The effect of fiber milling on mechanical properties of polypropylene reinforced oil palm mesocarp fiber biocomposite

Oil palm mesocarp fiber (OPMF) is biomass residue abundantly available at palm oil mill. Being a lignocellulose, it can be used as reinforce material in biocomposite. In this study, the effect of OPMF milling on the mechanical properties of polypropylene (PP)/OPMF biocomposite was studied. Two types...

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Main Authors: Ahamad Nordin, Noor Ida Amalina, Ariffin, Hidayah, Hassan, Mohd Ali, Andou, Yoshito, Shirai, Yoshihito, Nishida, Haruo
Format: Conference or Workshop Item
Language:English
Published: Faculty of Engineering, Universiti Putra Malaysia 2012
Online Access:http://psasir.upm.edu.my/id/eprint/50677/
http://psasir.upm.edu.my/id/eprint/50677/1/_TechnicalPapers_CAFEi2012_153.pdf
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author Ahamad Nordin, Noor Ida Amalina
Ariffin, Hidayah
Hassan, Mohd Ali
Andou, Yoshito
Shirai, Yoshihito
Nishida, Haruo
author_facet Ahamad Nordin, Noor Ida Amalina
Ariffin, Hidayah
Hassan, Mohd Ali
Andou, Yoshito
Shirai, Yoshihito
Nishida, Haruo
author_sort Ahamad Nordin, Noor Ida Amalina
building UPM Institutional Repository
collection Online Access
description Oil palm mesocarp fiber (OPMF) is biomass residue abundantly available at palm oil mill. Being a lignocellulose, it can be used as reinforce material in biocomposite. In this study, the effect of OPMF milling on the mechanical properties of polypropylene (PP)/OPMF biocomposite was studied. Two types of mills were used, i.e. Wiley mill (WM) and disc mill (DM). Ground OPMF from each milling process was examined for its surface morphology, particle size distribution and aspect ratio by microscopic analyses. Ground OPMF was later sieved and fiber with particle size less than 150 μm was separated and mixed with PP using Thermo Haake mixer at 20 and 50 % (w/w) of fiber loading. Results showed that PP/DM-OPMF biocomposite had higher tensile strength compared to PP/WM-OPMF, with almost two-fold. From the SEM and light microscopic analysis, it can be observed that DM-OPMF had smaller diameter of fiber with almost uniform size of particles. Small diameter and uniform size of fiber may improve stress transfer between the fiber and polymer matrix, improve surface contact between polymer matrix and fiber and cause the well-dispersion of filler throughout the polymer. This explains the better tensile strength of PP/DM-OPMF compared to PP/WM-OPMF biocomposite. Overall, it can be concluded that disc milling could serve as a simple and effective grinding method which is able to improve the mechanical properties of biocomposite.
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format Conference or Workshop Item
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institution Universiti Putra Malaysia
institution_category Local University
language English
last_indexed 2025-11-15T10:25:07Z
publishDate 2012
publisher Faculty of Engineering, Universiti Putra Malaysia
recordtype eprints
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spelling upm-506772017-03-02T06:18:32Z http://psasir.upm.edu.my/id/eprint/50677/ The effect of fiber milling on mechanical properties of polypropylene reinforced oil palm mesocarp fiber biocomposite Ahamad Nordin, Noor Ida Amalina Ariffin, Hidayah Hassan, Mohd Ali Andou, Yoshito Shirai, Yoshihito Nishida, Haruo Oil palm mesocarp fiber (OPMF) is biomass residue abundantly available at palm oil mill. Being a lignocellulose, it can be used as reinforce material in biocomposite. In this study, the effect of OPMF milling on the mechanical properties of polypropylene (PP)/OPMF biocomposite was studied. Two types of mills were used, i.e. Wiley mill (WM) and disc mill (DM). Ground OPMF from each milling process was examined for its surface morphology, particle size distribution and aspect ratio by microscopic analyses. Ground OPMF was later sieved and fiber with particle size less than 150 μm was separated and mixed with PP using Thermo Haake mixer at 20 and 50 % (w/w) of fiber loading. Results showed that PP/DM-OPMF biocomposite had higher tensile strength compared to PP/WM-OPMF, with almost two-fold. From the SEM and light microscopic analysis, it can be observed that DM-OPMF had smaller diameter of fiber with almost uniform size of particles. Small diameter and uniform size of fiber may improve stress transfer between the fiber and polymer matrix, improve surface contact between polymer matrix and fiber and cause the well-dispersion of filler throughout the polymer. This explains the better tensile strength of PP/DM-OPMF compared to PP/WM-OPMF biocomposite. Overall, it can be concluded that disc milling could serve as a simple and effective grinding method which is able to improve the mechanical properties of biocomposite. Faculty of Engineering, Universiti Putra Malaysia 2012 Conference or Workshop Item PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/50677/1/_TechnicalPapers_CAFEi2012_153.pdf Ahamad Nordin, Noor Ida Amalina and Ariffin, Hidayah and Hassan, Mohd Ali and Andou, Yoshito and Shirai, Yoshihito and Nishida, Haruo (2012) The effect of fiber milling on mechanical properties of polypropylene reinforced oil palm mesocarp fiber biocomposite. In: International Conference on Agricultural and Food Engineering for Life (Cafei2012), 26-28 Nov. 2012, Palm Garden Hotel, Putrajaya. (pp. 456-463). http://cafei.upm.edu.my/download.php?filename=/TechnicalPapers/CAFEi2012_153.pdf
spellingShingle Ahamad Nordin, Noor Ida Amalina
Ariffin, Hidayah
Hassan, Mohd Ali
Andou, Yoshito
Shirai, Yoshihito
Nishida, Haruo
The effect of fiber milling on mechanical properties of polypropylene reinforced oil palm mesocarp fiber biocomposite
title The effect of fiber milling on mechanical properties of polypropylene reinforced oil palm mesocarp fiber biocomposite
title_full The effect of fiber milling on mechanical properties of polypropylene reinforced oil palm mesocarp fiber biocomposite
title_fullStr The effect of fiber milling on mechanical properties of polypropylene reinforced oil palm mesocarp fiber biocomposite
title_full_unstemmed The effect of fiber milling on mechanical properties of polypropylene reinforced oil palm mesocarp fiber biocomposite
title_short The effect of fiber milling on mechanical properties of polypropylene reinforced oil palm mesocarp fiber biocomposite
title_sort effect of fiber milling on mechanical properties of polypropylene reinforced oil palm mesocarp fiber biocomposite
url http://psasir.upm.edu.my/id/eprint/50677/
http://psasir.upm.edu.my/id/eprint/50677/
http://psasir.upm.edu.my/id/eprint/50677/1/_TechnicalPapers_CAFEi2012_153.pdf