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Theoretical and Experimental Investigation of the Nonlinear Behavior of an Electrostatically Actuated In-Plane MEMS Arch

机译:静电驱动平面MEMS拱的非线性行为的理论和实验研究

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摘要

We present theoretical and experimental investigation of the nonlinear behavior of a clamped-clamped in-plane MEMS arch when excited by a DC electrostatic load superimposed to an AC harmonic load. Experimentally, a case study of in-plane silicon micromachined arch is examined and its mechanical behavior is measured using optical techniques. An algorithm is developed to extract the various parameters, such as the induced axial force and the initial rise, needed to model the behavior of the arch. A softening spring behavior is observed when the excitation is close to the first resonance frequency due to the quadratic nonlinearity coming from the arch geometry and the electrostatic force. Also, a hardening spring behavior is observed when the excitation is close to the third (second symmetric) resonance frequency due to the cubic nonlinearity coming from mid-plane stretching. Dynamic snap-through behavior is also reported for larger range of electric loads. Theoretically, a multi-mode Galerkin reduced order model is utilized to simulate the arch behavior. General agreement is reported among the theoretical and experimental data.
机译:我们目前的理论和实验研究,当由直流静电负载叠加到交流谐波负载激励时,钳夹式平面MEMS拱的非线性行为。通过实验,研究了平面硅微加工拱的案例研究,并使用光学技术测量了其机械性能。开发了一种算法来提取建模拱形行为所需的各种参数,例如感应轴向力和初始上升。当激励接近于第一共振频率时,由于来自拱形几何形状和静电力的二次非线性,观察到了软化的弹簧特性。此外,由于中平面拉伸产生的立方非线性,当激励接近第三(第二对称)共振频率时,会观察到硬化弹簧的行为。还报道了更大范围的电负载的动态捕捉特性。从理论上讲,多模式Galerkin降阶模型用于模拟足弓行为。在理论和实验数据之间报告了基本一致。

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