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Determination of the stiffness properties of a complex RF MEMS by superposition and finite elements method

机译:叠加和有限元法测定复合RF MEMS的刚度特性

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摘要

In this study, the deflection and stiffness of a micro cantilever beam with a rectangular notch are derived analytically by considering a non-uniformly distributed load as a cause of deflection, since the shape of a distributed load at the exact collapse time is not uniform in the real scenario. In order to calculate the deflection, due to the design of the beam structure, the superposition method is employed as well as the fundamental principles of mechanics. Moreover, it is also utilized in the subsequent stiffness calculations. Particularly, the stiffness concept is discussed under three different subsets: natural, actuation, and release stiffness, as they are essentials for the switching operations. In addition to the analytical study, FEM simulations are also carried out using CoventorWare in order to compare with the derived models. As the results reveal that accuracies of both the analytical models and simulations are acceptable, this study provides a utilitarian framework for designing different complex MEMS.
机译:在该研究中,通过将非均匀分布的负载视为偏转的原因,分析地导出具有矩形缺口的微悬臂梁的偏转和刚度,因为在确切崩溃时间的分布式负载的形状不均匀真实的情景。为了计算偏转,由于光束结构的设计,采用叠加方法以及力学的基本原理。此外,它也用于随后的刚度计算。特别地,在三个不同的子集下讨论了刚度概念:自然,致动和释放刚度,因为它们对切换操作是必需品。除了分析研究外,还使用CoventorWare进行有限元模拟,以便与派生模型进行比较。结果表明,分析模型和模拟的准确性是可接受的,本研究为设计不同复杂MEMS提供了功利主义框架。

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