Acoustic properties of additive manufactured narrow tube periodic structures
Acoustic properties of additive manufactured narrow tube periodic structures
Quarter tube periodic resonators are used to attenuate the acoustic energy of discrete frequencies wherein their sizes can vary from narrow to large. This paper reports acoustical properties of additive manufactured, narrow tube, single and multi-periodic structures, both, theoretically and experimentally. Herein, multi-periodic structures are defined as periodically arranged unit sections of tubes, where each section is composed of periodically repeated unit cells of different sizes and shapes. Structures with hexagonal narrow tubes and octagonal narrow tubes with interfacial gaps are considered for the study, and normal absorption coefficients of these samples are measured by using impedance tube. the theoretical absorption coefficient of these structures is predicted using unit section analysis method and narrow tube theory, where shape dependent viscous and thermal losses are incorporated. Estimated theoretical absorption coefficients are in good agreement with measured results. The result shows that the frequency and amplitude of maximum absorption can be varied by altering the aperture ratio and/or the length of periodic structure. The proposed theoretical method gives an alternative approach for designing and manufacturing periodic narrow tubes for different applications such as absorbing panels, acoustic transducers, and engine filter elements.
Acoustic absorption coefficient, Additive manufacturing, Impedance tube, Narrow tubes, Periodic structures
123-131
Akiwate, Deepak C.
b6f50d26-e59b-413e-9c66-0ee0a869813c
Date, Mahendra D.
05c2b428-fc1b-4cd5-a524-a81bc0985499
Venkatesham, B.
44202c00-3e20-4cb5-9ff5-08405944fcd8
Suryakumar, S.
3cb0d702-eba7-4f41-b7e5-7db8c432a3e6
1 July 2018
Akiwate, Deepak C.
b6f50d26-e59b-413e-9c66-0ee0a869813c
Date, Mahendra D.
05c2b428-fc1b-4cd5-a524-a81bc0985499
Venkatesham, B.
44202c00-3e20-4cb5-9ff5-08405944fcd8
Suryakumar, S.
3cb0d702-eba7-4f41-b7e5-7db8c432a3e6
Akiwate, Deepak C., Date, Mahendra D., Venkatesham, B. and Suryakumar, S.
(2018)
Acoustic properties of additive manufactured narrow tube periodic structures.
Applied Acoustics, 136, .
(doi:10.1016/j.apacoust.2018.02.022).
Abstract
Quarter tube periodic resonators are used to attenuate the acoustic energy of discrete frequencies wherein their sizes can vary from narrow to large. This paper reports acoustical properties of additive manufactured, narrow tube, single and multi-periodic structures, both, theoretically and experimentally. Herein, multi-periodic structures are defined as periodically arranged unit sections of tubes, where each section is composed of periodically repeated unit cells of different sizes and shapes. Structures with hexagonal narrow tubes and octagonal narrow tubes with interfacial gaps are considered for the study, and normal absorption coefficients of these samples are measured by using impedance tube. the theoretical absorption coefficient of these structures is predicted using unit section analysis method and narrow tube theory, where shape dependent viscous and thermal losses are incorporated. Estimated theoretical absorption coefficients are in good agreement with measured results. The result shows that the frequency and amplitude of maximum absorption can be varied by altering the aperture ratio and/or the length of periodic structure. The proposed theoretical method gives an alternative approach for designing and manufacturing periodic narrow tubes for different applications such as absorbing panels, acoustic transducers, and engine filter elements.
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e-pub ahead of print date: 2 March 2018
Published date: 1 July 2018
Keywords:
Acoustic absorption coefficient, Additive manufacturing, Impedance tube, Narrow tubes, Periodic structures
Identifiers
Local EPrints ID: 472841
URI: http://eprints.soton.ac.uk/id/eprint/472841
ISSN: 0003-682X
PURE UUID: 989a48ee-15b2-47e2-b6fa-6253d9f87b46
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Date deposited: 20 Dec 2022 17:33
Last modified: 16 Mar 2024 23:03
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Contributors
Author:
Deepak C. Akiwate
Author:
Mahendra D. Date
Author:
B. Venkatesham
Author:
S. Suryakumar
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