This paper presents two dimensional sound-proof acoustic metamaterials having tunable multi-band negative effective mass density. The acoustic metamaterial panel was composed of many periodic funnel-shaped cell units into square lattice. Each unit cell operates as multi-band resonators. By tuning unit cell the local reflected acoustic wave was almost out of phase with the incident wave. It leads to the negative effective density and created band gap for absorbing incident sound energy without transmission. Measurement of the transmission loss and negative effective mass density was performed using fourmicrophone methods for characterization of barrier performanceThis research was funded by Samsung Electronics Company
To enhance the sound insulation performance of double panel partitions at their mass-air-mass resona...
Acoustic metamaterial, which can prohibit effectively the elastic wave propagation in the bandgap fr...
One of the most common problems in noise control is the attenuation of low frequency noise. Typical ...
Difficulty in attenuating low frequency sound is attributable to the "mass-density law" that states ...
The objectives of this work were to develop lightweight barrier and compact absorbing material syste...
A dual-resonator microstructure design is proposed for acoustic metamaterials to achieve broadband e...
5 pags, 3 figsMan-made composite materials called metamaterials allow for the creation of unusual wa...
This paper presents an experimental investigation of an acoustic barrier composed out of an acoustic...
A three-dimensional acoustic negative refractive index metamaterial based on the idea of localized r...
The study demonstrates the possibility of achieving near-zero propagation of sound waves in acoustic...
We show experimentally that thin membrane-type acoustic meta-materials can serve as a total reflecti...
Much effort has been made to experimentally fabricate acoustic metamaterials that display novel prop...
Acoustic metamaterials have emerged as new means for sound control with extraordinary properties, su...
Acoustic metamaterials have been shown to have the ability to achieve high levels of low frequency n...
Over the past decade, the emergence of acoustic metamaterials has considerably broadened the possibi...
To enhance the sound insulation performance of double panel partitions at their mass-air-mass resona...
Acoustic metamaterial, which can prohibit effectively the elastic wave propagation in the bandgap fr...
One of the most common problems in noise control is the attenuation of low frequency noise. Typical ...
Difficulty in attenuating low frequency sound is attributable to the "mass-density law" that states ...
The objectives of this work were to develop lightweight barrier and compact absorbing material syste...
A dual-resonator microstructure design is proposed for acoustic metamaterials to achieve broadband e...
5 pags, 3 figsMan-made composite materials called metamaterials allow for the creation of unusual wa...
This paper presents an experimental investigation of an acoustic barrier composed out of an acoustic...
A three-dimensional acoustic negative refractive index metamaterial based on the idea of localized r...
The study demonstrates the possibility of achieving near-zero propagation of sound waves in acoustic...
We show experimentally that thin membrane-type acoustic meta-materials can serve as a total reflecti...
Much effort has been made to experimentally fabricate acoustic metamaterials that display novel prop...
Acoustic metamaterials have emerged as new means for sound control with extraordinary properties, su...
Acoustic metamaterials have been shown to have the ability to achieve high levels of low frequency n...
Over the past decade, the emergence of acoustic metamaterials has considerably broadened the possibi...
To enhance the sound insulation performance of double panel partitions at their mass-air-mass resona...
Acoustic metamaterial, which can prohibit effectively the elastic wave propagation in the bandgap fr...
One of the most common problems in noise control is the attenuation of low frequency noise. Typical ...