Mechanical Performance of Montmorillonite Dispersed Jute Reinforced Composite

Surface treated jute accomplished by chemical treatments which enhanced the adhesion between polyester resin and modified surface within the composite. Baking time for 6 hours also reduced the moisture content and diminishes the hydrophilic properties of the corchorus olitorius jute fiber. Montmoril...

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Main Authors: Hasan Muhammad Hasibul, Mollik Md. Sazib
Format: Article
Language:English
Published: EDP Sciences 2015-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20153001007
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spelling doaj-ec9c438bbf634d8997cba6a475ef3de82021-03-02T09:39:26ZengEDP SciencesMATEC Web of Conferences2261-236X2015-01-01300100710.1051/matecconf/20153001007matecconf_icmset2015_01007Mechanical Performance of Montmorillonite Dispersed Jute Reinforced CompositeHasan Muhammad Hasibul0Mollik Md. Sazib1Department of Manufacturing & Materials Engineering, International Islamic University MalaysiaDepartment of Manufacturing & Materials Engineering, International Islamic University MalaysiaSurface treated jute accomplished by chemical treatments which enhanced the adhesion between polyester resin and modified surface within the composite. Baking time for 6 hours also reduced the moisture content and diminishes the hydrophilic properties of the corchorus olitorius jute fiber. Montmorillonite shell type nanoclay was dispersed 1%, 3% and 5% within the jute fiber polyester matrix to enhance the mechanical performance. Effect of temperature and high humidity were evaluated for this nanoclay filled composite through hydrothermal test for 15 days in the environmental chamber. Environmental degradation was not remarkable due to the exposure of the temperature 80°C and 95% RH for this time period. Ductile properties like yield strength (YS), % of elongation were calculated for two different stoke rate to understand the strain rate effect. 1% addition of nanoclay within the composite shows the better performance in terms of yield, flexural and impact strength while 5% dispersed of nanoclay does not have any beneficial effect within the composite due to the density and non-homogeneous mixture of the clay. Fracture morphology by SEM/ FESEM revealed voids, broken fibers and nano particles within the matrix.http://dx.doi.org/10.1051/matecconf/20153001007
collection DOAJ
language English
format Article
sources DOAJ
author Hasan Muhammad Hasibul
Mollik Md. Sazib
spellingShingle Hasan Muhammad Hasibul
Mollik Md. Sazib
Mechanical Performance of Montmorillonite Dispersed Jute Reinforced Composite
MATEC Web of Conferences
author_facet Hasan Muhammad Hasibul
Mollik Md. Sazib
author_sort Hasan Muhammad Hasibul
title Mechanical Performance of Montmorillonite Dispersed Jute Reinforced Composite
title_short Mechanical Performance of Montmorillonite Dispersed Jute Reinforced Composite
title_full Mechanical Performance of Montmorillonite Dispersed Jute Reinforced Composite
title_fullStr Mechanical Performance of Montmorillonite Dispersed Jute Reinforced Composite
title_full_unstemmed Mechanical Performance of Montmorillonite Dispersed Jute Reinforced Composite
title_sort mechanical performance of montmorillonite dispersed jute reinforced composite
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2015-01-01
description Surface treated jute accomplished by chemical treatments which enhanced the adhesion between polyester resin and modified surface within the composite. Baking time for 6 hours also reduced the moisture content and diminishes the hydrophilic properties of the corchorus olitorius jute fiber. Montmorillonite shell type nanoclay was dispersed 1%, 3% and 5% within the jute fiber polyester matrix to enhance the mechanical performance. Effect of temperature and high humidity were evaluated for this nanoclay filled composite through hydrothermal test for 15 days in the environmental chamber. Environmental degradation was not remarkable due to the exposure of the temperature 80°C and 95% RH for this time period. Ductile properties like yield strength (YS), % of elongation were calculated for two different stoke rate to understand the strain rate effect. 1% addition of nanoclay within the composite shows the better performance in terms of yield, flexural and impact strength while 5% dispersed of nanoclay does not have any beneficial effect within the composite due to the density and non-homogeneous mixture of the clay. Fracture morphology by SEM/ FESEM revealed voids, broken fibers and nano particles within the matrix.
url http://dx.doi.org/10.1051/matecconf/20153001007
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AT mollikmdsazib mechanicalperformanceofmontmorillonitedispersedjutereinforcedcomposite
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