The acoustic performance of a new type of fibre-less sound absorber, the micro-grooved element (MGE), is studied in this paper. A MGE is a double layer element that involve inlet/outlet slots and inner micro-channels engraved onto the mating surface of the layers. MGEs are potential substitute of traditional micro-perforated elements (MPEs) in applications where the absorption coefficient, the acoustic behaviour at high levels of sound excitation and the cost of the absorber are of main concern. The transfer impedance and the absorption coefficient of MGEs and MPEs are measured, modelled and compared in this study. The acoustics of the micro-channels is treated in detail, the impedance end corrections are determined and the non-linear effects are accounted for. The linear behaviour of MGEs is described by extending the models for slit-shaped perforated elements. The quasi- and non-linear behaviours are expressed as a function of the Shear number and Strouhal number by curve fitting the experimental results.

Acoustic performance of micro-grooved elements

Auriemma Fabio
Primo
2017

Abstract

The acoustic performance of a new type of fibre-less sound absorber, the micro-grooved element (MGE), is studied in this paper. A MGE is a double layer element that involve inlet/outlet slots and inner micro-channels engraved onto the mating surface of the layers. MGEs are potential substitute of traditional micro-perforated elements (MPEs) in applications where the absorption coefficient, the acoustic behaviour at high levels of sound excitation and the cost of the absorber are of main concern. The transfer impedance and the absorption coefficient of MGEs and MPEs are measured, modelled and compared in this study. The acoustics of the micro-channels is treated in detail, the impedance end corrections are determined and the non-linear effects are accounted for. The linear behaviour of MGEs is described by extending the models for slit-shaped perforated elements. The quasi- and non-linear behaviours are expressed as a function of the Shear number and Strouhal number by curve fitting the experimental results.
2017
Istituto Superconduttori, materiali innovativi e dispositivi - SPIN - Sede Secondaria Napoli
Acoustic materials
Acoustic transfer impedance
End corrections
Micro-grooved elements
Micro-perforated elements
Non-linear regime
Sound absorption coefficient
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/523412
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