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Dynamics of an Imperfect Microbeam Considering its Exact Shape

机译:考虑其精确形状的不完美微束的动力学

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We study the static and dynamic behavior of electrically actuated micromachined arches. First, we conduct experiments on micromachined polysilicon beams by driving them electrically and varying their amplitude and frequency of voltage loads. The results reveal several interesting nonlinear phenomena of jumps, hysteresis, and softening behaviors. Next, we conduct analytical and theoretical investigation to understand the experiments. First, we solve the Eigen value problem analytically. We study the effect of the initial rise on the natural frequency and mode shapes, and use a Galerkin-based procedure to derive a reduced order model, which is then used to solve both the static and dynamic responses. We use two symmetric modes in the reduced order model to have accurate and converged results. We use long time integration to solve the nonlinear ordinary differential equations, and then modify our model using effective length to match experimental results. To further improve the matching with the experimental data, we curve-fit the exact profile of the microbeam to match the experimentally measured profile and use it in the reduced-order model to generate frequency-response curves. Finally, we use another numerical technique, the shooting technique, to solve the nonlinear ordinary differential equations. By using shooting and the curve fitted function, we found that we get good agreement with the experimental data.
机译:我们研究了电动微机械拱的静态和动态行为。首先,我们通过电动驱动微束多晶硅梁并改变其电压负载的幅度和频率来进行实验。结果揭示了一些有趣的非线性现象,即跳跃,滞后和软化行为。接下来,我们进行分析和理论研究以了解实验。首先,我们通过分析来解决特征值问题。我们研究了初始上升对固有频率和模态形状的影响,并使用基于Galerkin的过程来导出降阶模型,然后将其用于求解静态和动态响应。我们在降阶模型中使用两个对称模式,以得到准确且收敛的结果。我们使用长时间积分来求解非线性常微分方程,然后使用有效长度修改模型以匹配实验结果。为了进一步改善与实验数据的匹配,我们对微束的精确轮廓进行曲线拟合以匹配实验测量的轮廓,并在降阶模型中使用它来生成频率响应曲线。最后,我们使用另一种数值技术(射击技术)来求解非线性常微分方程。通过射击和曲线拟合功能,我们发现与实验数据吻合良好。

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