The extended plane wave expansion (EPWE) formulation is derived to obtain the complex band structure of flexural waves in viscoelastic thin phononic crystal plates considering the Kirchhoff–Love plate theory. The presented formulation yields the evanescent behavior of flexural waves in periodic thin plates considering viscoelastic effects. The viscosity is modeled by the standard linear solid model (SLSM), typically used to closely model the behavior of polymers. It is observed that the viscoelasticity influences significantly both the propagating and evanescent Bloch modes. The highest wave attenuation of the viscoelastic phononic thin plate is found around a unit cell filling fraction of 0.37 for higher frequencies considering the least a...
International audiencePropagation of elastic waves in acoustic metamaterials based on locally resona...
The plane wave expansion (PWE) method has been proposed as a theoretical model for periodic composit...
This work investigates wave attenuation and dissipation mechanisms in viscoelastic phononic crystals...
Phononic crystals (PCs) are periodic structures obtained by the spatial arrangement of materials wit...
International audienceIn this paper, the propagation of evanescent Lamb waves in the one-dimensional...
International audienceThe influence of material loss on the complex band structure of two-dimensional...
International audienceThe plane wave expansion (PWE) method has been from the start at the heart of ...
International audienceThe influence of material loss on the complex band structure of two-dimensiona...
We investigate theoretically the band structure of flexural waves propagating in an elastic metamate...
<div><p>We investigate theoretically and experimentally the forced response of flexural waves propag...
International audienceWe analyze in this contribution the impact of wave damping on the dispersion f...
International audienceWe discuss the computation of the band structure of plate waves using the plan...
In order to design phononic crystals whose band-gaps are located in low-frequency ranges, researcher...
International audiencePhononic crystals are two- or three-dimensional periodic structures that are c...
AbstractIn this paper, the band structures of bending waves in a phononic crystal thin plate with a ...
International audiencePropagation of elastic waves in acoustic metamaterials based on locally resona...
The plane wave expansion (PWE) method has been proposed as a theoretical model for periodic composit...
This work investigates wave attenuation and dissipation mechanisms in viscoelastic phononic crystals...
Phononic crystals (PCs) are periodic structures obtained by the spatial arrangement of materials wit...
International audienceIn this paper, the propagation of evanescent Lamb waves in the one-dimensional...
International audienceThe influence of material loss on the complex band structure of two-dimensional...
International audienceThe plane wave expansion (PWE) method has been from the start at the heart of ...
International audienceThe influence of material loss on the complex band structure of two-dimensiona...
We investigate theoretically the band structure of flexural waves propagating in an elastic metamate...
<div><p>We investigate theoretically and experimentally the forced response of flexural waves propag...
International audienceWe analyze in this contribution the impact of wave damping on the dispersion f...
International audienceWe discuss the computation of the band structure of plate waves using the plan...
In order to design phononic crystals whose band-gaps are located in low-frequency ranges, researcher...
International audiencePhononic crystals are two- or three-dimensional periodic structures that are c...
AbstractIn this paper, the band structures of bending waves in a phononic crystal thin plate with a ...
International audiencePropagation of elastic waves in acoustic metamaterials based on locally resona...
The plane wave expansion (PWE) method has been proposed as a theoretical model for periodic composit...
This work investigates wave attenuation and dissipation mechanisms in viscoelastic phononic crystals...