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Higher Order Modes Excitation of Micro Cantilever Beams

机译:微悬臂梁的高阶模态激励

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摘要

In this study, we present analytical and experimental investigation of electrically actuated micro cantilever based resonators. These devices are fabricated using polyimide and coated with chrome and gold layers from both sides. The cantilevers are highly curled up due to stress gradient, which is a common imperfection in surface micro machining. Using a laser Doppler vibrometer, we applied a noise signal to experimentally find the first four resonance frequencies. Then, using a data acquisition card, we swept the excitation frequency around the first four natural modes of vibrations. Theoretically, we derived a reduced order model using the Galerkin method to simulate the dynamics of the system. Extensive numerical analysis and computations were performed. The numerical analysis was able to provide good matching with experimental values of the resonance frequencies. Also, we proved the ability to excite higher order modes using partial electrodes with shapes that resemble the shape of the mode of interest. Such micro-resonators are shown to be promising for applications in mass and gas sensing.
机译:在这项研究中,我们介绍了基于电动微悬臂梁谐振器的分析和实验研究。这些器件是使用聚酰亚胺制造的,并且在两侧均镀有铬和金层。由于应力梯度,悬臂高度卷曲,这是表面微加工中的常见缺陷。使用激光多普勒振动计,我们施加了噪声信号,以实验方式找到前四个共振频率。然后,使用数据采集卡,将激振频率扫描到振动的前四个自然模式附近。从理论上讲,我们使用Galerkin方法推导了降阶模型来模拟系统的动力学。进行了广泛的数值分析和计算。数值分析能够提供与共振频率的实验值良好的匹配。同样,我们证明了使用形状类似于感兴趣模式的形状的部分电极激发更高阶模式的能力。这种微谐振器显示出在质量和气体传感中的应用前景广阔。

著录项

  • 作者

    Jaber Nizar;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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