4.7 Article

Design of graded piezoelectric metamaterial beam with spatial variation of electrodes

期刊

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijmecsci.2022.107068

关键词

Bandgap; Graded piezoelectric metamaterial beam; Shunt resonant circuit; Broadband vibration attenuation

资金

  1. China Scholarship Council [201907000126]
  2. Faculty Research Development Fund from the University of Auckland [3722094]

向作者/读者索取更多资源

This study presents a novel strategy of broadband vibration attenuation using a graded piezoelectric metamaterial beam, which can broaden the attenuation region and enhance the overall attenuation performance.
This work presents a novel strategy of broadband vibration attenuation using a graded piezoelectric meta material beam. A series of electrode pairs with varying lengths are applied to the fully covered piezoelectric beam, and each electrode pair is connected to an identical shunt resonant circuit. Unlike the existing grading strategies, which normally consider the varying material properties of local resonators, the proposed graded metamaterial enables us to broaden the vibration attenuation region through varying spatial profiles. In this paper, the graded metamaterial beam is modeled analytically and verified by finite element. Subsequently, an analytical expression is derived to predict the aggregated gap region with graded electrodes. A parametric study on the transmittance response reveals that the increase of spatial variation of electrodes contributes to widening the attenuation region while weakening the attenuation strength. An optimization strategy aiming to enhance the overall attenuation performance is given, through which the graded piezoelectric metamaterial beam exhibits significant superiority over a non-graded one in terms of average transmittance. Further, an example shows that the damping induced by the load resistance in the shunt resonant circuit can dramatically reduce the resonant peaks inside the aggregated gap. With a properly selected resistance, a theoretical widest attenuation region is achieved by using the graded piezoelectric metamaterial beam, with 289.2% increase in the bandwidth as compared to the conventional one. This study differentiates itself as a powerful alternative to other grading strategies for realizing broadband vibration attenuation.

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