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Active tuning of the vibration band gap characteristics of periodic laminated composite metamaterial beams

机译:主动调整周期性层合复合超材料梁的振动带隙特性

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摘要

A novel strategy is proposed to investigate the vibration band-gap and active tuning characteristics of the laminated composite metamaterial beams. The piezoelectric actuator/sensor pairs are periodically placed along the laminated composite beam axis so that the vibration frequency band-gap and active tuning characteristics can be induced. The dynamic equations of the laminated composite metamaterial beams bonded by the piezoelectric actuator/sensor pairs are established based on the Euler-Bernoulli beam theory. The negative proportional feedback control strategy is employed to provide the positive active control stiffness for the piezoelectric actuator/sensor patches. The spectral element method is used to calculate the dynamic responses of the laminated composite metamaterial beams with the periodically placed piezoelectric patches, and the calculation accuracy for the dynamic responses is validated by the finite element method. The results demonstrating the high-performance vibration band-gap properties in the low-frequency ranges can be achieved by properly designing the sizes and the number of the piezoelectric patches. Moreover, the vibration band-gap characteristics, especially the band-gap width and the normalized band-gap width with respect to the considered excitation frequency range, can be significantly changed by tuning the structural parameters of the piezoelectric actuators and sensors. In addition, the cross-ply angle of the laminated composite metamaterial beams has significant influences on the band-gap characteristics and the vibration reduction performance of the laminated composite beam structures.
机译:提出了一种新颖的策略来研究层状复合超材料梁的振动带隙和主动调谐特性。压电致动器/传感器对沿着层压的复合梁轴周期性放置,因此可以感应出振动频带隙和主动调谐特性。基于欧拉-伯努利梁理论,建立了压电致动器/传感器对粘结的层状复合超材料梁的动力学方程。负比例反馈控制策略用于为压电致动器/传感器贴片提供正主动控制刚度。用谱元法计算了带有周期性放置的压电贴片的复合超材料层合梁的动力响应,并通过有限元方法验证了动力响应的计算精度。通过适当地设计压电贴片的尺寸和数量,可以获得在低频范围内表现出高性能振动带隙特性的结果。此外,可以通过调节压电致动器和传感器的结构参数来显着改变振动带隙特性,特别是相对于所考虑的激励频率范围的带隙宽度和归一化带隙宽度。另外,层压的复合超材料梁的交叉角度对层压的复合梁结构的带隙特性和减振性能具有显着影响。

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