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Simple and Accurate Analytical Solutions of the Electrostatically Actuated Curled Beam Problem

机译:静电驱动弯梁问题的简单而精确的解析解

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We present analytical solutions of the electrostatically actuated initially deformed cantilever beam problem. We use a continuous Euler-Bernoulli beam model combined with a single-mode Galerkin approximation. We derive simple analytical expressions for two commonly observed deformed beams configurations: the curled and tilted configurations. The derived analytical formulas are validated by comparing their results to experimental data in the literature and numerical results of a multi-mode reduced order model. The derived expressions do not involve any complicated integrals or complex terms and can be conveniently used by designers for quick, yet accurate, estimations. The formulas are found to yield accurate results for most commonly encountered microbeams of initial tip deflections of few microns. For largely deformed beams, we found that these formulas yield less accurate results due to the limitations of the single-mode approximations they are based on. In such cases, multi-mode reduced order models need to be utilized.
机译:我们提出了静电驱动的初始变形悬臂梁问题的解析解。我们使用连续的Euler-Bernoulli光束模型与单模Galerkin近似相结合。我们导出了两种通常观察到的变形梁构型的简单解析表达式:卷曲和倾斜构型。通过将其解析结果与文献中的实验数据以及多模式降阶模型的数值结果进行比较,可以验证所导出的解析公式。派生的表达式不涉及任何复杂的积分或复杂的项,设计人员可以方便地使用它们来进行快速而准确的估计。对于最常见的几微米初始尖端挠度的微束,发现该公式可得出准确的结果。对于变形较大的光束,由于它们所基于的单模近似值的限制,我们发现这些公式得出的结果不太准确。在这种情况下,需要使用多模式降阶模型。

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