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Piezoelectrically actuated microcantilevers: An experimental nonlinear vibration analysis

机译:压电致动微悬臂梁:实验非线性振动分析

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摘要

With daily growth of using microcantilevers in microelectromechanical systems, comprehensive analysis on their dynamical behavior is necessary since they are mostly utilized as the main sensing device. in this paper, out-of-plane vibrations of a piezoelectrically actuated microcantilever are experimentally investigated. The microcantilever's top layer is covered with a piezoelectric material (here, ZnO) through which it can be excited. The nonlinear frequency response of the microcantilever is studied and the resulting shift in natural frequency due to nonlinearity is examined. By observing the subharmonics of the fundamental frequencies at second and third order, it is experimentally shown that there exist Cubic and quadratic nonlinearities in the microcantilever. Mathematical models based on these experimental tests are then proposed and verified. The out-of-plane measurements provide the experimental ability to observe both transversal and torsional modes. In addition, the modes in which the microcantilever acts like a plate are observed and discussed.
机译:随着微悬臂梁在微机电系统中使用的日益增长,有必要对它们的动力学行为进行全面分析,因为它们通常被用作主要的传感设备。在本文中,对压电致动微悬臂梁的平面外振动进行了实验研究。微悬臂梁的顶层覆盖有压电材料(此处为ZnO),可通过该材料进行激励。研究了微悬臂梁的非线性频率响应,并研究了由于非线性导致的固有频率偏移。通过观察二阶和三阶基频的次谐波,实验表明在微悬臂梁中存在三次和二次非线性。然后提出并验证了基于这些实验测试的数学模型。平面外测量提供了观察横向和扭转模式的实验能力。另外,观察和讨论了微悬臂梁像板一样的模式。

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