Advanced Composites with Natural Reinforcement

The strict environmental regulations and depletion of petroleum resources urge the use of alternative eco-friendly natural reinforcements to produce advanced composites. These natural fillers or fibres such as sisal, coir, basalt, hemp, flax, and wool offer great renewability, biodegradability,...

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Main Authors: Jim, Low, Ian J., Davies, Yu, Dong, Uddin Ahmed, Shaikh Faiz, Hao, Wang, Md Akil, Hazizan
פורמט: Article
שפה:English
יצא לאור: Hindawi Publishing Corporation 2014
נושאים:
גישה מקוונת:http://eprints.usm.my/38268/1/Advanced_Composites_with_Natural_Reinforcement.pdf
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author Jim, Low
Ian J., Davies
Yu, Dong
Uddin Ahmed, Shaikh Faiz
Hao, Wang
Md Akil, Hazizan
author_facet Jim, Low
Ian J., Davies
Yu, Dong
Uddin Ahmed, Shaikh Faiz
Hao, Wang
Md Akil, Hazizan
author_sort Jim, Low
collection USM
description The strict environmental regulations and depletion of petroleum resources urge the use of alternative eco-friendly natural reinforcements to produce advanced composites. These natural fillers or fibres such as sisal, coir, basalt, hemp, flax, and wool offer great renewability, biodegradability, abundance, cost effectiveness, and low specific gravity as opposed to synthetic fibres like glass and carbon. Composite industry realises enormous advantages of their composites in better functional or structural properties over synthetic counterparts despite not having relatively high mechanical performance.
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spelling usm.eprints-382682018-01-05T08:07:44Z http://eprints.usm.my/38268/ Advanced Composites with Natural Reinforcement Jim, Low Ian J., Davies Yu, Dong Uddin Ahmed, Shaikh Faiz Hao, Wang Md Akil, Hazizan TN1-997 Mining engineering. Metallurgy The strict environmental regulations and depletion of petroleum resources urge the use of alternative eco-friendly natural reinforcements to produce advanced composites. These natural fillers or fibres such as sisal, coir, basalt, hemp, flax, and wool offer great renewability, biodegradability, abundance, cost effectiveness, and low specific gravity as opposed to synthetic fibres like glass and carbon. Composite industry realises enormous advantages of their composites in better functional or structural properties over synthetic counterparts despite not having relatively high mechanical performance. Hindawi Publishing Corporation 2014 Article PeerReviewed application/pdf en http://eprints.usm.my/38268/1/Advanced_Composites_with_Natural_Reinforcement.pdf Jim, Low and Ian J., Davies and Yu, Dong and Uddin Ahmed, Shaikh Faiz and Hao, Wang and Md Akil, Hazizan (2014) Advanced Composites with Natural Reinforcement. Advances in Materials Science and Engineering, 2014 (376351). pp. 1-2. ISSN 1687-8434 http://dx.doi.org/10.1155/2014/376351
spellingShingle TN1-997 Mining engineering. Metallurgy
Jim, Low
Ian J., Davies
Yu, Dong
Uddin Ahmed, Shaikh Faiz
Hao, Wang
Md Akil, Hazizan
Advanced Composites with Natural Reinforcement
title Advanced Composites with Natural Reinforcement
title_full Advanced Composites with Natural Reinforcement
title_fullStr Advanced Composites with Natural Reinforcement
title_full_unstemmed Advanced Composites with Natural Reinforcement
title_short Advanced Composites with Natural Reinforcement
title_sort advanced composites with natural reinforcement
topic TN1-997 Mining engineering. Metallurgy
url http://eprints.usm.my/38268/1/Advanced_Composites_with_Natural_Reinforcement.pdf
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AT yudong advancedcompositeswithnaturalreinforcement
AT uddinahmedshaikhfaiz advancedcompositeswithnaturalreinforcement
AT haowang advancedcompositeswithnaturalreinforcement
AT mdakilhazizan advancedcompositeswithnaturalreinforcement