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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Pull-in analysis of electrically actuated viscoelastic microbeams based on a modified couple stress theory
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Pull-in analysis of electrically actuated viscoelastic microbeams based on a modified couple stress theory

机译:基于修正耦合应力理论的电驱动粘弹性微梁的拉入分析

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摘要

A new beam model is developed for the viscoelastic microbeam based on a modified couple stress model which contains only one material length scale parameter. The governing equations of equilibrium together with initial conditions and boundary conditions are obtained by a combination of the basic equations of modified couple stress theory and Hamilton's principle. This new beam model is then used for an electrically actuated microbeam-based MEMS structure. The dynamic and quasi-static governing equations of an electrically actuated viscoelastic microbeam are firstly given where the axial force created by the midplane stretching effect is also considered. Galerkin method is used to solve above equation and this method is also validated by the finite element method (FEM) when our model is reduced into an elastic case. The numerical results show that the instantaneous pull-in voltage, durable pull-in voltage and pull-in delay time predicted by this newly developed model is larger (longer) than that predicted by the classical beam model. A comparison between the quasi-static model results and the dynamic model results is also given.
机译:基于修改后的耦合应力模型(仅包含一个材料长度比例参数),为粘弹性微梁开发了一种新的梁模型。通过修改偶应力理论的基本方程和汉密尔顿原理的组合,获得了平衡的控制方程以及初始条件和边界条件。然后,将这种新的光束模型用于基于电动微束的MEMS结构。首先给出了电致粘弹性微束的动态和准静态控制方程,其中还考虑了由中平面拉伸效应产生的轴向力。 Galerkin方法用于求解上述方程,当我们的模型简化为弹性情况时,该方法也通过有限元方法(FEM)进行了验证。数值结果表明,该新模型预测的瞬时吸合电压,耐久吸合电压和吸合延迟时间比经典梁模型预测的要大(更长)。还给出了准静态模型结果与动态模型结果之间的比较。

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