The tensile evaluation of the Epoxy/Keratin short fibre as new composites / Ahmad Zafir Romli, Mohd Hanafiah Abidin and Hazizan Md Akil

Production of bio-composites using biodegradable filler/fibre or matrix has been increasing steadily for the past decade. In the case of fibre reinforced polymer composites, natural fibres such as jute, hemp and kenaf have been widely reported. Apart from cellulosic based natural fibre, there are ot...

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Main Authors: Romli, Ahmad Zafir, Abidin, Mohd Hanafiah, Md Akil, Hazizan
Format: Article
Language:English
Published: Research Management Institute (RMI) 2009
Subjects:
Online Access:http://ir.uitm.edu.my/id/eprint/12913/
http://ir.uitm.edu.my/id/eprint/12913/1/AJ_AHMAD%20ZAFIR%20ROMLI%20SRJ%2009%201.pdf
id uitm-12913
recordtype eprints
spelling uitm-129132018-01-14T03:30:18Z http://ir.uitm.edu.my/id/eprint/12913/ The tensile evaluation of the Epoxy/Keratin short fibre as new composites / Ahmad Zafir Romli, Mohd Hanafiah Abidin and Hazizan Md Akil Romli, Ahmad Zafir Abidin, Mohd Hanafiah Md Akil, Hazizan Microscopy Feathers. Plumage Laboratory manuals. Testing of soils. Measurements Production of bio-composites using biodegradable filler/fibre or matrix has been increasing steadily for the past decade. In the case of fibre reinforced polymer composites, natural fibres such as jute, hemp and kenaf have been widely reported. Apart from cellulosic based natural fibre, there are other potential fillers from animal based by-products such as keratin from chicken feathers. In this study, an epoxy/keratin composite has been produced using a pressure assisted hand lay-up technique to form flat homogenized board. The percentage feather content by weight was varied accordingly (i.e. 10, 20, 30, 40 and 50 %). The board underwent standard tensile strength testing at 5mm.min-1 and elucidated that the ultimate tensile strength and strain decreases as the feather composition percentage increases. The Young’s modulus indicated little effect with increasing feather composition percentage. A fractured piece of sample produced from the tensile testing was evaluated with respect to fracture behaviour using scanning electron microscopy (SEM). The tensile testing indicates that the composite with the maximum feather composition percentage (50 %) has the potential to be used in non-structural applications. Research Management Institute (RMI) 2009 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/12913/1/AJ_AHMAD%20ZAFIR%20ROMLI%20SRJ%2009%201.pdf Romli, Ahmad Zafir and Abidin, Mohd Hanafiah and Md Akil, Hazizan (2009) The tensile evaluation of the Epoxy/Keratin short fibre as new composites / Ahmad Zafir Romli, Mohd Hanafiah Abidin and Hazizan Md Akil. Scientific Research Journal, 6 (1). pp. 31-42. ISSN 1675-7009
repository_type Digital Repository
institution_category Local University
institution Universiti Teknologi MARA
building UiTM Institutional Repository
collection Online Access
language English
topic Microscopy
Feathers. Plumage
Laboratory manuals. Testing of soils. Measurements
spellingShingle Microscopy
Feathers. Plumage
Laboratory manuals. Testing of soils. Measurements
Romli, Ahmad Zafir
Abidin, Mohd Hanafiah
Md Akil, Hazizan
The tensile evaluation of the Epoxy/Keratin short fibre as new composites / Ahmad Zafir Romli, Mohd Hanafiah Abidin and Hazizan Md Akil
description Production of bio-composites using biodegradable filler/fibre or matrix has been increasing steadily for the past decade. In the case of fibre reinforced polymer composites, natural fibres such as jute, hemp and kenaf have been widely reported. Apart from cellulosic based natural fibre, there are other potential fillers from animal based by-products such as keratin from chicken feathers. In this study, an epoxy/keratin composite has been produced using a pressure assisted hand lay-up technique to form flat homogenized board. The percentage feather content by weight was varied accordingly (i.e. 10, 20, 30, 40 and 50 %). The board underwent standard tensile strength testing at 5mm.min-1 and elucidated that the ultimate tensile strength and strain decreases as the feather composition percentage increases. The Young’s modulus indicated little effect with increasing feather composition percentage. A fractured piece of sample produced from the tensile testing was evaluated with respect to fracture behaviour using scanning electron microscopy (SEM). The tensile testing indicates that the composite with the maximum feather composition percentage (50 %) has the potential to be used in non-structural applications.
format Article
author Romli, Ahmad Zafir
Abidin, Mohd Hanafiah
Md Akil, Hazizan
author_facet Romli, Ahmad Zafir
Abidin, Mohd Hanafiah
Md Akil, Hazizan
author_sort Romli, Ahmad Zafir
title The tensile evaluation of the Epoxy/Keratin short fibre as new composites / Ahmad Zafir Romli, Mohd Hanafiah Abidin and Hazizan Md Akil
title_short The tensile evaluation of the Epoxy/Keratin short fibre as new composites / Ahmad Zafir Romli, Mohd Hanafiah Abidin and Hazizan Md Akil
title_full The tensile evaluation of the Epoxy/Keratin short fibre as new composites / Ahmad Zafir Romli, Mohd Hanafiah Abidin and Hazizan Md Akil
title_fullStr The tensile evaluation of the Epoxy/Keratin short fibre as new composites / Ahmad Zafir Romli, Mohd Hanafiah Abidin and Hazizan Md Akil
title_full_unstemmed The tensile evaluation of the Epoxy/Keratin short fibre as new composites / Ahmad Zafir Romli, Mohd Hanafiah Abidin and Hazizan Md Akil
title_sort tensile evaluation of the epoxy/keratin short fibre as new composites / ahmad zafir romli, mohd hanafiah abidin and hazizan md akil
publisher Research Management Institute (RMI)
publishDate 2009
url http://ir.uitm.edu.my/id/eprint/12913/
http://ir.uitm.edu.my/id/eprint/12913/1/AJ_AHMAD%20ZAFIR%20ROMLI%20SRJ%2009%201.pdf
first_indexed 2023-09-18T22:49:33Z
last_indexed 2023-09-18T22:49:33Z
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