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首页> 外文期刊>Smart structures and systems >Non-linear free and forced vibration analysis of sandwich nano-beam with FG-CNTRC face-sheets based on nonlocal strain gradient theory
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Non-linear free and forced vibration analysis of sandwich nano-beam with FG-CNTRC face-sheets based on nonlocal strain gradient theory

机译:基于非局部应变梯度理论的FG-CNTRC面板夹层纳米梁的非线性自由强迫振动分析

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摘要

In this paper, the nonlinear free and forced vibration responses of sandwich nano-beams with three various functionally graded (FG) patterns of reinforced carbon nanotubes (CNTs) face-sheets are investigated. The sandwich nano-beam is resting on nonlinear Visco-elastic foundation and is subjected to thermal and electrical loads. The nonlinear governing equations of motion are derived for an Euler-Bernoulli beam based on Hamilton principle and von Karman nonlinear relation. To analyze nonlinear vibration, Galerkin's decomposition technique is employed to convert the governing partial differential equation (PDE) to a nonlinear ordinary differential equation (ODE). Furthermore, the Multiple Times Scale (MTS) method is employed to find approximate solution for the nonlinear time, frequency and forced responses of the sandwich nano-beam. Comparison between results of this paper and previous published paper shows that our numerical results are in good agreement with literature. In addition, the nonlinear frequency, force response and nonlinear damping time response is carefully studied. The influences of important parameters such as nonlocal parameter, volume fraction of the CNTs, different patterns of CNTs, length scale parameter, Visco-Pasternak foundation parameter, applied voltage, longitudinal magnetic field and temperature change are investigated on the various responses. One can conclude that frequency of FG-AV pattern is greater than other used patterns.
机译:在本文中,研究了具有三种不同功能梯度(FG)图案的增强碳纳米管(CNTs)面板的夹层纳米束的非线性自由振动和强迫振动响应。夹层纳米束位于非线性粘弹性基础上,并承受热负荷和电负荷。基于汉密尔顿原理和冯·卡曼非线性关系,推导了欧拉-伯努利梁的非线性运动控制方程。为了分析非线性振动,采用Galerkin分解技术将控制性偏微分方程(PDE)转换为非线性常微分方程(ODE)。此外,采用多次尺度法(MTS)来为三明治纳米束的非线性时间,频率和强迫响应找到近似解。本文结果与先前发表论文的比较表明,我们的数值结果与文献吻合良好。此外,还仔细研究了非线性频率,力响应和非线性阻尼时间响应。研究了非局部参数,碳纳米管的体积分数,碳纳米管的不同图案,长度尺度参数,Visco-Pasternak地基参数,施加电压,纵向磁场和温度变化等重要参数对各种响应的影响。可以得出结论,FG-AV模式的频率大于其他使用的模式。

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