Nonlinear nonlocal damped free and forced vibrations of piezoelectric SWCNTs under longitudinal magnetic field due to surface effects using a two steps perturbation method

Saeed Shahsavari, S. M. Ali Boutorabi
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Abstract

In the present work, damped free and forced vibrations of single-walled piezoelectric carbon nanotubes under longitudinal magnetic field due to surface effects surrounded on a non-linear viscoelastic medium using the nonlocal Euler-Bernoulli beam theory and multiple time scales method are investigated. Lorentz force equation is used to obtain the vertical force due to the applied voltage to the system. The surface effects as well as a combinational non-linear viscoelastic foundation are considered, and finally, the dynamic equilibrium equations are used, and non-linear equations of motion are extracted. In the following, the Galerkin and multiple time scales methods are used, and finally, analytical solutions are extracted as the non-linear free and forced vibrational responses of the system. The relevant coefficients of the extracted analytical solutions are discovered for two both simple support (S-S) and clamped (C-C) boundary conditions. In the following, , and the effects of the different parameters such as non-local parameter as well as electric-magnetic fields, effect of hardness-linear damping parameters of nonlinear considered viscoelastic foundation, applied magnetic field, base modes for different forms considering surface effects, and etc. will be studied. As one the results of this study, the presence of a non-local parameter has increased the curvature deviation to the right and the stiffening effect. In other words, the non-local parameter is a factor to increase the nonlinear effect of the system. Also, it is predictable that as the load affect position moves away from the center of the single-walled piezoelectric carbon nanotube toward the supports, the amplitude of the dynamic response decreases significantly, and this relative reduction is greater for the C-C boundary condition than for the S-S boundary condition. It is also important to note that the location of the load has no effect on the rate of deviation of the curve peak, and the degree of nonlinearity of the vibrational response of the system.
采用两步摄动方法,对纵向磁场下由表面效应引起的压电型SWCNTs的非线性非局部自由和强迫振动进行了阻尼
本文利用非局部欧拉-伯努利梁理论和多时间尺度方法,研究了单壁压电碳纳米管在纵向磁场作用下,由于粘弹性介质表面效应而产生的阻尼自由振动和强迫振动。用洛伦兹力方程求出系统在外加电压作用下的垂直力。考虑了表面效应和组合的非线性粘弹性基础,最后利用动力平衡方程,提取了非线性运动方程。下面分别采用Galerkin方法和多时间尺度方法,最后将解析解提取为系统的非线性自由和强迫振动响应。在简支(S-S)和固支(C-C)两种边界条件下,得到了解析解的相关系数。接下来将研究非局部参数和电磁场等不同参数的影响、非线性考虑粘弹性基础的硬度-线性阻尼参数的影响、外加磁场的影响、不同形式考虑表面效应的基模态等。研究结果表明,非局部参数的存在增加了曲率向右偏移和加筋效果。换句话说,非局部参数是增加系统非线性效应的一个因素。此外,可以预见,随着载荷影响位置从单壁压电碳纳米管中心向支撑物方向移动,动态响应幅度显著减小,且C-C边界条件下的相对减小幅度大于S-S边界条件。同样重要的是要注意,负载的位置对曲线峰值的偏差率和系统振动响应的非线性程度没有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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