This work investigates wave attenuation and dissipation mechanisms in viscoelastic phononic crystals (VPCs) having different inclusion types in a long-wavelength regime. After investigating the intrinsic damping properties of VPCs for different inclusion sizes and materials, we carried out wave simulations revealing the energy dissipation by a finite VPC structure inserted inside an elastic medium. The simulations, supported by physical reasoning, showed that air-and metal-embedded VPCs can indeed dissipate more wave energy than pure viscoelastic media in low and high frequency ranges, respectively. (C) 2013 American Institute of Physics. [http://dx.doi.org/10.1063/1.4795285clos
International audiencePropagation of elastic waves in acoustic metamaterials based on locally resona...
There has recently been a rising interest in the nonlinear wave transmission behavior of phononic cr...
The phononic band structure of waves, which travel though composites, results from the geometric and...
Through deliberate material and geometrical design of the internal structure, phononic crystals and ...
Phononic crystals (PCs) are periodic structures obtained by the spatial arrangement of materials wit...
Phononic materials are artificial composites with unprecedented abilities to control acoustic waves ...
In the present work, the wave propagation in a viscoelastic phononic crystal rod with internal perio...
International audienceThe consideration of material losses in phononic crystals leads naturally to t...
Authors of the article use analytical results for viscous dissipation in phononic crystals to calcul...
International audienceThe influence of material loss on the complex band structure of two-dimensional...
International audienceThe influence of material loss on the complex band structure of two-dimensiona...
This paper studies the wave attenuation performance of dissipative solid acoustic metamaterials (AMM...
The effective dynamic properties of specific periodic structures involving rubber-like materials can...
Phononic crystals (PCs) are multi-layered materials with functional elastic wave band gaps where pro...
International audiencePropagation of elastic waves in acoustic metamaterials based on locally resona...
There has recently been a rising interest in the nonlinear wave transmission behavior of phononic cr...
The phononic band structure of waves, which travel though composites, results from the geometric and...
Through deliberate material and geometrical design of the internal structure, phononic crystals and ...
Phononic crystals (PCs) are periodic structures obtained by the spatial arrangement of materials wit...
Phononic materials are artificial composites with unprecedented abilities to control acoustic waves ...
In the present work, the wave propagation in a viscoelastic phononic crystal rod with internal perio...
International audienceThe consideration of material losses in phononic crystals leads naturally to t...
Authors of the article use analytical results for viscous dissipation in phononic crystals to calcul...
International audienceThe influence of material loss on the complex band structure of two-dimensional...
International audienceThe influence of material loss on the complex band structure of two-dimensiona...
This paper studies the wave attenuation performance of dissipative solid acoustic metamaterials (AMM...
The effective dynamic properties of specific periodic structures involving rubber-like materials can...
Phononic crystals (PCs) are multi-layered materials with functional elastic wave band gaps where pro...
International audiencePropagation of elastic waves in acoustic metamaterials based on locally resona...
There has recently been a rising interest in the nonlinear wave transmission behavior of phononic cr...
The phononic band structure of waves, which travel though composites, results from the geometric and...