Despite enormous efforts being invested in the elastic wave's band gap, achieving a broadband low-frequency band gap is still a great challenge. Previous attempts to realize a broadband low-frequency band gap have focused on specific cases, such as linkage connections, the piezoelectric effect, or elastic foundations, which cannot be extended to other meaningful advances. Herein, we propose a way to achieve a broadband low-frequency band gap without any specific conditions, but with only the continuum metamaterial itself. Our proposed idea consists of a hollow cylindrical configuration and a bow-tie-shaped part, which can be easily extended to any other vibrational systems. To explain the idea, the extended massspring system is analyti...
To achieve wave control at broad-band ultra-low frequencies, we design »accordion-like» meta-structu...
Architected material used to control elastic wave propagation has thus far relied on two mechanisms ...
© 2019 Author(s). A metamaterial rod with resonators containing negative-stiffness (NS) mechanisms i...
Achieving stop band over broadband at low-frequency range has remained a great scientific challenge ...
This paper proposes an I-shaped radial elastic metamaterial with ultra-low-frequency broadband chara...
Tensegrity is a structural principle in biomechanics and architecture enabling to design rigid and m...
Structural vibration induced by low frequency elastic waves presents a great threat to infrastructur...
This paper investigates a modified acoustic metamaterial system with local resonators coupled throug...
Composite materials with engineered band gaps are promising solutions for wave control and vibration...
11th International Conference on Structural Dynamics, EURODYN 2020 -- 23 November 2020 through 26 No...
The narrow bandwidth is a significant limitation of elastic metamaterials for practical engineering ...
Architected materials that control elastic wave propagation are essential in vibration mitigation an...
Metamaterials realizing stop bands have attracted much attentions recently since they can break-thro...
The terms “acoustic/elastic meta-materials” describe a class of periodic structures with unit cells ...
To achieve wave control at broad-band ultra-low frequencies, we design »accordion-like» meta-structu...
Architected material used to control elastic wave propagation has thus far relied on two mechanisms ...
© 2019 Author(s). A metamaterial rod with resonators containing negative-stiffness (NS) mechanisms i...
Achieving stop band over broadband at low-frequency range has remained a great scientific challenge ...
This paper proposes an I-shaped radial elastic metamaterial with ultra-low-frequency broadband chara...
Tensegrity is a structural principle in biomechanics and architecture enabling to design rigid and m...
Structural vibration induced by low frequency elastic waves presents a great threat to infrastructur...
This paper investigates a modified acoustic metamaterial system with local resonators coupled throug...
Composite materials with engineered band gaps are promising solutions for wave control and vibration...
11th International Conference on Structural Dynamics, EURODYN 2020 -- 23 November 2020 through 26 No...
The narrow bandwidth is a significant limitation of elastic metamaterials for practical engineering ...
Architected materials that control elastic wave propagation are essential in vibration mitigation an...
Metamaterials realizing stop bands have attracted much attentions recently since they can break-thro...
The terms “acoustic/elastic meta-materials” describe a class of periodic structures with unit cells ...
To achieve wave control at broad-band ultra-low frequencies, we design »accordion-like» meta-structu...
Architected material used to control elastic wave propagation has thus far relied on two mechanisms ...
© 2019 Author(s). A metamaterial rod with resonators containing negative-stiffness (NS) mechanisms i...