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Scale-Dependent Dynamic-Pull-In of Functionally Graded Carbon Nanotubes Reinforced Nanodevice with Piezoelectric Layer

机译:具有压电层的功能梯度碳纳米管增强纳米器件的尺度依赖动态拉入

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This paper proposes a scale-dependent model to investigate the dynamic-pull-in characteristics of a functionally graded carbon nanotubes (FGCNTs) reinforced nanodevice with a piezoelectric layer. Based on nonlocal beam theory, the nonlinear thermoelectromechanical coupling dynamic governing equation of an electrostatically actuated nanodevice is derived. The material properties of the functionally graded layer depend on temperature environment, thickness, volume ratio, and distribution of carbon nanotubes (CNTs) reinforcement. The van der Waals interaction and Casimir force are considered in the dynamic-pull-in analysis. The homotopy perturbation method is used to obtain a second-order approximated analytical function of nature frequency with respect to initial amplitude. The influences of piezoelectric effect, temperature change, nonlocal parameters, distribution, and volume ratio of CNTs and initial amplitude on dynamic-pull-in behaviors and natural frequencies of the nanodevice are discussed. The results show that the system has one stable focus point at the domain of small initial amplitude and appears in a particular homoclinic orbit originating point and ends at an unstable saddle point. (C) 2016 American Society of Civil Engineers.
机译:本文提出了一种基于比例的模型,以研究功能梯度碳纳米管(FGCNTs)增强的带有压电层的纳米器件的动态拉入特性。基于非局部束理论,推导了静电驱动纳米器件的非线性热电耦合动力学控制方程。功能梯度层的材料属性取决于温度环境,厚度,体积比和碳纳米管(CNT)增强材料的分布。在动态拉入分析中考虑了范德华相互作用和卡西米尔力。同伦摄动法用于获得自然频率相对于初始振幅的二阶近似分析函数。讨论了压电效应,温度变化,非局部参数,碳纳米管的分布,体积比和初始振幅对纳米器件的动态吸收行为和固有频率的影响。结果表明,该系统在较小的初始振幅范围内具有一个稳定的焦点,并出现在特定的同斜轨道起始点,并在不稳定的鞍点处结束。 (C)2016年美国土木工程师学会。

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