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PARAMETRIC EXCITATION OF FLEXURAL VIBRATIONS OF MICRO BEAMS BYFRINGING ELECTROSTATIC FIELDS

机译:静电场对微梁弯曲振动的参数激励

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摘要

We report on an approach for efficient excitation of large amplitude flexural out-of-plane vibrations of micro beams and present results of theoretical and experimental feasibility study of the suggested principle. An actuating electrode is located symmetrically at the two sides of the beam and is fabricated from the same layer of the wafer. The electrostatic force is engendered by the asymmetry of the fringing fields in the deformed state and acts in the direction opposite to the deflection therefore increasing the effective stiffness of the system. The time-varying voltage applied to the electrode results in the modulation of this electrostatic stiffness and consequently in the parametric excitation of the structure. The device may exhibit large vibrational amplitudes not limited by the pull-in instability common in close-gap actuators. In contrast to previously reported devices excited by the fringing fields, the force considered here is of distributed character. The reduced order model was built using the Galerkin decomposition with linear modes as base functions and the resulting system of nonlinear differential equations was solved numerically. The electrostatic forces were approximated by means of fitting the results of three-dimensional numerical solution for the electric fields. The devices fabricated from a silicon on insulator (SOI) substrate using deep reactive ion etching (DRIE) based process were operated in ambient air conditions and the responses were registered by means of Laser Dpppler Vibrome-try. The experimental resonant curves were consistent with those predicted by the model. Theoretical and preliminary experimental results illustrated the feasibility of the suggested approach.
机译:我们报告了一种有效激发微束的大幅度弯曲面外振动的方法,并提出了所建议原理的理论和实验可行性研究的结果。致动电极对称地位于梁的两侧,并由晶片的同一层制成。静电力是在变形状态下由边缘场的不对称产生的,并在与偏转相反的方向上作用,因此增加了系统的有效刚度。施加到电极上的时变电压导致该静电刚度的调制,并因此导致结构的参数激励。该设备可能会表现出较大的振动幅度,不受紧间隙致动器常见的吸合不稳定性的限制。与先前报道的由边缘场激发的设备相反,此处考虑的力具有分布特性。以线性模式为基本函数的Galerkin分解建立了降阶模型,并对所得的非线性微分方程组进行了数值求解。通过拟合电场的三维数值解的结果来近似静电力。使用基于深度反应离子刻蚀(DRIE)的绝缘硅(SOI)衬底制造的设备在环境空气条件下运行,并通过激光多普勒振动试验记录响应。实验共振曲线与模型预测的一致。理论和初步实验结果说明了该方法的可行性。

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  • 来源
  • 会议地点 Montreal(CA);Montreal(CA);Montreal(CA);Montreal(CA);Montreal(CA);Montreal(CA)
  • 作者单位

    Microsystems Design and Characterization Laboratory School of Mechanical Engineering, Faculty of Engineering, Tel Aviv University, Ramat Aviv, 69978, Israel;

    Medica Group, Medolla (MO), Italy;

    Microsystems Design and Characterization Laboratory School of Mechanical Engineering, Faculty of Engineering, Tel Aviv University, Ramat Aviv, 69978, Israel;

    Microsystems Design and Characterization Laboratory School of Mechanical Engineering, Faculty of Engineering, Tel Aviv University, Ramat Aviv, 69978, Israel;

    Microsystems Design and Characterization Laboratory School of Mechanical Engineering, Faculty of Engineering, Tel Aviv University, Ramat Aviv, 69978, Israel;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程设计;
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