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Improved passive shunt vibration control of smart piezo-elastic beams using modal piezoelectric transducers with shaped electrodes

机译:使用带成形电极的模态压电传感器改进智能压电弹性梁的被动分流振动控制

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摘要

Modal control and spatial filtering technologies for mitigation of vibration and/or structural acoustics radiation may be achieved through the use of distributed modal piezoelectric transducers with properly shaped electrodes. This approach filters out undesirable and uncontrollable modes over the bandwidth of interest in order to increase the robustness and stability of the controlled structural system, and may also yield higher values of the generalized modal electromechanical coupling coefficient, which is an important design parameter for achieving efficient passive shunt damping design. In this paper the improvements in passive shunt damping performance when using modal piezoelectric transducers with shaped electrodes are investigated for a two-layered resonant-shunted piezo-elastic smart beam structure. An electromechanical one-dimensional equivalent single-layer Euler-Bernoulli analytical model of two-layered smart piezo-elastic beams with arbitrary spatially shaped electrodes is established for modal and uniform electrode designs. The model is verified and validated by comparison with a one-dimensional discrete-layer (layerwise) finite element model, the damping performance of the shunted smart beam with shaped electrodes is investigated and assessed in terms of the generalized electromechanical coupling coefficient and frequency responses obtained when considering uniform and modally shaped electrodes and the underlying improved performance and advantages are assessed and discussed.
机译:可以通过使用具有适当形状的电极的分布式模态压电换能器来实现用于减轻振动和/或结构声辐射的模态控制和空间滤波技术。该方法在感兴趣的带宽上滤除了不良模式和不可控模式,以提高受控结构系统的鲁棒性和稳定性,并且还可能产生更高的广义模态机电耦合系数值,这是实现有效控制的重要设计参数。被动分流阻尼设计。在本文中,针对两层谐振分流压电弹性智能梁结构,研究了使用带成形电极的模态压电传感器时无源分流阻尼性能的改进。建立了具有任意空间形状电极的两层智能压电弹性梁的机电一维等效单层欧拉-伯努利解析模型,用于模态和均匀电极设计。通过与一维离散层(分层)有限元模型进行比较来验证和验证该模型,并根据广义机电耦合系数和获得的频率响应来研究和评估带成形电极的分流智能梁的阻尼性能。当考虑均匀且模态形状的电极时,将评估和讨论其潜在的改进性能和优势。

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