Optimization of process variables on flexural properties of epoxy/organo-montmorillonite nanocomposite by response surface methodology

This study attempted to investigate the preparation and optimization of the flexural properties for epoxy/organomontmorillonite (OMMT) nanocomposites. In-situ polymerization method was used to prepare epoxy/OMMT nanocomposites. The diglycidyl ether bisphenol A (DGEBA) and curing agent were mixed fir...

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Format: Article
Language:English
Published: Budapest University of Technology 2008-01-01
Series:eXPRESS Polymer Letters
Subjects:
Online Access:http://www.expresspolymlett.com/letolt.php?file=EPL-0000448&mi=cd
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spelling doaj-193c1355676d46faaddca72638c035c12020-11-24T21:40:28ZengBudapest University of Technology eXPRESS Polymer Letters1788-618X2008-01-012121110.3144/expresspolymlett.2008.2Optimization of process variables on flexural properties of epoxy/organo-montmorillonite nanocomposite by response surface methodology This study attempted to investigate the preparation and optimization of the flexural properties for epoxy/organomontmorillonite (OMMT) nanocomposites. In-situ polymerization method was used to prepare epoxy/OMMT nanocomposites. The diglycidyl ether bisphenol A (DGEBA) and curing agent were mixed first, followed by the addition of OMMT. In this study, computer aided statistical methods of experimental design (Response Surface Methodology, RSM) was used to investigate the process variables on the flexural properties of epoxy/4wt% OMMT nanocomposites. Speed of mechanical stirrer, post-curing time and post-curing temperature were chosen as process variables in the experimental design. Results showed that the speed of mechanical stirrer, post-curing time and post-curing temperature were able to influence the flexural modulus and flexural yield stress of epoxy/4 wt% OMMT nanocomposites. The results of optimization showed that the design of experiment (DOE) has six combination of operating variables which have been obtained in order to attain the greatest overall desirability. http://www.expresspolymlett.com/letolt.php?file=EPL-0000448&mi=cdPolymer compositesNanocompositesMaterials testingResponse Surface MethodologyDesign of Experiment
collection DOAJ
language English
format Article
sources DOAJ
title Optimization of process variables on flexural properties of epoxy/organo-montmorillonite nanocomposite by response surface methodology
spellingShingle Optimization of process variables on flexural properties of epoxy/organo-montmorillonite nanocomposite by response surface methodology
eXPRESS Polymer Letters
Polymer composites
Nanocomposites
Materials testing
Response Surface Methodology
Design of Experiment
title_short Optimization of process variables on flexural properties of epoxy/organo-montmorillonite nanocomposite by response surface methodology
title_full Optimization of process variables on flexural properties of epoxy/organo-montmorillonite nanocomposite by response surface methodology
title_fullStr Optimization of process variables on flexural properties of epoxy/organo-montmorillonite nanocomposite by response surface methodology
title_full_unstemmed Optimization of process variables on flexural properties of epoxy/organo-montmorillonite nanocomposite by response surface methodology
title_sort optimization of process variables on flexural properties of epoxy/organo-montmorillonite nanocomposite by response surface methodology
publisher Budapest University of Technology
series eXPRESS Polymer Letters
issn 1788-618X
publishDate 2008-01-01
description This study attempted to investigate the preparation and optimization of the flexural properties for epoxy/organomontmorillonite (OMMT) nanocomposites. In-situ polymerization method was used to prepare epoxy/OMMT nanocomposites. The diglycidyl ether bisphenol A (DGEBA) and curing agent were mixed first, followed by the addition of OMMT. In this study, computer aided statistical methods of experimental design (Response Surface Methodology, RSM) was used to investigate the process variables on the flexural properties of epoxy/4wt% OMMT nanocomposites. Speed of mechanical stirrer, post-curing time and post-curing temperature were chosen as process variables in the experimental design. Results showed that the speed of mechanical stirrer, post-curing time and post-curing temperature were able to influence the flexural modulus and flexural yield stress of epoxy/4 wt% OMMT nanocomposites. The results of optimization showed that the design of experiment (DOE) has six combination of operating variables which have been obtained in order to attain the greatest overall desirability.
topic Polymer composites
Nanocomposites
Materials testing
Response Surface Methodology
Design of Experiment
url http://www.expresspolymlett.com/letolt.php?file=EPL-0000448&mi=cd
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