Shear-Induced Crystallization of Poly(lactic acid)/Graphene Nanocomposite

The method by which a polymer structure develops during polymer processing has important effects on the quality of final product. Among the structural development methods, crystallization process is of the highest interest. In this study, isothermal crystallization behavior of poly(lactic acid) (PLA...

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Main Authors: Mojdeh Reghat, Parvin Ehsani Namin, Hamed Azizi, Ismail Ghasemi, Mohammad Karabi
Format: Article
Language:fas
Published: Iran Polymer and Petrochemical Institute 2016-11-01
Series:علوم و تکنولوژی پلیمر
Subjects:
Online Access:http://jips.ippi.ac.ir/article_1430_98444a1d423e08aa16d1ab1226598aee.pdf
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spelling doaj-7a8d406ab0b0419a9d499efefd6b5d6d2020-11-25T02:23:55ZfasIran Polymer and Petrochemical Instituteعلوم و تکنولوژی پلیمر1016-32552008-08832016-11-0129541542710.22063/jipst.2016.14301430Shear-Induced Crystallization of Poly(lactic acid)/Graphene NanocompositeMojdeh Reghat0Parvin Ehsani Namin1Hamed Azizi2Ismail Ghasemi3Mohammad Karabi4Department of Plastics, Faculty of Processing, Iran Polymer and Petrochemical Institute, P.O. Box: 14975-112, Tehran, IranDepartment of Chemistry, Tehran North Unit, Islamic Azad University, P.O. Box: 19585-936, Tehran, IranDepartment of Plastics, Faculty of Processing, Iran Polymer and Petrochemical Institute, P.O. Box: 14975-112, Tehran, IranDepartment of Plastics, Faculty of Processing, Iran Polymer and Petrochemical Institute, P.O. Box: 14975-112, Tehran, IranDepartment of Plastics, Faculty of Processing, Iran Polymer and Petrochemical Institute, P.O. Box: 14975-112, Tehran, IranThe method by which a polymer structure develops during polymer processing has important effects on the quality of final product. Among the structural development methods, crystallization process is of the highest interest. In this study, isothermal crystallization behavior of poly(lactic acid) (PLA) and its nanocomposites with graphene was investigated under quiescent and shear conditions. Neat PLA and its noncomposites containing 0.5, 1, 2 and 3 wt% graphene were prepared via melt mixing method in an internal mixer. Structural analysis and crystallization behavior of the nanocomposites before and after applying shear stress were investigated by differential scanning calorimetric (DSC) analyses. The effect of shear rate, shear time and concentration of nano-graphene on the progress of crystallization process was studied at 135°C using rheometic method. The preshear rates of 0.1, 0.3, 0.5, 1.1 and 1.8 s-1 were applied at temperature of 200°C for 60 s. The increase of storage modulus indicated to the formation of crystalline structure. Results showed that by increasing nano-graphene content the storage modulus was rapidly reached its ultimate value and the induction time of crystallization was decreased. The crystallization process was enhanced by applying preshear stress, particularly in high concentration of nano-graphene platelets. Increasing the shear time to 300 and 600 s, the induction time was decreased. DSC analysis results showed that degree of crystallization increased after applying preshear stress.http://jips.ippi.ac.ir/article_1430_98444a1d423e08aa16d1ab1226598aee.pdfpoly(lactic acid)Graphenenanocompositeshear-induced crystallizationrheology
collection DOAJ
language fas
format Article
sources DOAJ
author Mojdeh Reghat
Parvin Ehsani Namin
Hamed Azizi
Ismail Ghasemi
Mohammad Karabi
spellingShingle Mojdeh Reghat
Parvin Ehsani Namin
Hamed Azizi
Ismail Ghasemi
Mohammad Karabi
Shear-Induced Crystallization of Poly(lactic acid)/Graphene Nanocomposite
علوم و تکنولوژی پلیمر
poly(lactic acid)
Graphene
nanocomposite
shear-induced crystallization
rheology
author_facet Mojdeh Reghat
Parvin Ehsani Namin
Hamed Azizi
Ismail Ghasemi
Mohammad Karabi
author_sort Mojdeh Reghat
title Shear-Induced Crystallization of Poly(lactic acid)/Graphene Nanocomposite
title_short Shear-Induced Crystallization of Poly(lactic acid)/Graphene Nanocomposite
title_full Shear-Induced Crystallization of Poly(lactic acid)/Graphene Nanocomposite
title_fullStr Shear-Induced Crystallization of Poly(lactic acid)/Graphene Nanocomposite
title_full_unstemmed Shear-Induced Crystallization of Poly(lactic acid)/Graphene Nanocomposite
title_sort shear-induced crystallization of poly(lactic acid)/graphene nanocomposite
publisher Iran Polymer and Petrochemical Institute
series علوم و تکنولوژی پلیمر
issn 1016-3255
2008-0883
publishDate 2016-11-01
description The method by which a polymer structure develops during polymer processing has important effects on the quality of final product. Among the structural development methods, crystallization process is of the highest interest. In this study, isothermal crystallization behavior of poly(lactic acid) (PLA) and its nanocomposites with graphene was investigated under quiescent and shear conditions. Neat PLA and its noncomposites containing 0.5, 1, 2 and 3 wt% graphene were prepared via melt mixing method in an internal mixer. Structural analysis and crystallization behavior of the nanocomposites before and after applying shear stress were investigated by differential scanning calorimetric (DSC) analyses. The effect of shear rate, shear time and concentration of nano-graphene on the progress of crystallization process was studied at 135°C using rheometic method. The preshear rates of 0.1, 0.3, 0.5, 1.1 and 1.8 s-1 were applied at temperature of 200°C for 60 s. The increase of storage modulus indicated to the formation of crystalline structure. Results showed that by increasing nano-graphene content the storage modulus was rapidly reached its ultimate value and the induction time of crystallization was decreased. The crystallization process was enhanced by applying preshear stress, particularly in high concentration of nano-graphene platelets. Increasing the shear time to 300 and 600 s, the induction time was decreased. DSC analysis results showed that degree of crystallization increased after applying preshear stress.
topic poly(lactic acid)
Graphene
nanocomposite
shear-induced crystallization
rheology
url http://jips.ippi.ac.ir/article_1430_98444a1d423e08aa16d1ab1226598aee.pdf
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