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Tunable Clamped–Guided Arch Resonators Using Electrostatically Induced Axial Loads

机译:利用静电感应轴向载荷的可调谐夹紧导向拱形谐振器

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摘要

We present a simulation and experimental investigation of bi-directional tunable in-plane clamped–guided arch microbeam resonators. Tensile and compressive axial forces are generated from a bi-directional electrostatic actuator, which modulates the microbeam stiffness, and hence changes its natural frequency to lower or higher values from its as-fabricated value. Several devices of various anchor designs and geometries are fabricated. We found that for the fabricated shallow arches, the effect of the curvature of the arch is less important compared to the induced axial stress from the axial load. We have shown that the first mode resonance frequency can be increased up to twice its initial value. Additionally, the third mode resonance frequency can be increased up to 30% of its initial value. These results can be promising as a proof-of-concept for the realization of wide-range tunable microresonators. The experimental results have been compared to finite-element simulations, showing good agreement among them.
机译:我们提出了双向可调面内夹持导引拱形微束谐振器的仿真和实验研究。双向静电致动器产生拉伸和压缩轴向力,该双向静电致动器调节微束刚度,因此将其固有频率从其原始值更改为较低或较高的值。制作了多种具有各种锚设计和几何形状的装置。我们发现,对于制造的浅拱,与轴向载荷引起的轴向应力相比,拱的曲率影响不那么重要。我们已经表明,第一模式共振频率可以增加到其初始值的两倍。另外,第三模式共振频率可以增加到其初始值的30%。这些结果有望成为实现宽范围可调谐微谐振器的概念验证。将实验结果与有限元模拟进行了比较,表明它们之间具有良好的一致性。

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