Motivated by the importance of lattice structures in multiple fields, we numerically investigate the propagation of flexural waves in a thin reticulated plate augmented with two classes of metastructures for wave mitigation and guiding, namely metabarriers and metalenses. The cellular architecture of this plate invokes the well-known octet topology, while the metadevices rely on novel customized octets either comprising spherical masses added to the midpoint of their struts or variable node thickness. We numerically determine the dispersion curves of a doubly-periodic array of octets, which produce a broad bandgap whose underlying physics is elucidated and leveraged as a design paradigm, allowing the construction of a metabarrier effective ...
The elastic wave propagation is investigated in a beam lattice material characterized by a square pe...
We investigate theoretically the band structure of flexural waves propagating in an elastic metamate...
Tensegrity is a structural principle in biomechanics and architecture enabling to design rigid and m...
Motivated by the importance of lattice structures in multiple fields, we numerically investigate the...
In metamaterial science, local resonance and hybridization are key phenomena strongly influencing th...
In this presentation, we show recent results obtained by our research group on two types of elastic ...
The application of smart materials and metastructures has been rapidly increasing in advanced multip...
International audienceWe propose a design of a periodically perforated thin plate leading to omni-di...
International audiencePlatonic crystals (PlCs) are the elastic plate analogue of the photonic crysta...
Periodic anti-tetrachiral materials are strongly characterized by a marked auxeticity, the unusual ...
This thesis presents the investigation of lattice structures for the purpose of providing novel path...
In elastic wave systems, combining the powerful concepts of resonance and spatial grading within str...
The elastic wave propagation is investigated in a beam lattice material characterized by a square pe...
We investigate theoretically the band structure of flexural waves propagating in an elastic metamate...
Tensegrity is a structural principle in biomechanics and architecture enabling to design rigid and m...
Motivated by the importance of lattice structures in multiple fields, we numerically investigate the...
In metamaterial science, local resonance and hybridization are key phenomena strongly influencing th...
In this presentation, we show recent results obtained by our research group on two types of elastic ...
The application of smart materials and metastructures has been rapidly increasing in advanced multip...
International audienceWe propose a design of a periodically perforated thin plate leading to omni-di...
International audiencePlatonic crystals (PlCs) are the elastic plate analogue of the photonic crysta...
Periodic anti-tetrachiral materials are strongly characterized by a marked auxeticity, the unusual ...
This thesis presents the investigation of lattice structures for the purpose of providing novel path...
In elastic wave systems, combining the powerful concepts of resonance and spatial grading within str...
The elastic wave propagation is investigated in a beam lattice material characterized by a square pe...
We investigate theoretically the band structure of flexural waves propagating in an elastic metamate...
Tensegrity is a structural principle in biomechanics and architecture enabling to design rigid and m...