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Wave propagation in multiwall carbon nanotubes embedded in a matrix material

机译:嵌入基质材料的多壁碳纳米管中的波传播

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摘要

This paper presents an analytical method to investigate wave propagation in individual multiwall carbon nanotubes (MWNTs) or MWNTs embedded in an elastic matrix, by using a laminated cylindrical shell mode. Each of the concentric tubes of the MWNTs is an individual elastic shell and coupled with adjacent tubes through van der Waals interaction. The effect of matrix surrounding MWNTs is considered as a spring defined by the Winkler model. The disperse curves are obtained by solving an eigenvalue problem. The wave propagation characteristics and the amplitude radio between two walls of MWNTs are described by using the dispersive curves. Results show that the matrix surrounding MWNTs takes an increase in the threshold frequency of wave propagation in the MWNTs, and the effect of matrix stiffness on the velocity and the amplitude ratio between two walls of wave propagation in MWNTs embedded in an elastic matrix is dependent on wave modes.
机译:本文提出了一种分析方法,通过使用叠层圆柱壳模式研究在单个多壁碳纳米管(MWNT)或嵌入弹性矩阵中的MWNT中的波传播。 MWNT的每个同心管是一个单独的弹性壳,并通过范德华相互作用与相邻的管耦合。 MWNT周围的矩阵效应被认为是Winkler模型定义的弹簧。色散曲线是通过求解特征值问题而获得的。利用色散曲线描述了MWNTs两壁之间的波传播特性和振幅无线电。结果表明,围绕弹性碳纳米管的基体使波传播的阈值频率增加,而基体刚度对嵌入弹性矩阵的弹性碳纳米管中波传播的两壁之间的速度和振幅比的影响取决于波浪模式。

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