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An electrostatic actuator with inherent variable stiffness to suppress bounce with robustness against gap variations

机译:具有固有的可变刚度的静电致动器,以抑制反弹,以鲁棒性对间隙变化

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In this paper, we propose an inherent variable stiffness approach to suppress bounce of electrostatic actuator caused by the gap deviation which is unavoidable because of the micro-fabrication deviation, the tear and wear in the device life-cycle. The variable stiffness is realized through simple clamped-guided beam with large deformations. It have been demonstrated that for the 0.3 μm gap variation, the fluctuation of collision speed (from zero to 2.7cm/s) for the variable stiffness actuator is 62% less than that of constant stiffness counterpart (from zero to 7.18cm/s) under the dual pulse voltage actuation. Meanwhile, the driving voltage based on the variable stiffness spring is only 19.5% lower than that of the constant stiffness spring. The proposed variable stiffness approach may find ample application for extending the life-cycle.
机译:在本文中,我们提出了一种固有的可变刚度方法来抑制由间隙偏差引起的静电致动器的反弹,这是由于微制造偏差,撕裂和磨损在装置寿命周期中的磨损。通过具有大变形的简单夹紧引导的梁实现可变刚度。已经证明,对于0.3μm的间隙变化,可变刚度致动器的碰撞速度(从零至2.7cm / s的波动的波动比恒定刚度对应物的62×%(从零到7.18cm / s。 )在双脉冲电压致动下。同时,基于可变刚度弹簧的驱动电压仅比恒定刚度弹簧的19.5±5%。所提出的可变刚度方法可以找到延长生命周期的充分应用。

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