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The Dynamics of MEMS Arches of Non-Ideal Boundary Conditions

机译:非理想边界条件的MEMS拱的动态

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We present an investigation into the dynamics of MEMS arches when actuated electrically including the effect of their flexible (non-ideal) supports. First, the eigenvalue problem of a nonlinear Euler-Bernoulli shallow arch with torsional and transversal springs at the boundaries is solved analytically. Several results are shown to demonstrate the possibility of tuning the theoretically obtained natural frequencies of an arch to match the experimentally measured. Then, simulation results are shown for the forced vibration response of an arch when excited by a DC electrostatic force superimposed to an AC harmonic load. Shooting technique is utilized to find periodic motions. The stability of the captured periodic motion is examined using the Floquet theory. The results show several jumps in the response during snap-through motion and pull-in. Theoretical and experimental investigations are conducted on a microfabricated curved beam actuated electrically. Results show softening behavior and superharmonic resonances. It is demonstrated that non-ideal boundary conditions can have significant effect on the qualitative dynamical behavior of the MEMS arch, including its natural frequencies, snap-through behavior, and dynamic pull-in.
机译:当电动包括其柔性(非理想)支撑的效果时,我们对MEMS拱门的动态进行了调查。首先,在边界处具有扭转和横向弹簧的非线性Euler-Bernoulli浅拱的特征值问题分析地解决了。示出了几个结果来证明调整理论上获得的拱的自然频率的可能性,以匹配实验测量的。然后,当通过叠加到AC谐波负载的DC静电力激发时,示出了拱形振动响应的模拟结果。拍摄技术用于寻找周期性运动。使用FLOQUET理论检查捕获的周期运动的稳定性。结果显示在快动运动和中拉期间响应的几个跳跃。理论和实验研究是在电气致动的微制造弯曲梁上进行的。结果表明软化行为和超高音响共振。据证明,非理想的边界条件对MEMS拱的定性动态行为有显着影响,包括其自然频率,快速行为和动态拉入。

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