Wave propagation in single-walled carbon nanotube under longitudinal magnetic field using nonlocal Euler-Bernoulli beam theory

机译:基于非局部Euler-Bernoulli束理论的纵向磁场在单壁碳纳米管中的波传播

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In the present work, the effect of longitudinal magnetic field on wave dispersion characteristics of equivalent continuum structure (ECS) of single-walled carbon nanotubes (SWCNT) embedded in elastic medium is studied. The ECS is modelled as an Euler-Bernoulli beam. The chemical bonds between a SWCNT and the elastic medium are assumed to be formed. The elastic matrix is described by Pasternak foundation model, which accounts for both normal pressure and the transverse shear deformation. The governing equations of motion for the ECS of SWCNT under a longitudinal magnetic field are derived by considering the Lorentz magnetic force obtained from Maxwell's relations within the frame work of nonlocal elasticity theory. The wave propagation analysis is performed using spectral analysis. The results obtained show that the velocity of flexural waves in SWCNTs increases with the increase of longitudinal magnetic field exerted on it in the frequency range; 0-20 THz. The present analysis also shows that the flexural wave dispersion in the ECS of SWCNT obtained by local and nonlocal elasticity theories differ. It is found that the nonlocality reduces the wave velocity irrespective of the presence of the magnetic field and does not influences it in the higher frequency region. Further it is found that the presence of elastic matrix introduces the frequency band gap in flexural wave mode. The band gap in the flexural wave is found to independent of strength of the longitudinal magnetic field.
机译:在本工作中,研究了纵向磁场对嵌入弹性介质中的单壁碳纳米管(SWCNT)等效连续体结构(ECS)的波色散特性的影响。 ECS被建模为Euler-Bernoulli光束。假设在SWCNT和弹性介质之间形成了化学键。弹性矩阵由Pasternak基础模型描述,该模型同时考虑了法向压力和横向剪切变形。通过考虑在非局部弹性理论框架内从麦克斯韦关系获得的洛伦兹磁力,得出了纵向磁场下SWCNT ECS的运动控制方程。使用频谱分析来执行波传播分析。结果表明,在频率范围内,SWCNTs中弯曲波的速度随纵向磁场的增加而增加。 0-20太赫兹目前的分析还表明,通过局部和非局部弹性理论获得的SWCNT的ECS中的弯曲波色散是不同的。已经发现,非局部性降低了波速,而与磁场的存在无关,并且在较高频率区域中不影响波速。进一步发现,弹性矩阵的存在在弯曲波模式下引入了频带隙。发现弯曲波中的带隙与纵向磁场的强度无关。

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