Acoustic metamaterials possessing subwavelength characteristics can be used for low-frequency noise and vibration control. Acoustic metamaterials with adjustable dynamic properties can further enhance their possible applications. This paper designs a kind of tunable acoustic metamaterials consisting of the frame structure, airbag, and balancing weight. And their dynamic characteristics can be manipulated by tuning gauge pressure and gas temperature in the airbag. The calculation results indicate that the tunable acoustic metamaterials can effectively suppress the wave propagation and vibration in the ultralow-frequency band gap (about 13Hz similar to 90Hz) during manipulation. The complete band gap is the overlapping frequency range of an o...
Recently, resonant metamaterials have caught attention due to their lightweight design and superior ...
Abstract In this work, we present a single low-profile metamaterial that provides bandgaps of acoust...
This paper aims at proposing a novel type tunable acoustic metamaterials with complete band gap comp...
Acoustic metamaterials possessing subwavelength characteristics can be used for low-frequency noise ...
Metamaterials are periodic structures which offer physical properties not found in nature. Particula...
Metamaterials have received significant interest in recent years due to their potential ability to e...
This paper investigates a modified acoustic metamaterial system with local resonators coupled throug...
Acoustic metamaterial science is an emerging field at the frontier of modern acoustics. It provides ...
Metamaterials have received significant interest in recent years due to their potential ability to e...
Acoustic metamaterial science is an emerging field at the frontier of modern acoustics. It provides ...
Sound attenuation with conventional acoustic materials is subject to the mass law and requires massi...
Sound attenuation with conventional acoustic materials is subject to the mass law and requires massi...
In order to achieve the dual needs of single-phase vibration reduction and lightweight, a square hon...
Sound attenuation with conventional acoustic materials is subject to the mass law and requires mass...
Sound attenuation with conventional acoustic materials is subject to the mass law and requires mass...
Recently, resonant metamaterials have caught attention due to their lightweight design and superior ...
Abstract In this work, we present a single low-profile metamaterial that provides bandgaps of acoust...
This paper aims at proposing a novel type tunable acoustic metamaterials with complete band gap comp...
Acoustic metamaterials possessing subwavelength characteristics can be used for low-frequency noise ...
Metamaterials are periodic structures which offer physical properties not found in nature. Particula...
Metamaterials have received significant interest in recent years due to their potential ability to e...
This paper investigates a modified acoustic metamaterial system with local resonators coupled throug...
Acoustic metamaterial science is an emerging field at the frontier of modern acoustics. It provides ...
Metamaterials have received significant interest in recent years due to their potential ability to e...
Acoustic metamaterial science is an emerging field at the frontier of modern acoustics. It provides ...
Sound attenuation with conventional acoustic materials is subject to the mass law and requires massi...
Sound attenuation with conventional acoustic materials is subject to the mass law and requires massi...
In order to achieve the dual needs of single-phase vibration reduction and lightweight, a square hon...
Sound attenuation with conventional acoustic materials is subject to the mass law and requires mass...
Sound attenuation with conventional acoustic materials is subject to the mass law and requires mass...
Recently, resonant metamaterials have caught attention due to their lightweight design and superior ...
Abstract In this work, we present a single low-profile metamaterial that provides bandgaps of acoust...
This paper aims at proposing a novel type tunable acoustic metamaterials with complete band gap comp...