Effect of pineapple leaf fibre composite material thickness on sound absorption performance.

Pineapple leaf fibre has the potential to be used in the manufacture of composite materials for noise control and reduction applications. This study explores the effect of PALF-Latex composite material thickness on sound absorption performance. Composites with different PALF to Latex ratios namely 1...

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Main Authors: Tuan Mat, Tuan Nurul Farazila, Galip, Noor Suhaida, Yahya, Khairulzan, Haron, Zaiton, Darus, Nadirah, Redzuan, Iffah Haziqah, A. Kassim, Ahmad Syakir Farhan
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Published: 2023
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Online Access:http://eprints.utm.my/107397/
http://dx.doi.org/10.1063/5.0178486
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spelling my.utm.1073972024-09-17T07:16:32Z http://eprints.utm.my/107397/ Effect of pineapple leaf fibre composite material thickness on sound absorption performance. Tuan Mat, Tuan Nurul Farazila Galip, Noor Suhaida Yahya, Khairulzan Haron, Zaiton Darus, Nadirah Redzuan, Iffah Haziqah A. Kassim, Ahmad Syakir Farhan TA Engineering (General). Civil engineering (General) Pineapple leaf fibre has the potential to be used in the manufacture of composite materials for noise control and reduction applications. This study explores the effect of PALF-Latex composite material thickness on sound absorption performance. Composites with different PALF to Latex ratios namely 100% PALF, 90%PALF:10%PALF, 80%PALF:20%PALF, 70%PALF:30%Latex and 60%PALF:40%Latex each with a thickness of 10 mm, 20 mm and 30 mm were tested using an impedance tube to obtain a sound absorption coefficient in the range of 50 Hz to 1600 Hz. It was found that sound absorption has a significant linear relationship with thickness. The thickness of the 30 mm composite produces a high sound absorption performance, especially for the 100%PALF:10%Latex composite. The sound absorption performance is comparable to kenaf-PVA composite with a thickness of 30mm and better than glasswool with a thickness of 50mm. The performance of composite 100%PALF:10%Latex with a thickness of 20mm is also better than glasswool with a thickness of 25.4 mm. In conclusion, PALF-Latex composite has the potential to be used as a sound absorbing material and needs further study related to acoustic performance in the future. 2023-11-09 Conference or Workshop Item PeerReviewed Tuan Mat, Tuan Nurul Farazila and Galip, Noor Suhaida and Yahya, Khairulzan and Haron, Zaiton and Darus, Nadirah and Redzuan, Iffah Haziqah and A. Kassim, Ahmad Syakir Farhan (2023) Effect of pineapple leaf fibre composite material thickness on sound absorption performance. In: 2022 4th International Conference on Vibration, Sound and System Dynamics, ICVSSD 2022, 7 December 2022, Penang, Malaysia. http://dx.doi.org/10.1063/5.0178486
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Tuan Mat, Tuan Nurul Farazila
Galip, Noor Suhaida
Yahya, Khairulzan
Haron, Zaiton
Darus, Nadirah
Redzuan, Iffah Haziqah
A. Kassim, Ahmad Syakir Farhan
Effect of pineapple leaf fibre composite material thickness on sound absorption performance.
description Pineapple leaf fibre has the potential to be used in the manufacture of composite materials for noise control and reduction applications. This study explores the effect of PALF-Latex composite material thickness on sound absorption performance. Composites with different PALF to Latex ratios namely 100% PALF, 90%PALF:10%PALF, 80%PALF:20%PALF, 70%PALF:30%Latex and 60%PALF:40%Latex each with a thickness of 10 mm, 20 mm and 30 mm were tested using an impedance tube to obtain a sound absorption coefficient in the range of 50 Hz to 1600 Hz. It was found that sound absorption has a significant linear relationship with thickness. The thickness of the 30 mm composite produces a high sound absorption performance, especially for the 100%PALF:10%Latex composite. The sound absorption performance is comparable to kenaf-PVA composite with a thickness of 30mm and better than glasswool with a thickness of 50mm. The performance of composite 100%PALF:10%Latex with a thickness of 20mm is also better than glasswool with a thickness of 25.4 mm. In conclusion, PALF-Latex composite has the potential to be used as a sound absorbing material and needs further study related to acoustic performance in the future.
format Conference or Workshop Item
author Tuan Mat, Tuan Nurul Farazila
Galip, Noor Suhaida
Yahya, Khairulzan
Haron, Zaiton
Darus, Nadirah
Redzuan, Iffah Haziqah
A. Kassim, Ahmad Syakir Farhan
author_facet Tuan Mat, Tuan Nurul Farazila
Galip, Noor Suhaida
Yahya, Khairulzan
Haron, Zaiton
Darus, Nadirah
Redzuan, Iffah Haziqah
A. Kassim, Ahmad Syakir Farhan
author_sort Tuan Mat, Tuan Nurul Farazila
title Effect of pineapple leaf fibre composite material thickness on sound absorption performance.
title_short Effect of pineapple leaf fibre composite material thickness on sound absorption performance.
title_full Effect of pineapple leaf fibre composite material thickness on sound absorption performance.
title_fullStr Effect of pineapple leaf fibre composite material thickness on sound absorption performance.
title_full_unstemmed Effect of pineapple leaf fibre composite material thickness on sound absorption performance.
title_sort effect of pineapple leaf fibre composite material thickness on sound absorption performance.
publishDate 2023
url http://eprints.utm.my/107397/
http://dx.doi.org/10.1063/5.0178486
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