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Electrothermally actuated tunable clamped-guided resonant microbeams

机译:电热致动可调谐夹持引导共振微束

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We present simulation and experimental investigation demonstrating active alteration of the resonant and frequency response behavior of resonators by controlling the electrothermal actuation method on their anchors. In-plane clamped-guided arch and straight microbeams resonators are designed and fabricated with V-shaped electrothermal actuators on their anchors. These anchors not only offer various electrothermal actuation options, but also serve as various mechanical stiffness elements that affect the operating resonance frequency of the structures. We have shown that for an arch, the first mode resonance frequency can be increased up to 50% of its initial value. For a straight beam, we have shown that before buckling, the resonance frequency decreases to very low values and after buckling, it increases up to twice of its initial value. These results can be promising for the realization of different wide-range tunable microresonator. The experimental results have been compared to multi-physics finite-element simulations showing good agreement among them.
机译:我们目前的仿真和实验研究表明,通过控制电锚的电热驱动方法,可以主动改变谐振器的谐振和频率响应行为。平面内夹紧引导的拱形和直形微束谐振器是在其锚固件上使用V形电热致动器设计和制造的。这些锚不仅提供各种电热致动选项,而且还充当影响结构的工作共振频率的各种机械刚度元素。我们已经表明,对于拱形结构,第一模式共振频率可以增加到其初始值的50%。对于直光束,我们已经表明,在屈曲之前,谐振频率降低到非常低的值,而在屈曲之后,谐振频率增加到其初始值的两倍。这些结果对于实现不同的宽范围可调谐微谐振器有希望。将实验结果与多物理场有限元模拟进行了比较,结果表明它们之间具有良好的一致性。

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