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Magneto-thermal primary frequency response analysis of carbon nanotube considering surface effect under different boundary conditions

机译:考虑边界条件下表面效应的碳纳米管磁热主频响应分析

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摘要

Present study is devoted to study the nonlinear frequency response of single walled carbon nanotubes, SWCNTs, in the case of primary resonance. Based on the nonlocal Euler-Bernoulli beam theory, the nonlinear geometry, magneto-thermal field, residual stress and surface effects on the governing equation of system are taken into account. The Galerkin technique on the basis of trigonometric mode shape functions and multiple scales method are used to solve the nonlinear governing equations. The effects of the different boundary conditions including the simply supported at two ends, S-S, clamped-clamped, C-C and clamped-simply supported, C-S, longitudinal magnetic field, amplitude of excitation, detuning parameter and surface elasticity on the nonlinear primary frequency response are analytically investigated and discussed.
机译:目前的研究致力于研究在单级共振情况下单壁碳纳米管SWCNT的非线性频率响应。基于非局部Euler-Bernoulli束理论,考虑了非线性几何,磁热场,残余应力和表面效应对系统控制方程的影响。基于三角模态形状函数和多尺度方法的Galerkin技术用于求解非线性控制方程。不同的边界条件,包括两端的简单支承,SS,夹紧,CC和夹紧-简单支承,CS,纵向磁场,激励幅度,失谐参数和表面弹性,对非线性初级频率响应的影响是分析研究和讨论。

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