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Sound absorption characteristics of aluminum foam with spherical cells

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posted on 2024-07-09, 14:51 authored by Yunjie Li, Xinfu Wang, Xingfu Wang, Yuelu Ren, Fusheng Han, Cuie Wen
Aluminum foams were fabricated by an infiltration process. The foams possess spherical cells with a fixed porosity of 65% and varied pore sizes which ranged from 1.3 to 1.9 mm. The spherical cells are interconnected by small pores or pore openings on the cell walls that cause the foams show a characteristic of open cell structures. The sound absorption coefficient of the aluminum foams was measured by a standing wave tube and calculated by a transfer function method. It is shown that the sound absorption coefficient increases with an increase in the number of pore openings in the unit area or with a decrease of the diameter of the pore openings in the range of 0.3 to 0.4 mm. If backed with an air cavity, the resonant absorption peaks in the sound absorption coefficient versus frequency curves will be shifted toward lower frequencies as the cavity depth is increased. The samples with the same pore opening size but different pore size show almost the same absorption behavior, especially in the low frequency range. The present results are in good agreement with some theoretical predictions based on the acoustic impedance measurements of metal foams with circular apertures and cylindrical cavities and the principle of electroacoustic analogy.

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ISSN

0021-8979

Journal title

J. Appl. Phys.

Volume

110

Issue

11

Article number

article no. 113525

Publisher

American Institute of Physics

Copyright statement

Copyright © 2011 American Institute of Physics. The published version is reproduced with the permission of the publisher.

Language

eng

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