In this study, we present an optimization scheme for the resonator distribution in rainbow metamaterials that are constitutive of a ?-shaped beam with parallel plate insertions and two sets of spatially varying cantilever-mass resonators. To improve the vibration attenuation of the rainbow metamaterials at frequencies of interest, two optimization strategies are proposed, aiming at minimizing the maximum and average receptance values respectively. Objective functions for both single and multiple frequency ranges optimization are set up with the frequency response functions predicted by an analytical model. The masses of the two sets of resonators clamped at different side walls of the ?-shaped beams constitute the set of design variables. O...
The elastic wave propagation is investigated in the beam lattice material characterized by a square ...
A parametric beam lattice model is formulated to analyse the propagation properties of elastic in-pl...
The dispersive wave propagation in a periodic metamaterial with tetrachiral topology and inertial lo...
In this study, we present an optimization scheme for the resonator distribution in rainbow metamater...
Nonperiodic metamaterials with appropriately designed resonator distributions can have superior vibr...
In this study, we propose a ‘rainbow’ metamaterial to achieve broadband multi-frequency vibration at...
In this study, we propose a rainbow metamaterial to achieve multi-frequency broadband vibration supp...
Metamaterials with multiple resonators have been widely investigated for the purpose of generating m...
This paper investigates the influences of nonperiodic rainbow resonators on the vibration attenuatio...
Simulation data are presented for identifying and analysing the dynamic properties of the rainbow me...
Phononic crystals (PnCs) and metamaterials are widely investigated for vibration suppression owing t...
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 ...
Broadband sound attenuation at low frequency ranges (below 500 Hz) has been a challenge in the acous...
Metastructures are typically composed of periodic unit cells designed to present enhanced dynamic pr...
The elastic wave propagation is investigated in the beam lattice material characterized by a square ...
A parametric beam lattice model is formulated to analyse the propagation properties of elastic in-pl...
The dispersive wave propagation in a periodic metamaterial with tetrachiral topology and inertial lo...
In this study, we present an optimization scheme for the resonator distribution in rainbow metamater...
Nonperiodic metamaterials with appropriately designed resonator distributions can have superior vibr...
In this study, we propose a ‘rainbow’ metamaterial to achieve broadband multi-frequency vibration at...
In this study, we propose a rainbow metamaterial to achieve multi-frequency broadband vibration supp...
Metamaterials with multiple resonators have been widely investigated for the purpose of generating m...
This paper investigates the influences of nonperiodic rainbow resonators on the vibration attenuatio...
Simulation data are presented for identifying and analysing the dynamic properties of the rainbow me...
Phononic crystals (PnCs) and metamaterials are widely investigated for vibration suppression owing t...
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 ...
Broadband sound attenuation at low frequency ranges (below 500 Hz) has been a challenge in the acous...
Metastructures are typically composed of periodic unit cells designed to present enhanced dynamic pr...
The elastic wave propagation is investigated in the beam lattice material characterized by a square ...
A parametric beam lattice model is formulated to analyse the propagation properties of elastic in-pl...
The dispersive wave propagation in a periodic metamaterial with tetrachiral topology and inertial lo...