Epoxidized natural rubber-toughened polypropylene/organically modified montmorillonite nanocomposites

The objective of this study is to toughen organically modified montmorillonite (OMMT)- filled polypropylene (PP) nanocomposites with epoxidized natural rubber (ENR). PP, ENR (10–20 wt%), OMMT (6 wt%) and maleated PP (PP-g-MA; 10 wt%) were melt blended using counterrotating twin extruder, followed by...

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Main Authors: Balakrishnan, Harintharavimal, Attaran, Seyed Ahmad, Imran, Muhammad, Hassan, Azman, Wahit, Mat Uzir
Format: Article
Published: Sage Journals 2014
Subjects:
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author Balakrishnan, Harintharavimal
Attaran, Seyed Ahmad
Imran, Muhammad
Hassan, Azman
Wahit, Mat Uzir
author_facet Balakrishnan, Harintharavimal
Attaran, Seyed Ahmad
Imran, Muhammad
Hassan, Azman
Wahit, Mat Uzir
author_sort Balakrishnan, Harintharavimal
collection ePrints
description The objective of this study is to toughen organically modified montmorillonite (OMMT)- filled polypropylene (PP) nanocomposites with epoxidized natural rubber (ENR). PP, ENR (10–20 wt%), OMMT (6 wt%) and maleated PP (PP-g-MA; 10 wt%) were melt blended using counterrotating twin extruder, followed by injection molding to prepare test samples. X-ray diffraction results revealed that the OMMT platelets in PP/OMMT nanocomposites were intercalated and the incorporation of ENR into the nanocomposites further increased the d-spacing of OMMT layers. The Fourier transform infrared spectra showed that the maleic anhydride group in PP-g-MA reacted in situ with the epoxy groups of ENR, which demonstrates the occurrence of grafting reaction. With slight decrease in stiffness and strength, the addition of 20 wt% ENR increased the impact strength of PP/ENR/OMMT nanocomposites by 521% compared to PP/OMMT nanocomposites. Scanning electron microscopy images revealed that the ENR particle size increased with increasing ENR contents in PP/ENR/OMMT nanocomposites. Differential scanning calorimetry results revealed that the presence of ENR and OMMT had slightly increased the crystallization temperature as well as the degree of crystallinity of PP. Thermogravimetric analysis showed that the blending of ENR decreased the thermal stability of PP/OMMT nanocomposites.
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spelling utm.eprints-527282018-06-30T00:24:19Z http://eprints.utm.my/52728/ Epoxidized natural rubber-toughened polypropylene/organically modified montmorillonite nanocomposites Balakrishnan, Harintharavimal Attaran, Seyed Ahmad Imran, Muhammad Hassan, Azman Wahit, Mat Uzir TP Chemical technology The objective of this study is to toughen organically modified montmorillonite (OMMT)- filled polypropylene (PP) nanocomposites with epoxidized natural rubber (ENR). PP, ENR (10–20 wt%), OMMT (6 wt%) and maleated PP (PP-g-MA; 10 wt%) were melt blended using counterrotating twin extruder, followed by injection molding to prepare test samples. X-ray diffraction results revealed that the OMMT platelets in PP/OMMT nanocomposites were intercalated and the incorporation of ENR into the nanocomposites further increased the d-spacing of OMMT layers. The Fourier transform infrared spectra showed that the maleic anhydride group in PP-g-MA reacted in situ with the epoxy groups of ENR, which demonstrates the occurrence of grafting reaction. With slight decrease in stiffness and strength, the addition of 20 wt% ENR increased the impact strength of PP/ENR/OMMT nanocomposites by 521% compared to PP/OMMT nanocomposites. Scanning electron microscopy images revealed that the ENR particle size increased with increasing ENR contents in PP/ENR/OMMT nanocomposites. Differential scanning calorimetry results revealed that the presence of ENR and OMMT had slightly increased the crystallization temperature as well as the degree of crystallinity of PP. Thermogravimetric analysis showed that the blending of ENR decreased the thermal stability of PP/OMMT nanocomposites. Sage Journals 2014 Article PeerReviewed Balakrishnan, Harintharavimal and Attaran, Seyed Ahmad and Imran, Muhammad and Hassan, Azman and Wahit, Mat Uzir (2014) Epoxidized natural rubber-toughened polypropylene/organically modified montmorillonite nanocomposites. Journal of Thermoplastic Composite Materials, 27 (2). pp. 233-250. ISSN 0892-7057 http://dx.doi.org/10.1177/0892705712461517 DOI: 10.1177/0892705712461517
spellingShingle TP Chemical technology
Balakrishnan, Harintharavimal
Attaran, Seyed Ahmad
Imran, Muhammad
Hassan, Azman
Wahit, Mat Uzir
Epoxidized natural rubber-toughened polypropylene/organically modified montmorillonite nanocomposites
title Epoxidized natural rubber-toughened polypropylene/organically modified montmorillonite nanocomposites
title_full Epoxidized natural rubber-toughened polypropylene/organically modified montmorillonite nanocomposites
title_fullStr Epoxidized natural rubber-toughened polypropylene/organically modified montmorillonite nanocomposites
title_full_unstemmed Epoxidized natural rubber-toughened polypropylene/organically modified montmorillonite nanocomposites
title_short Epoxidized natural rubber-toughened polypropylene/organically modified montmorillonite nanocomposites
title_sort epoxidized natural rubber toughened polypropylene organically modified montmorillonite nanocomposites
topic TP Chemical technology
work_keys_str_mv AT balakrishnanharintharavimal epoxidizednaturalrubbertoughenedpolypropyleneorganicallymodifiedmontmorillonitenanocomposites
AT attaranseyedahmad epoxidizednaturalrubbertoughenedpolypropyleneorganicallymodifiedmontmorillonitenanocomposites
AT imranmuhammad epoxidizednaturalrubbertoughenedpolypropyleneorganicallymodifiedmontmorillonitenanocomposites
AT hassanazman epoxidizednaturalrubbertoughenedpolypropyleneorganicallymodifiedmontmorillonitenanocomposites
AT wahitmatuzir epoxidizednaturalrubbertoughenedpolypropyleneorganicallymodifiedmontmorillonitenanocomposites