Stiffness prediction of hybrid kenaf/glass fiber reinforced polypropylene composites using rule of mixtures (ROM) and rule of hybrid mixtures (RoHM)

In this report, rules of mixture (ROM) and rule of hybrid mixtures (RoHM) were utilized to predict the mechanical properties of kenaf/glass fiber reinforced polypropylene short random oriented hybrid composites material. Three hybrid composition were studied with total fiber contents 30 vol%, 40 vol...

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Main Authors: Mansor, Muhd Ridzuan, Salit, Mohd Sapuan, Zainudin, Edi Syams, Abd Aziz, Nuraini, Arep @ Ariff, Hambali
Format: Article
Language:English
Published: MDPPL 2013
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Online Access:http://eprints.utem.edu.my/id/eprint/12226/1/POLY_NO_3_-_CH-7.pdf
http://eprints.utem.edu.my/id/eprint/12226/
http://www.mdppl.com
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Institution: Universiti Teknikal Malaysia Melaka
Language: English
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spelling my.utem.eprints.122262023-06-15T15:23:50Z http://eprints.utem.edu.my/id/eprint/12226/ Stiffness prediction of hybrid kenaf/glass fiber reinforced polypropylene composites using rule of mixtures (ROM) and rule of hybrid mixtures (RoHM) Mansor, Muhd Ridzuan Salit, Mohd Sapuan Zainudin, Edi Syams Abd Aziz, Nuraini Arep @ Ariff, Hambali TJ Mechanical engineering and machinery In this report, rules of mixture (ROM) and rule of hybrid mixtures (RoHM) were utilized to predict the mechanical properties of kenaf/glass fiber reinforced polypropylene short random oriented hybrid composites material. Three hybrid composition were studied with total fiber contents 30 vol%, 40 vol% and 50 vol% and the relative glass fiber contents are varied from 0 to 100 vol%. Analytical results using the both micromechanical models show that the hybridization between kenaf with glass fiber in short fiber form using polypropylene matrix give positive hybrid effect to the overall hybrid stiffness at minimum relative glass fiber volume fraction of 87.5% compared to the kenaf/polypropylene composites single system for all total fiber volume content cases. Similarly, it was also observed that the stiffness of the hybrid short and randomly oriented composites increases as the overall fiber volume contents increases. The overall results have provided useful insight of the hybridization effects to the stiffness of the final hybrid composites especially for the application in product development process using similar hybrid short randomly oriented kenaf/glass fiber reinforced polypropylene composite materials. MDPPL 2013 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/12226/1/POLY_NO_3_-_CH-7.pdf Mansor, Muhd Ridzuan and Salit, Mohd Sapuan and Zainudin, Edi Syams and Abd Aziz, Nuraini and Arep @ Ariff, Hambali (2013) Stiffness prediction of hybrid kenaf/glass fiber reinforced polypropylene composites using rule of mixtures (ROM) and rule of hybrid mixtures (RoHM). Journal of Polymer Materials, 30 (3). pp. 321-334. ISSN 0973-8622 http://www.mdppl.com
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Mansor, Muhd Ridzuan
Salit, Mohd Sapuan
Zainudin, Edi Syams
Abd Aziz, Nuraini
Arep @ Ariff, Hambali
Stiffness prediction of hybrid kenaf/glass fiber reinforced polypropylene composites using rule of mixtures (ROM) and rule of hybrid mixtures (RoHM)
description In this report, rules of mixture (ROM) and rule of hybrid mixtures (RoHM) were utilized to predict the mechanical properties of kenaf/glass fiber reinforced polypropylene short random oriented hybrid composites material. Three hybrid composition were studied with total fiber contents 30 vol%, 40 vol% and 50 vol% and the relative glass fiber contents are varied from 0 to 100 vol%. Analytical results using the both micromechanical models show that the hybridization between kenaf with glass fiber in short fiber form using polypropylene matrix give positive hybrid effect to the overall hybrid stiffness at minimum relative glass fiber volume fraction of 87.5% compared to the kenaf/polypropylene composites single system for all total fiber volume content cases. Similarly, it was also observed that the stiffness of the hybrid short and randomly oriented composites increases as the overall fiber volume contents increases. The overall results have provided useful insight of the hybridization effects to the stiffness of the final hybrid composites especially for the application in product development process using similar hybrid short randomly oriented kenaf/glass fiber reinforced polypropylene composite materials.
format Article
author Mansor, Muhd Ridzuan
Salit, Mohd Sapuan
Zainudin, Edi Syams
Abd Aziz, Nuraini
Arep @ Ariff, Hambali
author_facet Mansor, Muhd Ridzuan
Salit, Mohd Sapuan
Zainudin, Edi Syams
Abd Aziz, Nuraini
Arep @ Ariff, Hambali
author_sort Mansor, Muhd Ridzuan
title Stiffness prediction of hybrid kenaf/glass fiber reinforced polypropylene composites using rule of mixtures (ROM) and rule of hybrid mixtures (RoHM)
title_short Stiffness prediction of hybrid kenaf/glass fiber reinforced polypropylene composites using rule of mixtures (ROM) and rule of hybrid mixtures (RoHM)
title_full Stiffness prediction of hybrid kenaf/glass fiber reinforced polypropylene composites using rule of mixtures (ROM) and rule of hybrid mixtures (RoHM)
title_fullStr Stiffness prediction of hybrid kenaf/glass fiber reinforced polypropylene composites using rule of mixtures (ROM) and rule of hybrid mixtures (RoHM)
title_full_unstemmed Stiffness prediction of hybrid kenaf/glass fiber reinforced polypropylene composites using rule of mixtures (ROM) and rule of hybrid mixtures (RoHM)
title_sort stiffness prediction of hybrid kenaf/glass fiber reinforced polypropylene composites using rule of mixtures (rom) and rule of hybrid mixtures (rohm)
publisher MDPPL
publishDate 2013
url http://eprints.utem.edu.my/id/eprint/12226/1/POLY_NO_3_-_CH-7.pdf
http://eprints.utem.edu.my/id/eprint/12226/
http://www.mdppl.com
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