The aim of this study is to design a two-dimensional solid structure with embedded inertial amplification mechanisms that shows an ultrawide stop band (band gap) at low frequencies. First of all, a unique compliant inertial amplification mechanism is suggested. The compliant (flexure) hinge connections are designed and the topology of the beams in the unit cell mechanism are optimized to achieve the maximum possible stop band width. Then, a two-dimensional periodic structure is formed by using this topologically optimized inertial amplification mechanism. Thereafter, the formed periodic structure is manufactured. Experimental and finite element analyses show that an ultrawide stop band between 29 Hz and 590 Hz is obtained for both longitudi...
The spatial distribution of material phases within a periodic composite can be engineered to produce...
The narrow bandwidth is a significant limitation of elastic metamaterials for practical engineering ...
Inertial amplification has been utilized in phononic media as a mechanism for the generation of larg...
11th International Conference on Structural Dynamics, EURODYN 2020 -- 23 November 2020 through 26 No...
Phononic crystals, artificial materials constituted by a periodical repetition of elements, can inhi...
The main objective of this paper is to propose a new metamaterial capable of generating a quasi-stat...
This paper proposes an I-shaped radial elastic metamaterial with ultra-low-frequency broadband chara...
Metamaterials realizing stop bands have attracted much attentions recently since they can break-thro...
We reveal the unique and fundamental advantage of inerter-based elastic metamaterials by a comparati...
Engineering the architecture of materials is a new and very promising approach to obtain vibration i...
This paper reports a type of metamaterial plate enabling in-plane ultra-wide vibration isolation in ...
The design of innovative metamaterials with robust and reliable performances is attracting increasin...
The elastic wave propagation is investigated in a beam lattice material characterized by a square pe...
AbstractEnvironmental and economic requirements lead to a constantly increasing application of light...
Functional metamaterials offering superior dynamic performances can be conceived by introducing loca...
The spatial distribution of material phases within a periodic composite can be engineered to produce...
The narrow bandwidth is a significant limitation of elastic metamaterials for practical engineering ...
Inertial amplification has been utilized in phononic media as a mechanism for the generation of larg...
11th International Conference on Structural Dynamics, EURODYN 2020 -- 23 November 2020 through 26 No...
Phononic crystals, artificial materials constituted by a periodical repetition of elements, can inhi...
The main objective of this paper is to propose a new metamaterial capable of generating a quasi-stat...
This paper proposes an I-shaped radial elastic metamaterial with ultra-low-frequency broadband chara...
Metamaterials realizing stop bands have attracted much attentions recently since they can break-thro...
We reveal the unique and fundamental advantage of inerter-based elastic metamaterials by a comparati...
Engineering the architecture of materials is a new and very promising approach to obtain vibration i...
This paper reports a type of metamaterial plate enabling in-plane ultra-wide vibration isolation in ...
The design of innovative metamaterials with robust and reliable performances is attracting increasin...
The elastic wave propagation is investigated in a beam lattice material characterized by a square pe...
AbstractEnvironmental and economic requirements lead to a constantly increasing application of light...
Functional metamaterials offering superior dynamic performances can be conceived by introducing loca...
The spatial distribution of material phases within a periodic composite can be engineered to produce...
The narrow bandwidth is a significant limitation of elastic metamaterials for practical engineering ...
Inertial amplification has been utilized in phononic media as a mechanism for the generation of larg...