超材料
声学
谐振器
亥姆霍兹谐振器
扬声器
材料科学
吸收(声学)
声衰减
声学超材料
亥姆霍兹自由能
衰减
立体光刻
光学
物理
光电子学
复合材料
量子力学
作者
Cecilia Casarini,Benjamin Tiller,Carmelo Mineo,Charles MacLeod,James F. C. Windmill,Joseph C. Jackson
标识
DOI:10.1109/jsen.2018.2865129
摘要
Acoustic metamaterials have recently become of interest for their ability to attenuate sound by breaking the mass-density law. In this paper, acoustic metamaterials based on Helmholtz resonators and capable of attenuating sound up to 30 dB are fabricated for sound absorption applications in the small scale. The proposed metamaterials are subwavelength at a factor of λ/12 with respect to the lateral dimension of the units. The directional response due to the position of the acoustic source on the sound attenuation provided by the metamaterial is investigated by controlling the location of a loudspeaker with a robot arm. To enhance and broaden the absorption bands, structural modifications are added such that overtones are tuned to selected frequencies and membranes are included at the base of the resonators. This design is made possible by innovative 3-D printing techniques based on stereolithography and on the use of specific UV-curable resins. These results show that these designs could be used for sound control in small-scale electroacoustic devices and sensors.
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