Effect of alkali treatments on physical and mechanical strength of pineapple leaf fibres

Pineapple leaf fibre (PALF) is a waste material of pineapple plants. PALF is abundant in amount for industrial purpose, cheap, easily available, high specific strength and stiffness. PALF is contributing a sustainable development in bio-composites as reinforcement material. However, natural fibres a...

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Main Authors: Khan, Mohammad Asim, Jawaid, Mohammad, Abdan, Khalina, Mohamed Nasir
Format: Article
Language:English
Published: IOP Publishing 2018
Online Access:http://psasir.upm.edu.my/id/eprint/72376/1/Effect%20of%20Alkali%20treatments%20on%20physical%20and%20Mechanical%20strength.pdf
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author Khan, Mohammad Asim
Jawaid, Mohammad
Abdan, Khalina
Mohamed Nasir
author_facet Khan, Mohammad Asim
Jawaid, Mohammad
Abdan, Khalina
Mohamed Nasir
author_sort Khan, Mohammad Asim
collection UPM
description Pineapple leaf fibre (PALF) is a waste material of pineapple plants. PALF is abundant in amount for industrial purpose, cheap, easily available, high specific strength and stiffness. PALF is contributing a sustainable development in bio-composites as reinforcement material. However, natural fibres are not fully compatible with matrix due to hydrophilic in nature. To enhance the compatibility with matrix, fibres are modified its surface to make good interfacial bonding with matrix. In this research, PALF is treated with 3% and 6% concentration of NaOH for 3h, 6h 9h, and 12h soaking time. Surface modification of fibres was investigated by using scanning electron microscopy. Single fibre test and diameter of PALF fibres were evaluated the effects of NaOH treatments.
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spelling upm.eprints-723762020-05-27T08:08:46Z http://psasir.upm.edu.my/id/eprint/72376/ Effect of alkali treatments on physical and mechanical strength of pineapple leaf fibres Khan, Mohammad Asim Jawaid, Mohammad Abdan, Khalina Mohamed Nasir Pineapple leaf fibre (PALF) is a waste material of pineapple plants. PALF is abundant in amount for industrial purpose, cheap, easily available, high specific strength and stiffness. PALF is contributing a sustainable development in bio-composites as reinforcement material. However, natural fibres are not fully compatible with matrix due to hydrophilic in nature. To enhance the compatibility with matrix, fibres are modified its surface to make good interfacial bonding with matrix. In this research, PALF is treated with 3% and 6% concentration of NaOH for 3h, 6h 9h, and 12h soaking time. Surface modification of fibres was investigated by using scanning electron microscopy. Single fibre test and diameter of PALF fibres were evaluated the effects of NaOH treatments. IOP Publishing 2018 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/72376/1/Effect%20of%20Alkali%20treatments%20on%20physical%20and%20Mechanical%20strength.pdf Khan, Mohammad Asim and Jawaid, Mohammad and Abdan, Khalina and Mohamed Nasir (2018) Effect of alkali treatments on physical and mechanical strength of pineapple leaf fibres. IOP Conference Series: Materials Science and Engineering, 290 (1). pp. 1-6. ISSN 1757-8981; ESSN: 1757-899X https://iopscience.iop.org/article/10.1088/1757-899X/290/1/012030 10.1088/1757-899X/290/1/012030
spellingShingle Khan, Mohammad Asim
Jawaid, Mohammad
Abdan, Khalina
Mohamed Nasir
Effect of alkali treatments on physical and mechanical strength of pineapple leaf fibres
title Effect of alkali treatments on physical and mechanical strength of pineapple leaf fibres
title_full Effect of alkali treatments on physical and mechanical strength of pineapple leaf fibres
title_fullStr Effect of alkali treatments on physical and mechanical strength of pineapple leaf fibres
title_full_unstemmed Effect of alkali treatments on physical and mechanical strength of pineapple leaf fibres
title_short Effect of alkali treatments on physical and mechanical strength of pineapple leaf fibres
title_sort effect of alkali treatments on physical and mechanical strength of pineapple leaf fibres
url http://psasir.upm.edu.my/id/eprint/72376/1/Effect%20of%20Alkali%20treatments%20on%20physical%20and%20Mechanical%20strength.pdf
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