Tetrachiral materials are characterized by a cellular microstructure made by a periodic pattern of stiff rings and flexible ligaments. Their mechanical behaviour can be described by a planar lattice of rigid massive bodies and elastic massless beams. The periodic cell dynamics is governed by a monoatomic structural model, conveniently reduced to the only active degrees-of-freedom. The paper presents an explicit parametric description of the band structure governing the free propagation of elastic waves. By virtue of multiparametric perturbation techniques, sensitivity analyses are performed to achieve analytical asymptotic approximation of the dispersion functions. The parametric conditions for the existence of full band gaps in the low-fre...
Sonic or acoustic metamaterials may offer a mechanically robust and highly customizable solution to ...
Sonic or acoustic metamaterials may offer a mechanically robust and highly customizable solution to ...
Architected metamaterials offering superior dynamic performances can be conceived by inducing local ...
Tetrachiral materials are characterized by a cellular microstructure made by a periodic pattern of s...
Tetrachiral materials are characterized by a cellular microstructure made by a periodic pattern of s...
The elastic wave propagation is investigated in the beam lattice material characterized by a square ...
The engineered class of anti-tetrachiral cellular materials is phenomenologically characterized by a...
Periodic anti-tetrachiral materials are strongly characterized by a marked auxeticity, the unusual ...
A parametric beam lattice model is formulated to analyse the propagation properties of elastic in-pl...
The possibility of obtaining band gap structures in chiral auxetic lattices is here considered and a...
The dispersive wave propagation in a periodic metamaterial with tetrachiral topology and inertial lo...
Functional metamaterials offering superior dynamic performances can be conceived by introducing loca...
Lattice materials are often investigated to determine how small parameter variations in the periodic...
The periodic cellular topology characterizing the microscale structure of a heterogeneous material m...
A simplified model of periodic chiral beam-lattices containing local resonators has been formulated ...
Sonic or acoustic metamaterials may offer a mechanically robust and highly customizable solution to ...
Sonic or acoustic metamaterials may offer a mechanically robust and highly customizable solution to ...
Architected metamaterials offering superior dynamic performances can be conceived by inducing local ...
Tetrachiral materials are characterized by a cellular microstructure made by a periodic pattern of s...
Tetrachiral materials are characterized by a cellular microstructure made by a periodic pattern of s...
The elastic wave propagation is investigated in the beam lattice material characterized by a square ...
The engineered class of anti-tetrachiral cellular materials is phenomenologically characterized by a...
Periodic anti-tetrachiral materials are strongly characterized by a marked auxeticity, the unusual ...
A parametric beam lattice model is formulated to analyse the propagation properties of elastic in-pl...
The possibility of obtaining band gap structures in chiral auxetic lattices is here considered and a...
The dispersive wave propagation in a periodic metamaterial with tetrachiral topology and inertial lo...
Functional metamaterials offering superior dynamic performances can be conceived by introducing loca...
Lattice materials are often investigated to determine how small parameter variations in the periodic...
The periodic cellular topology characterizing the microscale structure of a heterogeneous material m...
A simplified model of periodic chiral beam-lattices containing local resonators has been formulated ...
Sonic or acoustic metamaterials may offer a mechanically robust and highly customizable solution to ...
Sonic or acoustic metamaterials may offer a mechanically robust and highly customizable solution to ...
Architected metamaterials offering superior dynamic performances can be conceived by inducing local ...