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Nonlinear finite element analysis for vibrations of double-walled carbon nanotubes

机译:双壁碳纳米管振动的非线性有限元分析

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摘要

The large-amplitude free vibration analysis of double-walled carbon nanotubes embedded in an elastic medium is investigated by means of a finite element formulation. A double-beam model is utilized in which the governing equations of layers are coupled with each other via the van der Waals interlayer forces. Von-Karman type nonlinear strain-displacement relationships are employed where the ends of the nanotube are constrained to move axially. The amplitude-frequency response curves for large-amplitude free vibrations of single-walled and double-walled carbon nanotubes with arbitrary boundary conditions are graphically illustrated. The effects of material constant of the surrounding elastic medium and the geometric parameters on the vibration characteristics are investigated. For a double-walled carbon nanotube with different boundary conditions between inner and outer tubes, the nonlinear frequencies are obtained apparently for the first time. Comparison of the results with those from the open literature is made for the amplitude-frequency curves where possible. This comparison illustrates that the present scheme yields very accurate results in predicting the nonlinear frequencies.
机译:通过有限元公式研究了嵌入弹性介质中的双壁碳纳米管的大振幅自由振动分析。利用双光束模型,其中层的控制方程通过范德华层间力相互耦合。在纳米管的端部被约束轴向移动的情况下,采用了Von-Karman型非线性应变-位移关系。图示了具有任意边界条件的单壁和双壁碳纳米管大振幅自由振动的振幅-频率响应曲线。研究了周围弹性介质的材料常数和几何参数对振动特性的影响。对于内管和外管之间具有不同边界条件的双壁碳纳米管,显然是首次获得了非线性频率。在可能的情况下,将结果与公开文献中的结果进行比较,以得出振幅-频率曲线。该比较表明,本方案在预测非线性频率时产生非常准确的结果。

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