Effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties

Kenaf natural fibre is used as a sustainable form of material to reinforce polymeric composite. However, natural fibres usually do not perform as well as synthetic fibres. Silica nanoparticle is a material with high surface area and its high interfacial interaction with the matrix results in its imp...

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Main Authors: Bajuri, Farid, Mazlan, Norkhairunnisa, Ishak, Mohamad Ridzwan
Format: Article
Language:English
Published: Universiti Putra Malaysia Press 2017
Online Access:http://psasir.upm.edu.my/id/eprint/57865/1/32%20JST%20Vol%2025%20%283%29%20July%202017_JST%28S%29-0280-2017_pg1029-1038.pdf
http://psasir.upm.edu.my/id/eprint/57865/
http://www.pertanika.upm.edu.my/Pertanika%20PAPERS/JST%20Vol.%2025%20(3)%20Jul.%202017/32%20JST%20Vol%2025%20(3)%20July%202017_JST(S)-0280-2017_pg1029-1038.pdf
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spelling my.upm.eprints.578652018-01-25T08:45:22Z http://psasir.upm.edu.my/id/eprint/57865/ Effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties Bajuri, Farid Mazlan, Norkhairunnisa Ishak, Mohamad Ridzwan Kenaf natural fibre is used as a sustainable form of material to reinforce polymeric composite. However, natural fibres usually do not perform as well as synthetic fibres. Silica nanoparticle is a material with high surface area and its high interfacial interaction with the matrix results in its improvement. In this research, silica nanoparticles were introduced into epoxy resin as a filler material to improve the mechanical properties of the kenaf-reinforced epoxy. They were dispersed into the epoxy using a homogeniser at 3000 rpm for 10 minutes. The composites were fabricated by spreading the silica filled epoxy evenly onto the kenaf mat before hot pressing the resin wet kenaf mat. The results show for flexural properties, composites with higher fibre and silica volume content generally had better properties with specimen 601 (60 vol% kenaf and1 vol% silica) having the highest strength at 68.9 MPa. Compressive properties were erratic with specimen 201 (20 vol% kenaf and 1 vol% silica) having the highest strength at 53.6 MPa. Universiti Putra Malaysia Press 2017 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/57865/1/32%20JST%20Vol%2025%20%283%29%20July%202017_JST%28S%29-0280-2017_pg1029-1038.pdf Bajuri, Farid and Mazlan, Norkhairunnisa and Ishak, Mohamad Ridzwan (2017) Effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties. Pertanika Journal of Science & Technology, 25 (3). pp. 1029-1038. ISSN 0128-7680; ESSN: 2231-8526 http://www.pertanika.upm.edu.my/Pertanika%20PAPERS/JST%20Vol.%2025%20(3)%20Jul.%202017/32%20JST%20Vol%2025%20(3)%20July%202017_JST(S)-0280-2017_pg1029-1038.pdf
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description Kenaf natural fibre is used as a sustainable form of material to reinforce polymeric composite. However, natural fibres usually do not perform as well as synthetic fibres. Silica nanoparticle is a material with high surface area and its high interfacial interaction with the matrix results in its improvement. In this research, silica nanoparticles were introduced into epoxy resin as a filler material to improve the mechanical properties of the kenaf-reinforced epoxy. They were dispersed into the epoxy using a homogeniser at 3000 rpm for 10 minutes. The composites were fabricated by spreading the silica filled epoxy evenly onto the kenaf mat before hot pressing the resin wet kenaf mat. The results show for flexural properties, composites with higher fibre and silica volume content generally had better properties with specimen 601 (60 vol% kenaf and1 vol% silica) having the highest strength at 68.9 MPa. Compressive properties were erratic with specimen 201 (20 vol% kenaf and 1 vol% silica) having the highest strength at 53.6 MPa.
format Article
author Bajuri, Farid
Mazlan, Norkhairunnisa
Ishak, Mohamad Ridzwan
spellingShingle Bajuri, Farid
Mazlan, Norkhairunnisa
Ishak, Mohamad Ridzwan
Effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties
author_facet Bajuri, Farid
Mazlan, Norkhairunnisa
Ishak, Mohamad Ridzwan
author_sort Bajuri, Farid
title Effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties
title_short Effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties
title_full Effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties
title_fullStr Effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties
title_full_unstemmed Effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties
title_sort effect of silica nanoparticles in kenaf reinforced epoxy: flexural and compressive properties
publisher Universiti Putra Malaysia Press
publishDate 2017
url http://psasir.upm.edu.my/id/eprint/57865/1/32%20JST%20Vol%2025%20%283%29%20July%202017_JST%28S%29-0280-2017_pg1029-1038.pdf
http://psasir.upm.edu.my/id/eprint/57865/
http://www.pertanika.upm.edu.my/Pertanika%20PAPERS/JST%20Vol.%2025%20(3)%20Jul.%202017/32%20JST%20Vol%2025%20(3)%20July%202017_JST(S)-0280-2017_pg1029-1038.pdf
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score 13.160551