Papers
Release Time: 2025-04-30Hits:
  • Date:2025-04-30
  • Title of Paper:Elastic wave propagation in the elastic metamaterials containing parallel multi-resonators
  • Journal:J. Phys. D: Appl. Phys.
  • Summary:This paper presents the modeling technique, design method, a new working mechanism and
    influence factors for elastic metamaterials (EMs) with parallel multi-resonators for broadband
    elastic vibration suppression. The general formula of the effective mass is deduced, and the
    effects of the relevant structural parameters on the frequency regions of the negative effective
    mass are illustrated in details. Subsequently, the dispersion relation and transmission spectrum
    of the EMs are studied. Based on the theoretical approach, the EMs plates were proposed, and
    the formation mechanism of the band gaps are analyzed by studying the displacement feld of
    the eigenmodes at the band gaps edges. The related results well confrm that the novel EMs
    induces multi-frequency negative effective mass, and the number of the regions is equal to
    the number of the local resonators. The start frequencies of the band gaps are decided by the
    natural frequencies of each resonator, and the width of frequency band with negative effective
    mass can be broadened by enlarging the mass ratio of the local resonator. The EMs plate
    with the thickness of only 2.5 mm designed on the basis of theoretical research exhibits two
    flexural vibration band gaps (FVBGs) with the total width of 78.4 Hz below 200 Hz, which
    has been verifed by the transmission testing experiments. For the formation mechanism of the
    FVBGs, the vibration is localized in the according resonator at the lower edge of each band
    gap, while at the upper edges the local resonance mass and the base plate vibrate in a reverse
    phase. Based on the theoretical and numerical analyses, the EMs with multiple parallel local
    resonators would be used in various felds, such as noise and vibration isolation, flters, and
    other renewed devices.
  • Co-author:Yongjun Tian, Jiu Hui Wu, Hongliang Li, Cansong Gu, Zhengrui Yang, Ziting Zha
  • Volume:Vol.52, No.39, 2019
  • Page Number:395301 (13 Pages)
  • Translation or Not:No
  • Date of Publication:2019-06-30

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