首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >AN EXPERIMENTAL AND THEORETICAL INVESTIGATION OF NONLINEAR VIBRATIONS OF PIEZOELECTRICALLY-DRIVEN MICROCANTILEVERS
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AN EXPERIMENTAL AND THEORETICAL INVESTIGATION OF NONLINEAR VIBRATIONS OF PIEZOELECTRICALLY-DRIVEN MICROCANTILEVERS

机译:压电驱动微电子非线性振动的实验与理论研究

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The nonlinear vibrations of a piezoelectrically-driven microcantilever beam are experimentally and theoretically investigated. A part of the microcantilever beam surface is covered by a piezoelectric layer, which acts as an actuator. Practically, the first resonance of the beam is of interest, and hence, the microcantilever beam is modeled to obtain the natural frequency theoretically. The bending vibrations of the beam are studied considering the inextensibility condition and the coupling between electrical and mechanical properties in piezoelectric materials. The nonlinear term appears in the form of quadratic due to presence of piezoelectric layer, and cubic form due to geometry of the beam (mainly due to the beam's inextensibility). Galerkin approximation is utilized to discretize the equations of motion. The obtained equation is simulated to find the natural frequency of the system. In addition, method of multiple scales is applied to the equations of motion to arrive at the closed-form solution for natural frequency of the system. The experimental results verify the theoretical findings very closely. It is, therefore, concluded that the nonlinear approach could provide better dynamic representation of the microcantilever than previous linear models.
机译:通过实验和理论上研究了压电驱动的微型膜梁的非线性振动。微电势束表面的一部分被压电层覆盖,该压电层用作致动器。实际上,光束的第一谐振是感兴趣的,因此,微静电光束被建模以理论上地获得自然频率。考虑到压电材料中的电气和机械性能之间的不良状态和耦合,研究了光束的弯曲振动。非线性术语由于压电层的存在,并且由于光束的几何形状而存在二次标的形式(主要是由于光束的不透明度)。 Galerkin近似用于离散运动方程。模拟所获得的等式以找到系统的自然频率。另外,将多个尺度的方法应用于运动的方程,以便到达系统的固有频率的闭合液。实验结果非常密切地验证理论结果。因此,结论是非线性方法可以提供比以前的线性模型更好地动态表示微电子。

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