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Multimodal vibration damping of a plate by piezoelectric coupling to its analogous electrical network

机译:通过压电耦合到板的类似网络来抑制板的多峰振动

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Multimodal damping can be achieved by coupling a mechanical structure to an electrical network exhibiting similar modal properties. Focusing on a plate, a new topology for such an electrical analogue is found from a finite difference approximation of the Kirchhoff-Love theory and the use of the direct electromechanical analogy. Discrete models based on element dynamic stiffness matrices are proposed to simulate square plate unit cells coupled to their electrical analogues through two-dimensional piezoelectric transducers. A setup made of a clamped plate covered with an array of piezoelectric patches is built in order to validate the control strategy and the numerical models. The analogous electrical network is implemented with passive components as inductors, transformers and the inherent capacitance of the piezoelectric patches. The effect of the piezoelectric coupling on the dynamics of the clamped plate is significant as it creates the equivalent of a multimodal tuned mass damping. An adequate tuning of the network then yields a broadband vibration reduction. In the end, the use of an analogous electrical network appears as an efficient solution for the multimodal control of a plate.
机译:多峰阻尼可以通过将机械结构耦合到表现出类似模态特性的电网来实现。集中在板上,通过基尔霍夫-洛夫理论的有限差分近似和直接机电类比的使用,找到了一种用于此类电子类比的新拓扑。提出了基于单元动态刚度矩阵的离散模型,以模拟通过二维压电换能器耦合至其电类似物的方板单元。为了验证控制策略和数值模型,建立了由覆盖有压电贴片阵列的夹板制成的装置。通过无源组件(例如电感器,变压器和压电贴片的固有电容)来实现类似的电网。压电耦合对夹紧板动力学的影响非常重要,因为它产生了等效于多峰调谐质量阻尼的效果。然后,对网络进行适当的调整可降低宽带振动。最后,使用模拟电网似乎是板块多模式控制的有效解决方案。

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