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Influence of intermolecular forces on dynamic pull-in instability of microano bridges

机译:分子间力对微纳桥动态拉入不稳定性的影响

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In this study, influences of intermolecular forces on dynamic pull-in instability of electrostatically actuated beams are investigated. Effects of midplane stretching, electrostatic actuation, fringing fields and intermolecular forces are considered. The boundary conditions of the beams are clamped-free and clamped-clamped. A finite element model is developed to discretize the governing equations and Newmark time discretization is then employed to solve the discretized equations. The results indicate that by increasing the Casimir and van der Waals effects, the effect of inertia on pull-in values considerably increases.
机译:在这项研究中,研究了分子间力对静电驱动梁动态拉入不稳定性的影响。考虑了中平面拉伸,静电驱动,边缘场和分子间力的影响。梁的边界条件是自由夹紧和夹紧夹紧的。建立了有限元模型来离散控制方程,然后采用Newmark时间离散来求解离散方程。结果表明,通过增加卡西米尔效应和范德华效应,惯性对吸合值的影响大大增加。

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