Platonic crystal with low-frequency locally-resonant spiral structures: wave trapping, transmission amplification, shielding and edge waves.

Maryam Morvaridi
Primo
;
Giorgio Carta
Secondo
;
Michele Brun
Ultimo
2018-01-01

Abstract

We propose a new type of platonic crystal, which includes spiral resonators with low- frequency resonant vibrations. The special dynamic effects of the resonators are high- lighted by a comparative analysis of dispersion properties of homogeneous and perforated plates. Analytical and numerical estimates of classes of standing waves are given and the analysis of a macrocell shows the possibility to obtain localization, wave trapping and edge waves. Applications include transmission amplification within two plates separated by a small ligament and a novel design to suppress low-frequency flexural vibrations in an elongated plate implementing a bypass system that re-routes waves within the mechanical system. Finally, we show the possibility to obtain Konenkov-Bloch edge waves for general boundary conditions.
2018
2018
Inglese
121
496
516
21
Esperti anonimi
internazionale
scientifica
Platonic crystal, Flexural waves, Metamaterials, Spiral resonators, Bloch–Floquet analysis, Rayleigh waves, Konenkov waves
Morvaridi, Maryam; Carta, Giorgio; Brun, Michele
1.1 Articolo in rivista
info:eu-repo/semantics/article
1 Contributo su Rivista::1.1 Articolo in rivista
262
3
reserved
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