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Nonlinear vibration of carbon nanotube embedded in viscous elastic matrix under parametric excitation by nonlocal continuum theory

机译:非局部连续性理论在参数激励下嵌入黏性弹性矩阵的碳纳米管的非线性振动

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摘要

In the present work, the nonlinear vibration of a carbon nanotube which is subjected to the external parametric excitation is studied. By the nonlocal continuum theory and nonlinear von Karman beam theory, the governing equation of the carbon nanotube is derived with the consideration of the large deformation. The principle parametric resonance of the nanotube is discussed and the approximation explicit solution is presented by the multiple scale method. Numerical calculations are performed. It can be observed that when the mode number is 1, the stable region can be significantly changed by the parametric excitation, length-to-diameter ratio and matrix stiffness. This phenomenon becomes different to appear if the mode number increases. Moreover, the small scale effects have great influences on the positive bifurcation point for the short carbon nanotube, and the nonlocal continuum theory can present the proper model. (C) 2016 Elsevier B.V. All rights reserved.
机译:在目前的工作中,研究了受到外部参数激励的碳纳米管的非线性振动。利用非局部连续理论和非线性冯·卡曼束理论,在考虑大变形的前提下,推导了碳纳米管的控制方程。讨论了纳米管的基本参数共振,并通过多尺度方法给出了近似显式解。进行数值计算。可以看出,当模式数为1时,稳定区域可以通过参数激发,长径比和矩阵刚度显着改变。如果模式编号增加,此现象将变得不同。此外,小尺度效应对短碳纳米管的正分支点有很大的影响,非局部连续体理论可以提供合适的模型。 (C)2016 Elsevier B.V.保留所有权利。

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