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首页> 外文期刊>International Journal of Mechanical Sciences >Nonlinear pull-in instability and free vibration of microanoscale plates with surface energy - A modified couple stress theory model
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Nonlinear pull-in instability and free vibration of microanoscale plates with surface energy - A modified couple stress theory model

机译:具有表面能的微纳尺度板的非线性引入不稳定性和自由振动-修正的耦合应力理论模型

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摘要

Effects of surface energy on the pull-in instability and free vibration of electrostatically actuated microanoscale plates are analyzed based on the modified couple stress theory. A reduced-order model is derived to consider the geometrically nonlinear strain, surface energy, the Casimir force and the material length scale simultaneously. Results show that the pull-in voltage and fundamental frequency of the plate are considerably enhanced by the material length scale, surface energy and geometrically nonlinear deformation. However, these quantities are weakened with the inclusion of Casimir force. The effects of surface energy and the material length scale become more significant if the thickness decreases. In addition, the effects of surface energy and geometrically nonlinear strain on the pull-in voltage are the largest for a square plate. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于改进的耦合应力理论,分析了表面能对静电微/纳米板拉入不稳定性和自由振动的影响。导出降阶模型以同时考虑几何非线性应变,表面能,卡西米尔力和材料长度尺度。结果表明,材料长度尺度,表面能和几何非线性变形大大提高了板的引入电压和基频。但是,随着卡西米尔力的加入,这些量会减弱。如果厚度减小,表面能和材料长度尺度的影响将变得更加明显。此外,对于方形板,表面能和几何非线性应变对吸合电压的影响最大。 (C)2015 Elsevier Ltd.保留所有权利。

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