Please use this identifier to cite or link to this item: https://doi.org/10.3390/app7111121
Title: Low-frequency noise reduction by earmuffs with coir and coir/carbon fibre-reinforced polypropylene ear cups
Authors: Ang, L.Y.L
Tran, L.Q.N 
Phillips, S
Koh, Y.K
Lee, H.P 
Issue Date: 2017
Citation: Ang, L.Y.L, Tran, L.Q.N, Phillips, S, Koh, Y.K, Lee, H.P (2017). Low-frequency noise reduction by earmuffs with coir and coir/carbon fibre-reinforced polypropylene ear cups. Applied Sciences (Switzerland) 7 (11) : 1121. ScholarBank@NUS Repository. https://doi.org/10.3390/app7111121
Abstract: Natural fibres have been extensively studied due to their potential in a wide range of applications. This study aims to demonstrate the viability of composite earmuffs for low-frequency noise reduction in continuous and transient noise environments. Pink noise and aircraft take-off exterior noise were considered for the former and the latter, respectively. The assembly components of the composite earmuffs were kept identical to a commercial earmuff, which served as a reference for results comparison. Based on the profile of the ear cups from the commercial earmuff, composite ear cups were fabricated from coir fibre and coir/carbon fibre fabrics reinforced with polypropylene. In contrast to the commercial earmuff, the composite earmuffs showed improvements in insertion loss at specific frequencies in the respective noise environments. In pink noise, up to 12 dB improvement in insertion loss was achieved. In aircraft take-off exterior noise, up to 8.6 dB improvement in insertion loss was achieved at 160-544 Hz particularly by the coir fibre-reinforced polypropylene earmuff. Consequently, the proposed earmuffs may find applications in areas where noise exposure is predominantly low-frequency-in some vehicle cabins, at airports, and at construction sites, for example. © 2017 by the authors.
Source Title: Applied Sciences (Switzerland)
URI: https://scholarbank.nus.edu.sg/handle/10635/175197
ISSN: 20763417
DOI: 10.3390/app7111121
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