Mechanical properties and water absorption behaviour of recycled cellulose fibre reinforced epoxy composites

Recycled cellulose fibre (RCF) reinforced epoxy composites were fabricated with fibre loadings of 19, 28, 40 and 46 wt%. Results showed that flexural strength, flexural modulus, fracture toughness and impact strength increased as the fibre content increased. The ultimate mechanical properties were a...

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Main Authors: Alamri, Hatem, Low, It Meng
Format: Journal Article
Published: Elsevier Ltd 2012
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/32202
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author Alamri, Hatem
Low, It Meng
author_facet Alamri, Hatem
Low, It Meng
author_sort Alamri, Hatem
building Curtin Institutional Repository
collection Online Access
description Recycled cellulose fibre (RCF) reinforced epoxy composites were fabricated with fibre loadings of 19, 28, 40 and 46 wt%. Results showed that flexural strength, flexural modulus, fracture toughness and impact strength increased as the fibre content increased. The ultimate mechanical properties were achieved with a fibre content of 46 wt%. The effect of water absorption on mechanical and physical properties of RCF/epoxy composites was investigated. The values of maximum water uptake and diffusion coefficient were found to increase with an increase in fibre content. Flexural strength, modulus and fracture toughness decreased as a result of moisture absorption. However, the impact strength was found to increase slightly after water absorption. XRD, FTIR and SEM studies were carried out to evaluate the composition and microstructure of RCF and RCF/epoxy composites.
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format Journal Article
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institution Curtin University Malaysia
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publishDate 2012
publisher Elsevier Ltd
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spelling curtin-20.500.11937-322022019-01-21T08:27:42Z Mechanical properties and water absorption behaviour of recycled cellulose fibre reinforced epoxy composites Alamri, Hatem Low, It Meng Recycled cellulose fibre Epoxy matrix Water absorption Mechanical properties Recycled cellulose fibre (RCF) reinforced epoxy composites were fabricated with fibre loadings of 19, 28, 40 and 46 wt%. Results showed that flexural strength, flexural modulus, fracture toughness and impact strength increased as the fibre content increased. The ultimate mechanical properties were achieved with a fibre content of 46 wt%. The effect of water absorption on mechanical and physical properties of RCF/epoxy composites was investigated. The values of maximum water uptake and diffusion coefficient were found to increase with an increase in fibre content. Flexural strength, modulus and fracture toughness decreased as a result of moisture absorption. However, the impact strength was found to increase slightly after water absorption. XRD, FTIR and SEM studies were carried out to evaluate the composition and microstructure of RCF and RCF/epoxy composites. 2012 Journal Article http://hdl.handle.net/20.500.11937/32202 10.1016/j.polymertesting.2012.04.002 Elsevier Ltd restricted
spellingShingle Recycled cellulose fibre
Epoxy matrix
Water absorption
Mechanical properties
Alamri, Hatem
Low, It Meng
Mechanical properties and water absorption behaviour of recycled cellulose fibre reinforced epoxy composites
title Mechanical properties and water absorption behaviour of recycled cellulose fibre reinforced epoxy composites
title_full Mechanical properties and water absorption behaviour of recycled cellulose fibre reinforced epoxy composites
title_fullStr Mechanical properties and water absorption behaviour of recycled cellulose fibre reinforced epoxy composites
title_full_unstemmed Mechanical properties and water absorption behaviour of recycled cellulose fibre reinforced epoxy composites
title_short Mechanical properties and water absorption behaviour of recycled cellulose fibre reinforced epoxy composites
title_sort mechanical properties and water absorption behaviour of recycled cellulose fibre reinforced epoxy composites
topic Recycled cellulose fibre
Epoxy matrix
Water absorption
Mechanical properties
url http://hdl.handle.net/20.500.11937/32202