4.6 Article

Modeling and experimental verification of an ultra-wide bandgap in 3D phononic crystal

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APPLIED PHYSICS LETTERS
卷 109, 期 22, 页码 -

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AMER INST PHYSICS
DOI: 10.1063/1.4971290

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  1. MIUR [PRIN15-2015LYYXA8]

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This paper reports a comprehensive modeling and experimental characterization of a three-dimensional phononic crystal composed of a single material, endowed with an ultra-wide complete bandgap. The phononic band structure shows a gap-mid gap ratio of 132% that is by far the greatest full 3D bandgap in literature for any kind of phononic crystals. A prototype of the finite crystal structure has been manufactured in polyamide by means of additive manufacturing technology and tested to assess the transmission spectrum of the crystal. The transmission spectrum has been numerically calculated taking into account a frequency-dependent elastic modulus and a Rayleigh model for damping. The measured and numerical transmission spectra are in good agreement and present up to 75 dB of attenuation for a three-layer crystal. Published by AIP Publishing.

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