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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Tunable electromechanical coupling of a carbon nanotube-reinforced variable cross-section nanoswitch with a piezoelectric effect
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Tunable electromechanical coupling of a carbon nanotube-reinforced variable cross-section nanoswitch with a piezoelectric effect

机译:压电效应的碳纳米管增强可变横截面纳米开关的可调谐机电耦合

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摘要

An analytical method is presented to investigate the pull-in instability of a carbon nanotube (CNT)-reinforced variable cross-section nanoswitch with a piezoelectric effect. Governing equations with variable coefficients are derived based on the nonlocal beam model with geometrical nonlinearity and are solved using the shooting method. All the nonlinear effects of the piezoelectric voltage, van der Waals force, Casimir force, CNT volume fraction, nonlocal parameters and width ratio on the pull-in instability are investigated. The pull-in electrostatic voltage increases with the increment of nonlocal parameters, which exhibits the significant scale-dependent behavior of nanostructures. The results show that the variable cross-section improves the flexural rigidity of the cantilever-type nanoswitch effectively, and that the piezoelectric effect of the piezoelectric layer is utilized to control the electrostatic force induced by the voltage exerted on the elastic layer, owing to piezoelectric materials' advantages of rapid response, light weight and low energy consumption.
机译:提出了一种分析方法来研究碳纳米管(CNT) - 重新剥离可变横截面纳米开关的拉伸稳定性,具有压电效应。基于具有几何非线性的非识别光束模型导出具有可变系数的控制方程,并使用拍摄方法解决。研究了压电电压,van der WaAs力,Casimir力,CNT体积分数,非函数参数和宽度比的所有非线性效应都是在拉伸不稳定性上的。随着非局部参数的增量而增加,引入静电电压增加,这表现出纳米结构的显着规模依赖性行为。结果表明,可有效地改善了悬臂式纳米开关的弯曲刚度,并且压电层的压电效应用于控制通过压电层施加在弹性层上施加在弹性层上的电压引起的静电力。材料快速响应,重量轻,能耗低的优点。

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