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Exfoliation targeted toughness enhancement in polypropylene‐blend‐ montmorillonite nanocomposites
Authors:Cuneyt Bagcioglu  Esra Altuntas  Sinan ?en  M Bora ?slier  Osman G Ersoy  Nuri Ersoy  Turgut Nugay  Nihan Nugay
Affiliation:1. Department of Chemistry and Polymer Research Center, Bogazici University, 34342 Bebek, ?stanbul, Turkey;2. Advanced Technologies Research and Development Center, Bogazici University, 34342 Bebek, ?stanbul, Turkey;3. Department of Mechanical Engineering, Bogazici University, 34342 Bebek, ?stanbul, Turkey;4. Research and Development Center, ARCEL?K, 34950 ?ay?rova, ?stanbul, Turkey
Abstract:BACKGROUND: Both exfoliated and toughened polypropylene‐blend‐montmorillonite (PP/MMT) nanocomposites were prepared by melt extrusion in a twin‐screw extruder. Special attention was paid to the enhancement of clay exfoliation and toughness properties of PP by the introduction of a rubber in the form of compatibilizer toughener: ethylene propylene diene‐based rubber grafted with maleic anhydride (EPDM‐g‐MA). RESULTS: The resultant nanocomposites were characterized using X‐ray diffraction, atomic force microscopy, scanning electron microscopy, thermogravimetric analysis, dynamic mechanical analysis and Izod impact testing methods. It was found that the desired exfoliated nanocomposite structure could be achieved for all compatibilizer to organoclay ratios as well as clay loadings. Moreover, a mechanism involving a decreased size of rubber domains surrounded with nanolayers as well as exfoliation of the nanolayers in the PP matrix was found to be responsible for a dramatic increase in impact resistance of the nanocomposites. CONCLUSION: Improved thermal and dynamic mechanical properties of the resultant nanocomposites promise to open the way for highly toughened super PPs via nanocomposite assemblies even with very low degrees of loading. Copyright © 2008 Society of Chemical Industry
Keywords:clay/organoclay  montmorillonite  EPDM‐graft‐MA  impact resistance  nanocomposites  polypropylene  toughness
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