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首页> 外文期刊>Journal of vibration and control: JVC >Nonlinear dynamics of a functionally graded piezoelectric micro-resonator in the vicinity of the primary resonance
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Nonlinear dynamics of a functionally graded piezoelectric micro-resonator in the vicinity of the primary resonance

机译:在初级共振附近的功能渐变压电微谐振器的非线性动力学

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摘要

This research is on the nonlinear dynamics of a two-sided electrostatically actuated capacitive micro-beam. The micro-resonator is composed of silicon and PZT as a piezoelectric material. PZT is functionally distributed along the height of the micro-beam according to the power law distribution. The micro-resonator is simultaneously subjected to DC piezoelectric and two-sided electrostatic actuations. The DC piezoelectric actuation leads to the generation of an axial force along the length of the micro-beam and this is used as a tuning tool to shift the primary resonance of the micro-resonator. The governing equation of the motion is derived by the minimization of the Hamiltonian and generalized to the viscously damped systems. The periodic solutions in the vicinity of the primary resonance are detected by means of the shooting method and their stability is investigated by determining the so-called Floquet exponents of the perturbed motions. The basins of attraction corresponding to three individual periodic orbits are determined. The results depict that the higher the amplitude of the periodic orbit, the smaller is the area of the attractor.
机译:该研究采用双面静电致动电容微梁的非线性动态。微谐振器由硅和PZT作为压电材料组成。根据电力法分布,PZT沿着微光束的高度在功能上分布。微谐振器同时进行DC压电和双面静电致动。 DC压电致动导致沿着微束的长度产生轴向力,并且这用作调谐工具以改变微谐振器的初级谐振。运动的控制方程是通过汉密尔顿的最小化和广泛地推导到粘性阻尼系统。通过拍摄方法检测初级谐振附近的周期性溶液,并通过确定扰动运动的所谓的浮子指数来研究它们的稳定性。确定对应于三个单独的周期性轨道的吸引力盆地。结果描绘了周期性轨道的幅度越高,吸引器的面积越小。

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