Engineering the architecture of materials is a new and very promising approach to obtain vibration isolation properties. The biggest challenge for lattice structures exhibiting vibration isolation properties is the trade-off between compactness and wide and low-frequency bandgaps, i.e., frequency ranges where the propagation of elastic or acoustic waves is prohibited. Here, we, both numerically and experimentally, propose and demonstrate a new design concept for compact metamaterials exhibiting extraordinary properties in terms of wide and low frequency bandgap and structural characteristics. With its 4 cm side length unit cell, its bandgap opening frequency of 1478 Hz, its band-stop filter behavior in the range 1.48-15.24 kHz, and its stru...
11th International Conference on Structural Dynamics, EURODYN 2020 -- 23 November 2020 through 26 No...
Composite materials with engineered band gaps are promising solutions for wave control and vibration...
Recent research in vibration isolation focuses on designing metastructures with structural bandgaps;...
Vibrations are undesirable and cause many problems in engineering. Among the many techniques to redu...
Structural vibration induced by low frequency elastic waves presents a great threat to infrastructur...
The adverse effect of mechanical vibration is inevitable and can be observed in machine components e...
Architected materials that control elastic wave propagation are essential in vibration mitigation an...
The design of innovative metamaterials with robust and reliable performances is attracting increasin...
In this manuscript we experimentally study a modular metamaterial that is able to provide mechanical...
This paper discusses an elastic metamaterial for filtering energy from certain frequencies of an inc...
Periodic structures, such as honeycomb core panels, combine excellent mechanical properties with a l...
Phononic crystals, artificial materials constituted by a periodical repetition of elements, can inhi...
Elastic metamaterials have promising applications in wave control and vibration isolation, due to th...
This paper reports a type of metamaterial plate enabling in-plane ultra-wide vibration isolation in ...
Phononic crystals/metamaterials are attracting increasing interest because of their large variety of...
11th International Conference on Structural Dynamics, EURODYN 2020 -- 23 November 2020 through 26 No...
Composite materials with engineered band gaps are promising solutions for wave control and vibration...
Recent research in vibration isolation focuses on designing metastructures with structural bandgaps;...
Vibrations are undesirable and cause many problems in engineering. Among the many techniques to redu...
Structural vibration induced by low frequency elastic waves presents a great threat to infrastructur...
The adverse effect of mechanical vibration is inevitable and can be observed in machine components e...
Architected materials that control elastic wave propagation are essential in vibration mitigation an...
The design of innovative metamaterials with robust and reliable performances is attracting increasin...
In this manuscript we experimentally study a modular metamaterial that is able to provide mechanical...
This paper discusses an elastic metamaterial for filtering energy from certain frequencies of an inc...
Periodic structures, such as honeycomb core panels, combine excellent mechanical properties with a l...
Phononic crystals, artificial materials constituted by a periodical repetition of elements, can inhi...
Elastic metamaterials have promising applications in wave control and vibration isolation, due to th...
This paper reports a type of metamaterial plate enabling in-plane ultra-wide vibration isolation in ...
Phononic crystals/metamaterials are attracting increasing interest because of their large variety of...
11th International Conference on Structural Dynamics, EURODYN 2020 -- 23 November 2020 through 26 No...
Composite materials with engineered band gaps are promising solutions for wave control and vibration...
Recent research in vibration isolation focuses on designing metastructures with structural bandgaps;...