Studies On Mechanical and Morphological Proprties Of Bagasse - Polypropylene Composite

In this research, the possibility of using lignocellulosic fibers with polypropylene was studied. Three weight percentages of bagasse flour namely 40, 55 and 70 percent were chosen. MAPP was used as coupling agent at two weight percentages namely 4 and 6 percent. Bending strength was measured applyi...

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Autores principales: Behnaz Dadkhahi tehrani, Asghar Omidvar, Ali akbar Ramtin
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Lenguaje:FA
Publicado: Regional Information Center for Science and Technology (RICeST) 2008
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Acceso en línea:https://doaj.org/article/f1a145085d60484eb119bbdca25fe896
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spelling oai:doaj.org-article:f1a145085d60484eb119bbdca25fe8962021-12-02T04:13:56ZStudies On Mechanical and Morphological Proprties Of Bagasse - Polypropylene Composite1735-09132383-112X10.22092/ijwpr.2008.117415https://doaj.org/article/f1a145085d60484eb119bbdca25fe8962008-09-01T00:00:00Zhttp://ijwpr.areeo.ac.ir/article_117415_5a249221a706446baaa4df436c24ee23.pdfhttps://doaj.org/toc/1735-0913https://doaj.org/toc/2383-112XIn this research, the possibility of using lignocellulosic fibers with polypropylene was studied. Three weight percentages of bagasse flour namely 40, 55 and 70 percent were chosen. MAPP was used as coupling agent at two weight percentages namely 4 and 6 percent. Bending strength was measured applying Instron 6025. Fracture surface was stadied using SEM to evaluate the interface between plastic and fiber. The results showed that with increasing bagasse, stress and work at yield point of bending was decreased and modulus of bending was increased. Also, increasing coupling agent resulted in improving stress, modulus and work at yield point of bending. SEM results showed that with increasing coupling agent, interface between plastic and bagasse fibers was improved.Behnaz Dadkhahi tehraniAsghar OmidvarAli akbar RamtinRegional Information Center for Science and Technology (RICeST)articleBagassePolypropyleneCompositeCoupling agentMECHANICAL PROPERTIESForestrySD1-669.5FAتحقیقات علوم چوب و کاغذ ایران, Vol 23, Iss 2, Pp 178-190 (2008)
institution DOAJ
collection DOAJ
language FA
topic Bagasse
Polypropylene
Composite
Coupling agent
MECHANICAL PROPERTIES
Forestry
SD1-669.5
spellingShingle Bagasse
Polypropylene
Composite
Coupling agent
MECHANICAL PROPERTIES
Forestry
SD1-669.5
Behnaz Dadkhahi tehrani
Asghar Omidvar
Ali akbar Ramtin
Studies On Mechanical and Morphological Proprties Of Bagasse - Polypropylene Composite
description In this research, the possibility of using lignocellulosic fibers with polypropylene was studied. Three weight percentages of bagasse flour namely 40, 55 and 70 percent were chosen. MAPP was used as coupling agent at two weight percentages namely 4 and 6 percent. Bending strength was measured applying Instron 6025. Fracture surface was stadied using SEM to evaluate the interface between plastic and fiber. The results showed that with increasing bagasse, stress and work at yield point of bending was decreased and modulus of bending was increased. Also, increasing coupling agent resulted in improving stress, modulus and work at yield point of bending. SEM results showed that with increasing coupling agent, interface between plastic and bagasse fibers was improved.
format article
author Behnaz Dadkhahi tehrani
Asghar Omidvar
Ali akbar Ramtin
author_facet Behnaz Dadkhahi tehrani
Asghar Omidvar
Ali akbar Ramtin
author_sort Behnaz Dadkhahi tehrani
title Studies On Mechanical and Morphological Proprties Of Bagasse - Polypropylene Composite
title_short Studies On Mechanical and Morphological Proprties Of Bagasse - Polypropylene Composite
title_full Studies On Mechanical and Morphological Proprties Of Bagasse - Polypropylene Composite
title_fullStr Studies On Mechanical and Morphological Proprties Of Bagasse - Polypropylene Composite
title_full_unstemmed Studies On Mechanical and Morphological Proprties Of Bagasse - Polypropylene Composite
title_sort studies on mechanical and morphological proprties of bagasse - polypropylene composite
publisher Regional Information Center for Science and Technology (RICeST)
publishDate 2008
url https://doaj.org/article/f1a145085d60484eb119bbdca25fe896
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AT asgharomidvar studiesonmechanicalandmorphologicalproprtiesofbagassepolypropylenecomposite
AT aliakbarramtin studiesonmechanicalandmorphologicalproprtiesofbagassepolypropylenecomposite
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