| Literature DB >> 25216625 |
Nansha Gao1, Jiu Hui Wu2, Lie Yu3.
Abstract
In this paper, the bandgap properties of a two-dimensional phononic crystal with the two resonators is studied and embedded in a homogenous matrix. The resonators are not connected with the matrix but linked with connectors directly. The dispersion relationship, transmission spectra, and displacement fields of the eigenmodes of this phononic crystal are studied with finite-element method. In contrast to the phononic crystals with one resonators and hollow structure, the proposed structures with two resonators can open bandgaps at lower frequencies. This is a very interesting and useful phenomenon. Results show that, the opening of the bandgaps is because of the local resonance and the scattering interaction between two resonators and matrix. An equivalent spring-pendulum model can be developed in order to evaluate the frequencies of the bandgap edge. The study in this paper is beneficial to the design of opening and tuning bandgaps in phononic crystals and isolators in low-frequency range.Entities:
Keywords: Low-frequency range; Phononic crystal; Resonators
Year: 2014 PMID: 25216625 DOI: 10.1016/j.ultras.2014.08.006
Source DB: PubMed Journal: Ultrasonics ISSN: 0041-624X Impact factor: 2.890