Investigation on mechanical and thermal properties of giant milkweed (Calotropis persica) fibers -plastics composites

The suitability of using Iranian grown giant milkweed fibers (GFs) as a new raw material for thermoplastic composites was investigated. The polypropylene (PP) was used as the matrix polymer and the maleated polypropylene, Epolene G- 3003TM, was used as coupling agent. In the sample preparation, four...

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Main Authors: Amir Nourbakhsh, Abolfazl Kargarfard, Fardad Golbabaei, Moghgan Kouhpayehzadeh
Format: Article
Language:fas
Published: Regional Information Center for Science and Technology (RICeST) 2014-03-01
Series:تحقیقات علوم چوب و کاغذ ایران
Subjects:
Online Access:http://ijwpr.areeo.ac.ir/article_4936_c6c21f4b12543c78db900293085ee3a6.pdf
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spelling doaj-2f1fef0a76a44739baa4aedf0ea963592020-11-24T22:01:15ZfasRegional Information Center for Science and Technology (RICeST) تحقیقات علوم چوب و کاغذ ایران1735-09132383-112X2014-03-012919410510.22092/ijwpr.2014.49364936Investigation on mechanical and thermal properties of giant milkweed (Calotropis persica) fibers -plastics compositesAmir Nourbakhsh0Abolfazl Kargarfard1Fardad Golbabaei2Moghgan Kouhpayehzadeh3عضو هیات علمی موسسه تحقیقات جنگلها و مراتع کشورعضو هیات علمی موسسه تحقیقات جنگلها و مراتع کشورعضو هیات علمی موسسه تحقیقات جنگلها و مراتع کشورScientific member of Islamic Azad University (pishva -Varamin) branchThe suitability of using Iranian grown giant milkweed fibers (GFs) as a new raw material for thermoplastic composites was investigated. The polypropylene (PP) was used as the matrix polymer and the maleated polypropylene, Epolene G- 3003TM, was used as coupling agent. In the sample preparation, four levels of fiber loading (10, 20, 30, and 40 wt%) and three levels of coupling agent content (0, 1.5, and 3 wt%) were applied and the mechanical properties of composites are analyzed. GF/PP composites were prepared by a melt compounding process in a twin-screw extruder followed by injection molding. The results showed that with the addition of coupling agent, both tensile and flexural properties improved considerably compared with control specimens (without coupling agent). As expected, notched Izod impact strength was significantly decreased as the mixing ratio of fiber increased. The results of the present study revealed that composites with good strength properties could be successfully developed using GF as the reinforcing agent. The Heat Deflection Temperature (HDT) is determined following the test procedure outlined in ASTM. High HDT in this study showed that coupling agent at3 wt% and fiber loadiny either 30 or 40 wt% were superior compared with other treatments.http://ijwpr.areeo.ac.ir/article_4936_c6c21f4b12543c78db900293085ee3a6.pdfGiant milkweedmaleated polypropyleneheat deflection temperaturetwin-screw extruderfiber plastics composites
collection DOAJ
language fas
format Article
sources DOAJ
author Amir Nourbakhsh
Abolfazl Kargarfard
Fardad Golbabaei
Moghgan Kouhpayehzadeh
spellingShingle Amir Nourbakhsh
Abolfazl Kargarfard
Fardad Golbabaei
Moghgan Kouhpayehzadeh
Investigation on mechanical and thermal properties of giant milkweed (Calotropis persica) fibers -plastics composites
تحقیقات علوم چوب و کاغذ ایران
Giant milkweed
maleated polypropylene
heat deflection temperature
twin-screw extruder
fiber plastics composites
author_facet Amir Nourbakhsh
Abolfazl Kargarfard
Fardad Golbabaei
Moghgan Kouhpayehzadeh
author_sort Amir Nourbakhsh
title Investigation on mechanical and thermal properties of giant milkweed (Calotropis persica) fibers -plastics composites
title_short Investigation on mechanical and thermal properties of giant milkweed (Calotropis persica) fibers -plastics composites
title_full Investigation on mechanical and thermal properties of giant milkweed (Calotropis persica) fibers -plastics composites
title_fullStr Investigation on mechanical and thermal properties of giant milkweed (Calotropis persica) fibers -plastics composites
title_full_unstemmed Investigation on mechanical and thermal properties of giant milkweed (Calotropis persica) fibers -plastics composites
title_sort investigation on mechanical and thermal properties of giant milkweed (calotropis persica) fibers -plastics composites
publisher Regional Information Center for Science and Technology (RICeST)
series تحقیقات علوم چوب و کاغذ ایران
issn 1735-0913
2383-112X
publishDate 2014-03-01
description The suitability of using Iranian grown giant milkweed fibers (GFs) as a new raw material for thermoplastic composites was investigated. The polypropylene (PP) was used as the matrix polymer and the maleated polypropylene, Epolene G- 3003TM, was used as coupling agent. In the sample preparation, four levels of fiber loading (10, 20, 30, and 40 wt%) and three levels of coupling agent content (0, 1.5, and 3 wt%) were applied and the mechanical properties of composites are analyzed. GF/PP composites were prepared by a melt compounding process in a twin-screw extruder followed by injection molding. The results showed that with the addition of coupling agent, both tensile and flexural properties improved considerably compared with control specimens (without coupling agent). As expected, notched Izod impact strength was significantly decreased as the mixing ratio of fiber increased. The results of the present study revealed that composites with good strength properties could be successfully developed using GF as the reinforcing agent. The Heat Deflection Temperature (HDT) is determined following the test procedure outlined in ASTM. High HDT in this study showed that coupling agent at3 wt% and fiber loadiny either 30 or 40 wt% were superior compared with other treatments.
topic Giant milkweed
maleated polypropylene
heat deflection temperature
twin-screw extruder
fiber plastics composites
url http://ijwpr.areeo.ac.ir/article_4936_c6c21f4b12543c78db900293085ee3a6.pdf
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