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Elastic wave propagation in magnetically affected double-walled carbon nanotubes

机译:受磁影响的双壁碳纳米管中的弹性波传播

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摘要

This work deals with the characteristics of the transverse waves within embedded double-walled carbon nanotubes (DWCNTs) which are subjected to an axial magnetic field. Nonlocal Rayleigh, Timoshenko, and higher-order beam theories are adopted. The flexural and shear frequencies as well as their corresponding phase and group velocities of the sound waves for the proposed models are obtained. The role of strength of longitudinal magnetic field (LMF), geometry properties of the DWCNT, size dependency, wavenumber, and elastic properties of the surrounding matrix on the characteristics of the sound waves are explained. The capabilities of the proposed models in capturing such characteristics of the propagated waves are also discussed. The predicted results reveal that the flexural frequencies magnifies with the LMF up to a certain value; however, no distinguished variations for the shear frequencies as a function of the LMF are observed. For the LMF greater than that certain value, the variation of the LMF has a very trivial influence on the variation of the flexural frequencies. Nevertheless, for such a range of the LMF and most wavenumbers, the shear frequencies linearly increase with the LMF.
机译:这项工作处理了在轴向磁场作用下的嵌入式双壁碳纳米管(DWCNT)中的横波特性。采用了非局部瑞利,蒂莫申科和高阶光束理论。对于所提出的模型,获得了声波的弯曲和剪切频率以及它们的相应相位和群速度。解释了纵向磁场强度(LMF),DWCNT的几何特性,尺寸依赖性,波数以及周围矩阵的弹性特性对声波特性的作用。还讨论了所提出的模型捕获传播波的这种特性的能力。预测结果表明,挠曲频率随LMF放大到一定值。然而,没有观察到剪切频率作为LMF的函数的明显变化。对于大于该特定值的LMF,LMF的变化对弯曲频率的变化影响很小。然而,对于这样一个范围的LMF和大多数波数,剪切频率随LMF线性增加。

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