Using the finite element method, we theoretically study the vibration properties of radial phononic crystal (RPC) structure with round mass block. The band structures, transmission spectra, and displacement fields of eigenmode are given to estimate the starting and cut-off frequency of band gaps. Compared to the contrast structure, numerical calculation results show that RPC structure with round mass block can yield several band gaps below 150 kHz. The physical mechanism of band gaps are attributed to the coupling between the longitudinal vibration in round mass block and vibrations in outer frame or coating layer. By changing geometrical dimensions r of round mass block, we can shift the location and width of band gaps. Significantly, as t...
[[abstract]]Phononic crystals with triangular and honeycomb lattices are investigated experimentally...
International audienceWe propose a new type of phononic crystal (PnC) composed of a periodic alterna...
Low-frequency flexural vibration plays a significant role in beam vibration control. To efficiently ...
Using the finite element method, we theoretically study the vibration properties of radial phononic ...
Phononic band gap crystals (PnCs) are periodic composite materials and well known for their novel pr...
AbstractLow-frequency vibration control is a key technology in the vibration control of pipe systems...
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 audiencePhononic crystals with triangular and honeycomb lattices are investigated expe...
This paper discusses the construction of a model of phononic crystals and the calculation of the ban...
AbstractPhononic crystals have received some attention in the last decade due to their intrinsic pro...
Two alternating homogeneous materials are periodically introduced along the radial direction, formin...
[[abstract]]Phononic crystals with triangular and honeycomb lattices are investigated experimentally...
International audienceThe aim of this work is to study the mechanisms of enlargement of band gaps in...
A new two-dimensional locally resonant phononic crystal with microcavity structure is proposed. The ...
[[abstract]]Phononic crystals with triangular and honeycomb lattices are investigated experimentally...
International audienceWe propose a new type of phononic crystal (PnC) composed of a periodic alterna...
Low-frequency flexural vibration plays a significant role in beam vibration control. To efficiently ...
Using the finite element method, we theoretically study the vibration properties of radial phononic ...
Phononic band gap crystals (PnCs) are periodic composite materials and well known for their novel pr...
AbstractLow-frequency vibration control is a key technology in the vibration control of pipe systems...
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 audiencePhononic crystals with triangular and honeycomb lattices are investigated expe...
This paper discusses the construction of a model of phononic crystals and the calculation of the ban...
AbstractPhononic crystals have received some attention in the last decade due to their intrinsic pro...
Two alternating homogeneous materials are periodically introduced along the radial direction, formin...
[[abstract]]Phononic crystals with triangular and honeycomb lattices are investigated experimentally...
International audienceThe aim of this work is to study the mechanisms of enlargement of band gaps in...
A new two-dimensional locally resonant phononic crystal with microcavity structure is proposed. The ...
[[abstract]]Phononic crystals with triangular and honeycomb lattices are investigated experimentally...
International audienceWe propose a new type of phononic crystal (PnC) composed of a periodic alterna...
Low-frequency flexural vibration plays a significant role in beam vibration control. To efficiently ...