Analysis of Nonlinear Vibrations of Slightly Curved Tripled-Walled Carbon Nanotubes Resting on Elastic Foundations in a Magneto-Thermal Environment

M. Sobamowo, J. Akanmu, O. Adeleye, A. Yinusa
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Abstract

In this work, nonlocal elasticity theory is applied to analyze nonlinear free vibrations of slightly curved multi-walled carbon nanotubes resting on nonlinear Winkler and Pasternak foundations in a thermal and magnetic environment. With the aid of Galerkin decomposition method, the systems of nonlinear partial differential equations are transformed into systems of nonlinear ordinary differential equations which are solved using homotopy perturbation method. The influences of elastic foundations, magnetic field, temperature rise, interlayer forces, small scale parameter and boundary conditions on the frequency ratio are investigated. It is observed form the results that the frequency ratio for all boundary conditions decreases as the number of walls increases. Also, it is established that the frequency ratio is highest for clamped-simple supported and lowest for clamped-clamped supported. Further investigations on the controlling parameters of the phenomena reveal that the frequency ratio decreases with increase in the value of spring constant (k1) temperature and magnetic field strength. It is hoped that this work will enhance the applications of carbon nanotubes in structural, electrical, mechanical and biological applications especially in a thermal and magnetic environment.
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磁热环境下弹性基础上微弯曲三壁碳纳米管的非线性振动分析
本文应用非局部弹性理论分析了基于非线性温克勒和帕斯捷尔纳克地基的微弯曲多壁碳纳米管在热和磁环境下的非线性自由振动。利用伽辽金分解方法,将非线性偏微分方程组转化为非线性常微分方程组,用同伦摄动法求解。研究了弹性地基、磁场、温升、层间力、小尺度参数和边界条件对频率比的影响。结果表明,各边界条件下的频率比随壁数的增加而减小。此外,还确定了夹简支的频率比最高,夹简支的频率比最低。进一步研究了该现象的控制参数,发现频率比随着弹簧常数(k1)温度和磁场强度的增大而减小。希望这项工作能促进碳纳米管在结构、电气、机械和生物等方面的应用,特别是在热环境和磁环境中的应用。
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