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 ...
We report on numerical modelling of three-dimensional lattice structures designed to provide phononi...
Architected materials that control elastic wave propagation are essential in vibration mitigation an...
Periodic anti-tetrachiral materials are strongly characterized by a marked auxeticity, the unusual ...
Motivated by the importance of lattice structures in multiple fields, we numerically investigate the...
Elastic metamaterials made of locally resonant arrays have been developed as effective ways to creat...
Phononic crystals and metamaterials can sculpt elastic waves, controlling their dispersion using dif...
Continuous demand for the improvement of mechanical performance of engineering structures pushes the...
The application of smart materials and metastructures has been rapidly increasing in advanced multip...
In metamaterial science, local resonance and hybridization are key phenomena strongly influencing th...
Phononic crystals and acoustic metamaterials are architected lattices designed to control the propag...
In metamaterial science, local resonance and hybridization are key phenomena strongly influencing th...
International audienceWe propose a design of a periodically perforated thin plate leading to omni-di...
The paper present the comparative study of different acoustic metamaterials, with unprecedented feat...
We report on numerical modelling of three-dimensional lattice structures designed to provide phononi...
Architected materials that control elastic wave propagation are essential in vibration mitigation an...
Periodic anti-tetrachiral materials are strongly characterized by a marked auxeticity, the unusual ...
Motivated by the importance of lattice structures in multiple fields, we numerically investigate the...
Elastic metamaterials made of locally resonant arrays have been developed as effective ways to creat...
Phononic crystals and metamaterials can sculpt elastic waves, controlling their dispersion using dif...
Continuous demand for the improvement of mechanical performance of engineering structures pushes the...
The application of smart materials and metastructures has been rapidly increasing in advanced multip...
In metamaterial science, local resonance and hybridization are key phenomena strongly influencing th...
Phononic crystals and acoustic metamaterials are architected lattices designed to control the propag...
In metamaterial science, local resonance and hybridization are key phenomena strongly influencing th...
International audienceWe propose a design of a periodically perforated thin plate leading to omni-di...
The paper present the comparative study of different acoustic metamaterials, with unprecedented feat...
We report on numerical modelling of three-dimensional lattice structures designed to provide phononi...
Architected materials that control elastic wave propagation are essential in vibration mitigation an...
Periodic anti-tetrachiral materials are strongly characterized by a marked auxeticity, the unusual ...