首页> 外文会议>ASME international design engineering technical conferences and computers and information in engineering conference 2011.;vol. 7. >COMPREHENSIVE REDUCED-ORDER MODELS OF ELECTROSTATICALLY ACTUATED CURVED MEMS SWITCHES AND THEIR DYNAMICS INCLUDING IMPACT AND BOUNCE
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COMPREHENSIVE REDUCED-ORDER MODELS OF ELECTROSTATICALLY ACTUATED CURVED MEMS SWITCHES AND THEIR DYNAMICS INCLUDING IMPACT AND BOUNCE

机译:静电驱动弯曲MEMS开关的综合降阶模型及其动力学(包括冲击和弹跳)

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As Micro and Nano Electro-Mechanical devices continue to find more applications, the electrostatically actuated micro-beam remains one of the most frequently used structures due to its usefulness and relative simplicity of fabrication. Accurate models of these devices which are valid under a wide range of circumstances are important both for design as well as metrology efforts. Often certain device parameters are implicitly extracted via a mathematical model when they are very difficult to measure directly. This work details the development and results of a reduced-order model for the behavior of an electrostatically actuated beam. The model accounts for arbitrary initial curvature, residual stress, flexible boundary conditions and contact, while including accurate sub-models for the electrostatic and damping forces. The equation of motion of the beam is discretized via the traditional Galerkin method. Static and dynamic solutions are found through specified displacement schemes and direct time integration, respectively. The rich behavior of these systems can easily be seen in the results. Arched doubly-clamped beams can show a variety of bistable configurations and tri-stable solutions can be seen in the post-contact behavior of cantilever beams. Dynamic solutions reveal phenomena such as dynamic pull-in, dynamic snap-through, and bouncing behavior. The widely valid model presented here generally converges quickly and is well suited for design, analysis and uncertainty quantification.
机译:随着微和纳米机电设备的不断发现,静电驱动微束由于其实用性和相对简单的制造而仍然是最常用的结构之一。这些设备的准确模型在广泛的情况下都有效,这对设计和计量工作都至关重要。当某些设备参数很难直接测量时,通常会通过数学模型隐式提取它们。这项工作详细介绍了静电驱动光束行为的降阶模型的开发和结果。该模型考虑了任意的初始曲率,残余应力,灵活的边界条件和接触,同时包括用于静电力和阻尼力的精确子模型。光束的运动方程通过传统的Galerkin方法离散化。静态和动态解决方案分别通过指定的位移方案和直接时间积分找到。这些系统的丰富行为可以从结果中轻松看出。拱形双夹梁可以显示多种双稳态配置,并且在悬臂梁的接触后行为中可以看到三稳态解。动态解决方案揭示了诸如动态引入,动态捕捉和反弹行为之类的现象。这里介绍的广泛有效的模型通常可以快速收敛,非常适合设计,分析和不确定性量化。

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