This paper studies the wave attenuation performance of dissipative solid acoustic metamaterials (AMMs) with local resonators possessing subwavelength band gaps. The metamaterial is composed of dense rubber-coated inclusions of a circular shape embedded periodically in a matrix medium. Visco-elastic material losses present in a matrix and/or resonator coating are introduced by either the Kelvin-Voigt or generalized Maxwell models. Numerical solutions are obtained in the frequency domain by means of k(omega)-approach combined with the finite element method. Spatially attenuating waves are described by real frequencies omega and complex valued wave vectors k. Complete 3D band structure diagrams including complex-valued pass bands are evaluated...
Resonant metamaterials are emerging as novel concepts to reduce noise levels in targeted frequency z...
We theoretically and experimentally investigate visco–thermal effects on the acoustic propagation th...
We design and experimentally demonstrate a dissipative elastic metamaterial structure that functions...
This paper studies the wave attenuation performance of dissipative solid acoustic metamaterials (AMM...
Acoustic metamaterials are known as a promising class of materials interacting with acoustic and/or ...
Metamaterials have been the subject of significant interest over the past decade due to their abilit...
International audiencePropagation of elastic waves in acoustic metamaterials based on locally resona...
Elastomeric material (as rubber) can be used to design the mechanically tunable acoustic metamateria...
Metamaterials have been the subject of significant interest over the past decade due to their abilit...
This work presents a review of wave propagation properties in dissipative elastic metamaterials incl...
The band-gap frequencies of elastic metamaterials are ideally determined by a metamaterial architect...
In this paper, viscoelastic multi-resonator mechanism for broadening low-frequency band-gaps of acou...
Metamaterials have been the subject of significant interest over the past decade due to their abilit...
This work investigates wave attenuation and dissipation mechanisms in viscoelastic phononic crystals...
Vibration suppression of a beam-type acoustic metamaterial with periodic cavities filled by a viscoe...
Resonant metamaterials are emerging as novel concepts to reduce noise levels in targeted frequency z...
We theoretically and experimentally investigate visco–thermal effects on the acoustic propagation th...
We design and experimentally demonstrate a dissipative elastic metamaterial structure that functions...
This paper studies the wave attenuation performance of dissipative solid acoustic metamaterials (AMM...
Acoustic metamaterials are known as a promising class of materials interacting with acoustic and/or ...
Metamaterials have been the subject of significant interest over the past decade due to their abilit...
International audiencePropagation of elastic waves in acoustic metamaterials based on locally resona...
Elastomeric material (as rubber) can be used to design the mechanically tunable acoustic metamateria...
Metamaterials have been the subject of significant interest over the past decade due to their abilit...
This work presents a review of wave propagation properties in dissipative elastic metamaterials incl...
The band-gap frequencies of elastic metamaterials are ideally determined by a metamaterial architect...
In this paper, viscoelastic multi-resonator mechanism for broadening low-frequency band-gaps of acou...
Metamaterials have been the subject of significant interest over the past decade due to their abilit...
This work investigates wave attenuation and dissipation mechanisms in viscoelastic phononic crystals...
Vibration suppression of a beam-type acoustic metamaterial with periodic cavities filled by a viscoe...
Resonant metamaterials are emerging as novel concepts to reduce noise levels in targeted frequency z...
We theoretically and experimentally investigate visco–thermal effects on the acoustic propagation th...
We design and experimentally demonstrate a dissipative elastic metamaterial structure that functions...