Water-lubricated pin-on-disc tests with natural fibre reinforced matrix / Ramdziah Md. Nasir

In this study, natural fibre such as paddy straws and cockle shell was chosen due to its abundance and renewable natural fibre reinforced matrix. The fibres were reinforced with polymer using conventional compression molding. The specimen lubricated with water, were slided at different sliding speed...

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Main Author: Md. Nasir, Ramdziah
Format: Article
Language:English
Published: Faculty of Mechanical Engineering & UiTM Press 2014
Online Access:http://ir.uitm.edu.my/id/eprint/17649/
http://ir.uitm.edu.my/id/eprint/17649/2/AJ_RAMDZIAH%20MD.%20NASIR%20JME%2014.pdf
id uitm-17649
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spelling uitm-176492019-08-22T06:36:27Z http://ir.uitm.edu.my/id/eprint/17649/ Water-lubricated pin-on-disc tests with natural fibre reinforced matrix / Ramdziah Md. Nasir Md. Nasir, Ramdziah In this study, natural fibre such as paddy straws and cockle shell was chosen due to its abundance and renewable natural fibre reinforced matrix. The fibres were reinforced with polymer using conventional compression molding. The specimen lubricated with water, were slided at different sliding speed using the rotating pin-on-disc friction and wear tests. The best performance under lubricated boundary condition was found for bio-shell cockle reinforced matrix followed by paddy-straw reinforced matrix while pure polypropylene has the highest wear rate and coefficient of friction. With the addition of cockle shell powders or paddy straw, wear rate and coefficient of friction of the material decreases with a minute degree of changes in their properties. The wear mechanism was identified using SEM. Faculty of Mechanical Engineering & UiTM Press 2014 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/17649/2/AJ_RAMDZIAH%20MD.%20NASIR%20JME%2014.pdf Md. Nasir, Ramdziah (2014) Water-lubricated pin-on-disc tests with natural fibre reinforced matrix / Ramdziah Md. Nasir. Journal of Mechanical Engineering, 11 (2). pp. 41-51. ISSN 1823-5514
repository_type Digital Repository
institution_category Local University
institution Universiti Teknologi MARA
building UiTM Institutional Repository
collection Online Access
language English
description In this study, natural fibre such as paddy straws and cockle shell was chosen due to its abundance and renewable natural fibre reinforced matrix. The fibres were reinforced with polymer using conventional compression molding. The specimen lubricated with water, were slided at different sliding speed using the rotating pin-on-disc friction and wear tests. The best performance under lubricated boundary condition was found for bio-shell cockle reinforced matrix followed by paddy-straw reinforced matrix while pure polypropylene has the highest wear rate and coefficient of friction. With the addition of cockle shell powders or paddy straw, wear rate and coefficient of friction of the material decreases with a minute degree of changes in their properties. The wear mechanism was identified using SEM.
format Article
author Md. Nasir, Ramdziah
spellingShingle Md. Nasir, Ramdziah
Water-lubricated pin-on-disc tests with natural fibre reinforced matrix / Ramdziah Md. Nasir
author_facet Md. Nasir, Ramdziah
author_sort Md. Nasir, Ramdziah
title Water-lubricated pin-on-disc tests with natural fibre reinforced matrix / Ramdziah Md. Nasir
title_short Water-lubricated pin-on-disc tests with natural fibre reinforced matrix / Ramdziah Md. Nasir
title_full Water-lubricated pin-on-disc tests with natural fibre reinforced matrix / Ramdziah Md. Nasir
title_fullStr Water-lubricated pin-on-disc tests with natural fibre reinforced matrix / Ramdziah Md. Nasir
title_full_unstemmed Water-lubricated pin-on-disc tests with natural fibre reinforced matrix / Ramdziah Md. Nasir
title_sort water-lubricated pin-on-disc tests with natural fibre reinforced matrix / ramdziah md. nasir
publisher Faculty of Mechanical Engineering & UiTM Press
publishDate 2014
url http://ir.uitm.edu.my/id/eprint/17649/
http://ir.uitm.edu.my/id/eprint/17649/2/AJ_RAMDZIAH%20MD.%20NASIR%20JME%2014.pdf
first_indexed 2023-09-18T22:58:45Z
last_indexed 2023-09-18T22:58:45Z
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