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Modeling the pull-in instability of the CNT-based probe/actuator under the Coulomb force and the van der Waals attraction

机译:模拟在库仑力和范德华力吸引下基于CNT的探头/执行器的拉入不稳定性

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摘要

Carbon nano-tube (CNT) is applied to fabricate nano-probes, nano-switches, nano-sensors and nano-actuators. In this paper, a continuum model is employed to obtain the nonlinear constitutive equation and pull-in instability of CNT-based probe/actuators, which includes the effect of electrostatic interaction and intermolecular van der Waals (vdW) forces. The modified Adomian decomposition (MAD) method is applied to solve the nonlinear governing equation of the CNT-based actuator. Furthermore a simple and useful lumped parameter model was developed to investigate trends for various pull-in parameters. The influence of the vdW force and the geometrical dimensionless parameter on the pull-in deflection and voltage of the system is investigated. The obtained results are compared with those available in the literature as well as numerical solutions. The results demonstrate that our developed continuum based model is in good agreement with experimental results.
机译:碳纳米管(CNT)用于制造纳米探针,纳米开关,纳米传感器和纳米执行器。本文采用连续模型来获得基于碳纳米管的探针/执行器的非线性本构方程和引入不稳定性,其中包括静电相互作用和分子间范德华力(vdW)的影响。改进的Adomian分解(MAD)方法用于求解基于CNT的执行器的非线性控制方程。此外,开发了一个简单而有用的集总参数模型来研究各种引入参数的趋势。研究了vdW力和几何无量纲参数对系统的拉入挠度和电压的影响。将获得的结果与文献中可用的结果以及数值解进行比较。结果表明,我们开发的基于连续谱的模型与实验结果非常吻合。

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