Investigating the Effect of Cotton Stalks Bark on Physical and Mechanical Properties of Cotton Stalk Flour- Polypropylene Composite

This study seeks to investigate the possibility of producing polypropylene composite- cotton stalk flour with various percentages of cotton stalk flour. Determining the best treatment in terms of physical and mechanical properties and exploring the effect of using cotton stalks in the production of...

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Main Authors: mahdi abasyan, asghar omidvar, mahdi mashkour, zinat farhadi
Format: Article
Language:fas
Published: Regional Information Center for Science and Technology (RICeST) 2015-03-01
Series:تحقیقات علوم چوب و کاغذ ایران
Subjects:
Online Access:http://ijwpr.areeo.ac.ir/article_10620_164ce92afadd1a5a0660ff6aa2a3a6f3.pdf
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spelling doaj-874ca3372a48470ca7b82dcd21fcc3662020-11-24T21:57:32ZfasRegional Information Center for Science and Technology (RICeST) تحقیقات علوم چوب و کاغذ ایران1735-09132383-112X2015-03-0130114416110.22092/ijwpr.2015.1062010620Investigating the Effect of Cotton Stalks Bark on Physical and Mechanical Properties of Cotton Stalk Flour- Polypropylene Compositemahdi abasyan0asghar omidvar1mahdi mashkour2zinat farhadi3M.Sc., Student of Wood industries, Faculty of Natural Resources, University of Gorgan, IranGorgan University of Agricultural Sciences and Natural ResourcesGorgan University of Agricultural Sciences and Natural ResourcesGorgan University of Agricultural Sciences and Natural ResourcesThis study seeks to investigate the possibility of producing polypropylene composite- cotton stalk flour with various percentages of cotton stalk flour. Determining the best treatment in terms of physical and mechanical properties and exploring the effect of using cotton stalks in the production of the composites were among the major objectives of this study. Six treatments consisting of Polypropylene, 40, 55 and 70 percent level of cotton stalks and two fillers (cotton stalks with and without barks) were developed. Maleic anhydride modified polypropylene (3% wt) was applied to each treatment. The mixing and granulation of the plastic and cotton silk flour was carried out using twin screw extruder model 4815. After preparing and shearing of samples, the mechanical properties of composites including tensile strength, rupture modulus and elasticity modulus were calculated in accordance with D-6109 and ASTM D-7031 standards. In addition, water absorption and thickness swelling tests were performed according to D-570-98 standard. The results showed that an increase in the flour of cotton stalk reduced the tensile strength and rupture modulus on the one hand, and increased the bending elasticity modulus on the other hand. In terms of the performance of the filler, there was a significant difference between values of rupture modulus and elasticity modulus at 95% level whereas this difference was not significant for tensile strength. Moreover, this difference was significant for values of water absorption and thickness swelling. The maximum tensile strength ​​belonged to T4 with 40 percent of cotton stalk bark fibers.http://ijwpr.areeo.ac.ir/article_10620_164ce92afadd1a5a0660ff6aa2a3a6f3.pdfCOMPOSITESPolypropyleneCOTTON STALKMECHANICAL PROPERTIESphysical propertiesbark
collection DOAJ
language fas
format Article
sources DOAJ
author mahdi abasyan
asghar omidvar
mahdi mashkour
zinat farhadi
spellingShingle mahdi abasyan
asghar omidvar
mahdi mashkour
zinat farhadi
Investigating the Effect of Cotton Stalks Bark on Physical and Mechanical Properties of Cotton Stalk Flour- Polypropylene Composite
تحقیقات علوم چوب و کاغذ ایران
COMPOSITES
Polypropylene
COTTON STALK
MECHANICAL PROPERTIES
physical properties
bark
author_facet mahdi abasyan
asghar omidvar
mahdi mashkour
zinat farhadi
author_sort mahdi abasyan
title Investigating the Effect of Cotton Stalks Bark on Physical and Mechanical Properties of Cotton Stalk Flour- Polypropylene Composite
title_short Investigating the Effect of Cotton Stalks Bark on Physical and Mechanical Properties of Cotton Stalk Flour- Polypropylene Composite
title_full Investigating the Effect of Cotton Stalks Bark on Physical and Mechanical Properties of Cotton Stalk Flour- Polypropylene Composite
title_fullStr Investigating the Effect of Cotton Stalks Bark on Physical and Mechanical Properties of Cotton Stalk Flour- Polypropylene Composite
title_full_unstemmed Investigating the Effect of Cotton Stalks Bark on Physical and Mechanical Properties of Cotton Stalk Flour- Polypropylene Composite
title_sort investigating the effect of cotton stalks bark on physical and mechanical properties of cotton stalk flour- polypropylene composite
publisher Regional Information Center for Science and Technology (RICeST)
series تحقیقات علوم چوب و کاغذ ایران
issn 1735-0913
2383-112X
publishDate 2015-03-01
description This study seeks to investigate the possibility of producing polypropylene composite- cotton stalk flour with various percentages of cotton stalk flour. Determining the best treatment in terms of physical and mechanical properties and exploring the effect of using cotton stalks in the production of the composites were among the major objectives of this study. Six treatments consisting of Polypropylene, 40, 55 and 70 percent level of cotton stalks and two fillers (cotton stalks with and without barks) were developed. Maleic anhydride modified polypropylene (3% wt) was applied to each treatment. The mixing and granulation of the plastic and cotton silk flour was carried out using twin screw extruder model 4815. After preparing and shearing of samples, the mechanical properties of composites including tensile strength, rupture modulus and elasticity modulus were calculated in accordance with D-6109 and ASTM D-7031 standards. In addition, water absorption and thickness swelling tests were performed according to D-570-98 standard. The results showed that an increase in the flour of cotton stalk reduced the tensile strength and rupture modulus on the one hand, and increased the bending elasticity modulus on the other hand. In terms of the performance of the filler, there was a significant difference between values of rupture modulus and elasticity modulus at 95% level whereas this difference was not significant for tensile strength. Moreover, this difference was significant for values of water absorption and thickness swelling. The maximum tensile strength ​​belonged to T4 with 40 percent of cotton stalk bark fibers.
topic COMPOSITES
Polypropylene
COTTON STALK
MECHANICAL PROPERTIES
physical properties
bark
url http://ijwpr.areeo.ac.ir/article_10620_164ce92afadd1a5a0660ff6aa2a3a6f3.pdf
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