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Transient Analysis on Nonlinear Model of Electrostatically Actuated Nanomechanical Switch

机译:静电纳米机械开关非线性模型的瞬态分析

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This research predicted the transient behaviors of a nano-switch. The nano-switch consists of a cantilevered carbon nanotube incorporating the electrostatic forces and intermolecular attractive and repulsive forces between the CNT and graphene ground plane. To investigate the transient pull-in/out behaviors with large deflection of the CNT and different excitation frequency, our model includes geometric and inertial nonlinearities of the CNT. To solve this problem, we used the Galerkin discretization method and the numerical time integration technique. As a result, we identified that the nonlinear effect of CNT affects the pull-in behaviors calculating near the pull-in voltages with linear and nonlinear model. The nonlinear model had the lower pull-in voltage than that of the linear model. But, there are no significant differences between the linear and nonlinear model on pull-out behaviors. The contact bounce prevented the perfect pull-in when the nano-switch was switched quickly.
机译:该研究预测了纳米开关的瞬态行为。 纳米开关由悬臂碳纳米管组成,该碳纳米管包含静电力和CNT和石墨烯接地平面之间的分子间吸引力和排斥力。 为了研究具有CNT和不同励磁频率的大偏转的瞬态拉入/输出行为,我们的模型包括CNT的几何和惯性非线性。 为了解决这个问题,我们使用了Galerkin离散化方法和数值集成技术。 结果,我们认为CNT的非线性效应影响了具有线性和非线性模型的拉出电压附近计算的拉入行为。 非线性模型具有比线性模型的较低的拉出电压。 但是,拉出行为的线性和非线性模型之间没有显着差异。 当快速切换纳米开关时,接触反弹防止了完美的拉入。

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