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Title: Development of thin sound absorber by parameter optimization of multilayer compressed porous metal with rear cavity
Authors: Shen, X 
Bai, P
Chen, L
To, S 
Yang, F
Zhang, X
Yin, Q
Issue Date: Feb-2020
Source: Applied acoustics, Feb. 2020, v. 159, 107071
Abstract: Practicability and applicability of the sound absorber can be improved by reducing its total thickness. The thin sound absorber was developed by optimizing the multilayer compressed porous metal with the rear cavity in this research. Theoretical model of sound absorption coefficient of the multilayer compressed porous metal with the rear cavity was constructed through the transfer matrix method based on Johnson-Champoux-Allard model, and its structural parameters were optimized to obtain optimal average sound absorption coefficient in 100–6000 Hz by the cuckoo search algorithm. Finite element simulation of the sound absorbers was conducted in the virtual acoustic laboratory for preliminary verification. According to the optimal structural parameters, single compressed porous metals were prepared and assembled to the optimal multilayer compressed porous metal with the rear cavity, and their sound absorption coefficients in 100–6000 Hz were measured according to standing wave tube method. Through theoretical modeling, parameter optimization, finite element simulation, and standing wave tube measurement, an effective sound absorber with the average sound absorption coefficient of 0.5105 in the 100–6000 Hz was developed by optimal 4-layer compressed porous metal with the total thickness of 5 mm, which would promote its application in the noise reduction field.
Keywords: Cuckoo search algorithm
Finite element simulation
Multilayer compressed porous metal
Parameter optimization
Standing wave tube measurement
Thin sound absorber
Publisher: Elsevier Ltd
Journal: Applied acoustics 
ISSN: 0003-682X
EISSN: 1872-910X
DOI: 10.1016/j.apacoust.2019.107071
Rights: © 2019 Elsevier Ltd. All rights reserved.
© 2019. This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/
The following publication Shen, X., Bai, P., Chen, L., To, S., Yang, F., Zhang, X., & Yin, Q. (2020). Development of thin sound absorber by parameter optimization of multilayer compressed porous metal with rear cavity. Applied Acoustics, 159, 107071 is available at https://doi.org/10.1016/j.apacoust.2019.107071.
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