International audienceWe propose a design of a periodically perforated thin plate leading to omni-directivity and confinement of bending waves via ultra-refraction. We first analyze the band spectrum of the bi-harmonic operator for an array of freely vibrating square voids arranged in a checkerboard fashion using finite elements: the spectrum displays nearly flat bands associated with slow flexural waves shown to be associated with resonances of square cells with stress-free boundary conditions. We find some point in the reciprocal space where the curvature of the dispersion diagram vanishes. We then demonstrate that a concentrated point force generating a bending wave within a finite array of 221 perforations displays an enhanced local den...
We present converged band diagrams for Bloch-Floquet bending waves in a thin elastic plate containin...
We present a multiple scattering analysis of robust interface states for flexural waves in thin elas...
International audienceIn metamaterial science, local resonance and hybridization are key phenomena s...
We propose a design of a periodically perforated thin plate leading to omni-directivity and confinem...
International audienceWe propose a design of a periodically perforated thin plate leading to lensing...
We present in this paper a theoretical and numerical analysis of bending waves localized on the boun...
Control of wave propagation in electromagnetics and acoustics experienced a large development these ...
The paper presents new results on the localization and transmission of flexural waves in a structure...
We address the problem of scattering and transmission of a plane flexural wave through a semi-infini...
International audiencePlatonic crystals (PlCs) are the elastic plate analogue of the photonic crysta...
[EN] This Letter reports the feasibility of a structure specifically designed for the control of fle...
We investigate theoretically the band structure of flexural waves propagating in an elastic metamate...
We address the scattering and transmission of a plane flexural wave through a semi-infinite array of...
We address the scattering and transmission of a plane flexural wave through a semi-infinite array of...
Motivated by the importance of lattice structures in multiple fields, we numerically investigate the...
We present converged band diagrams for Bloch-Floquet bending waves in a thin elastic plate containin...
We present a multiple scattering analysis of robust interface states for flexural waves in thin elas...
International audienceIn metamaterial science, local resonance and hybridization are key phenomena s...
We propose a design of a periodically perforated thin plate leading to omni-directivity and confinem...
International audienceWe propose a design of a periodically perforated thin plate leading to lensing...
We present in this paper a theoretical and numerical analysis of bending waves localized on the boun...
Control of wave propagation in electromagnetics and acoustics experienced a large development these ...
The paper presents new results on the localization and transmission of flexural waves in a structure...
We address the problem of scattering and transmission of a plane flexural wave through a semi-infini...
International audiencePlatonic crystals (PlCs) are the elastic plate analogue of the photonic crysta...
[EN] This Letter reports the feasibility of a structure specifically designed for the control of fle...
We investigate theoretically the band structure of flexural waves propagating in an elastic metamate...
We address the scattering and transmission of a plane flexural wave through a semi-infinite array of...
We address the scattering and transmission of a plane flexural wave through a semi-infinite array of...
Motivated by the importance of lattice structures in multiple fields, we numerically investigate the...
We present converged band diagrams for Bloch-Floquet bending waves in a thin elastic plate containin...
We present a multiple scattering analysis of robust interface states for flexural waves in thin elas...
International audienceIn metamaterial science, local resonance and hybridization are key phenomena s...