Introducing a negative-stiffness mechanism (NSM) into a traditional linear resonator to form a high-static-low-dynamic-stiffness (HSLDS) resonator is an ideal way to create a low-frequency band gap. However, with the decrease in frequencies of the band gap, the band width narrows, which could hinder the application of the metamaterials for attenuating ultralow-frequency elastic waves. In this paper, a regulatory mechanism (RM) constituted by an electrically charged coil and a magnet ring is introduced into an HSLDS resonator to devise a semi-active quasi-zero-stiffness (QZS) resonator. With these semi-active resonators attached onto a beam periodically, a semi-active metamaterial beam (meta-beam) is realized. The expressions of both the res...
Despite enormous efforts being invested in the elastic wave's band gap, achieving a broadband l...
This paper investigates a modified acoustic metamaterial system with local resonators coupled throug...
Metastructures with resonators are effective in wave attenuating due to band gaps, but it is still a...
© 2019 Author(s). A metamaterial rod with resonators containing negative-stiffness (NS) mechanisms i...
© 2019, Springer Nature B.V. Although elastic metamaterials in a subwavelength scale can control mac...
This paper proposes an I-shaped radial elastic metamaterial with ultra-low-frequency broadband chara...
Metamaterials can possess material parameters which do not exist in conventional materials. Conseque...
International audienceOne dimensional active metamaterials with broadband controllable bending stiff...
In this paper, an active control strategy is employed to actively tune the vibration and wave propag...
Acoustic metamaterials possessing subwavelength characteristics can be used for low-frequency noise ...
We propose a new nonlinear elastic metamaterial which shows tunable bandgap at quasi-static frequenc...
Achieving stop band over broadband at low-frequency range has remained a great scientific challenge ...
Frequency dependent mechanical properties of elastic metamaterials with locally resonant microstruct...
Metamaterials realizing stop bands have attracted much attentions recently since they can break-thro...
Metamaterials are materials with an artificially tailored internal structure and unusual physical an...
Despite enormous efforts being invested in the elastic wave's band gap, achieving a broadband l...
This paper investigates a modified acoustic metamaterial system with local resonators coupled throug...
Metastructures with resonators are effective in wave attenuating due to band gaps, but it is still a...
© 2019 Author(s). A metamaterial rod with resonators containing negative-stiffness (NS) mechanisms i...
© 2019, Springer Nature B.V. Although elastic metamaterials in a subwavelength scale can control mac...
This paper proposes an I-shaped radial elastic metamaterial with ultra-low-frequency broadband chara...
Metamaterials can possess material parameters which do not exist in conventional materials. Conseque...
International audienceOne dimensional active metamaterials with broadband controllable bending stiff...
In this paper, an active control strategy is employed to actively tune the vibration and wave propag...
Acoustic metamaterials possessing subwavelength characteristics can be used for low-frequency noise ...
We propose a new nonlinear elastic metamaterial which shows tunable bandgap at quasi-static frequenc...
Achieving stop band over broadband at low-frequency range has remained a great scientific challenge ...
Frequency dependent mechanical properties of elastic metamaterials with locally resonant microstruct...
Metamaterials realizing stop bands have attracted much attentions recently since they can break-thro...
Metamaterials are materials with an artificially tailored internal structure and unusual physical an...
Despite enormous efforts being invested in the elastic wave's band gap, achieving a broadband l...
This paper investigates a modified acoustic metamaterial system with local resonators coupled throug...
Metastructures with resonators are effective in wave attenuating due to band gaps, but it is still a...