4.5 Article

Analytical coupled vibroacoustic modeling of membrane-type acoustic metamaterials: Membrane model

Journal

JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA
Volume 136, Issue 3, Pages 969-979

Publisher

ACOUSTICAL SOC AMER AMER INST PHYSICS
DOI: 10.1121/1.4892870

Keywords

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Funding

  1. Air Force Office of Scientific Research [AF 9550-10-0061]
  2. National Science Foundation [EPS-1003970]
  3. National Natural Science Foundation of China [11221202, 11290153, 11172038]

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Membrane-type acoustic metamaterials (MAMs) have demonstrated unusual capacity in controlling low-frequency sound transmission/reflection. In this paper, an analytical vibroacoustic membrane model is developed to study sound transmission behavior of the MAM under a normal incidence. The MAM is composed of a prestretched elastic membrane with attached rigid masses. To accurately capture finite-dimension rigid mass effects on the membrane deformation, the point matching approach is adopted by applying a set of distributed point forces along the interfacial boundary between masses and the membrane. The accuracy and capability of the theoretical model is verified through the comparison with the finite element method. In particular, microstructure effects such as weight, size, and eccentricity of the attached mass, pretension, and thickness of the membrane on the resulting transmission peak and dip frequencies of the MAM are quantitatively investigated. New peak and dip frequencies are found for the MAM with one and multiple eccentric attached masses. The developed model can be served as an efficient tool for design of such membrane-type metamaterials. (C) 2014 Acoustical Society of America.

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