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NON-LINEAR VIBRATION ABSORBERS USING HIGHER ORDER INTERNAL RESONANCES

机译:使用高阶内部共振的非线性振动吸收器

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This paper presents a study of controlling steady-state vibrations of a cantilevered skew aluminum plate using saturation phenomena due to higher-order internal resonances. PZT (lead zirconate titanate) patches are used as control actuators and sensors. Linear second order controllers are designed to couple with the plate via different orders of non-linear terms to establish energy bridges between the plate and controllers. Each linear second-order controller is designed to have a 1:2 or 1:3 or 1:4 internal resonance with one of the plate's vibration modes and hence is able to exchange energy with the plate around the specific modal frequency. Because of non-linearities and internal resonances, different orders of saturation phenomena exist and are used to suppress modal vibrations. Several non-linear vibration absorbers are designed based on the saturation phenomena and are analyzed to show their feasibility and efficiency. Perturbation analysis, direct numerical integration, and experiments are performed to validate these non-linear vibration absorbers.
机译:本文提出了利用由于高阶内部共振引起的饱和现象来控制悬臂斜交铝板的稳态振动的研究。 PZT(钛酸锆钛酸铅)贴片用作控制执行器和传感器。线性二阶控制器设计为通过不同阶的非线性项与板耦合,以在板和控制器之间建立能量桥。每个线性二阶控制器被设计为与板的一种振动模式具有1:2或1:3或1:4的内部共振,因此能够在特定模态频率附近与板交换能量。由于非线性和内部共振,存在不同数量的饱和现象,并用于抑制模态振动。根据饱和现象设计了几种非线性减振器,并进行了分析,以表明其可行性和有效性。进行扰动分析,直接数值积分和实验以验证这些非线性减振器。

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