Phononic band gap crystals (PnCs) are periodic composite materials and well known for their novel property that can prohibit the propagation of mechanical waves in certain range of frequency. This paper develops the finite element method to calculate band structures of bi-material phononic crystals. Through finite element analysis, complete band gap for longitudinal and transverse waves are obtained by characterizing the dispersion relation in phononic crystals. Phononic crystals with different inclusion shapes in a square and hexagonal unit cell are investigated to study the influence of unit cell topology on band gap size. For a specific pattern, the existence of complete band gap in relation to the density and Lamé constant modulus of co...
Phononic crystals and quasicrystals are solid-solid, fluid-solid or fluid-fluid composites with peri...
A wavelet-based finite element method (WFEM) is developed to calculate the elastic band structures o...
Abstract—This paper aims at studying the band gap phe-nomena of three-dimensional phononic crystals ...
Phononic Crystals (PnCs) are novel synthetic periodic materials for controlling and manipulating the...
525-530The numerical investigation on elastic wave band gap properties in two-dimensional phononic ...
The numerical investigation on elastic wave band gap properties in two-dimensional phononic crystal...
International audienceWe propose a new type of phononic crystal (PnC) composed of a periodic alterna...
International audienceWe propose a new type of phononic crystal (PnC) composed of a periodic alterna...
This paper systematically investigated the topological design of cellular phononic crystals with a m...
This paper systematically investigated the topological design of cellular phononic crystals with a m...
This paper systematically investigated the topological design of cellular phononic crystals with a m...
This paper discusses the construction of a model of phononic crystals and the calculation of the ban...
International audiencePhononic crystals with triangular and honeycomb lattices are investigated expe...
AbstractPhononic crystals have received some attention in the last decade due to their intrinsic pro...
We investigate the band-gap structure of the frequency spectrum for elastic waves in a high-contrast...
Phononic crystals and quasicrystals are solid-solid, fluid-solid or fluid-fluid composites with peri...
A wavelet-based finite element method (WFEM) is developed to calculate the elastic band structures o...
Abstract—This paper aims at studying the band gap phe-nomena of three-dimensional phononic crystals ...
Phononic Crystals (PnCs) are novel synthetic periodic materials for controlling and manipulating the...
525-530The numerical investigation on elastic wave band gap properties in two-dimensional phononic ...
The numerical investigation on elastic wave band gap properties in two-dimensional phononic crystal...
International audienceWe propose a new type of phononic crystal (PnC) composed of a periodic alterna...
International audienceWe propose a new type of phononic crystal (PnC) composed of a periodic alterna...
This paper systematically investigated the topological design of cellular phononic crystals with a m...
This paper systematically investigated the topological design of cellular phononic crystals with a m...
This paper systematically investigated the topological design of cellular phononic crystals with a m...
This paper discusses the construction of a model of phononic crystals and the calculation of the ban...
International audiencePhononic crystals with triangular and honeycomb lattices are investigated expe...
AbstractPhononic crystals have received some attention in the last decade due to their intrinsic pro...
We investigate the band-gap structure of the frequency spectrum for elastic waves in a high-contrast...
Phononic crystals and quasicrystals are solid-solid, fluid-solid or fluid-fluid composites with peri...
A wavelet-based finite element method (WFEM) is developed to calculate the elastic band structures o...
Abstract—This paper aims at studying the band gap phe-nomena of three-dimensional phononic crystals ...