Abstract
We have fabricated a new type of composite which displays localized sonic resonances at ∼ 350-2000 Hz with a microstructure size in the millimeter to centimeter range. Around the resonance frequencies the composite behaves as a material with effective negative elastic constants and as a total wave reflector - a 2 cm slab of this material is shown to break the conventional mass-law of sound transmission by order(s) of magnitude. When the microstructure is periodic, our composites exhibit large elastic wave band gaps at the sonic frequency range, with a lattice constant order(s) of magnitude smaller than the corresponding sonic wavelength in air. Good agreement is obtained between theory and experiment. © 2003 Elsevier B.V. All rights reserved.
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Sheng, P., Zhang, X. X., Liu, Z., & Chan, C. T. (2003). Locally resonant sonic materials. In Physica B: Condensed Matter (Vol. 338, pp. 201–205). Elsevier. https://doi.org/10.1016/S0921-4526(03)00487-3
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