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Nanocomposites of silica reinforced polypropylene: correlation between morphology and properties

Authors :
Bouaziz, Amira
Jaziri, Mohamed
Dalmas, Florent
Massardier, Valerie
Source :
Polymer Engineering and Science. September 1, 2014, Vol. 54 Issue 9, p2187, 10 p.
Publication Year :
2014

Abstract

Polypropylene/fumed hydrophilic silica nanocomposites were prepared via melt mixing method using a single-screw extruder. Comparative study with and without compatibilizing copolymer agent (maleic anhydride grafted polypropylene: PP-g-AM) was conducted. The obtained results were interpreted in terms of silica nanoparticle-silica nanoparticle and silica nanoparticle-polymer interactions. These results have shown that the addition of nanofillers improves the properties of the nanocomposites. From transmission electron microscopy, it was found that agglomerations of silica particles into the PP matrix increased in average size with increasing silica contents, except in presence of the copolymer. Storage modulus values of the nanocomposites measured by dynamic mechanical thermal analysis were sensitive to the microstructure of the nanocomposites. Higher silica contents resulted in higher storage modulus, revealing that the material became stiffer. By adding the compatibilizer, a further increase of storage modulus was observed due to the finer dispersion of the filler in the matrix and the increased interfacial adhesion. Crystallization rates were found to increase with the increase of silica nanoparticles as well as PP-gMA content. In addition, silica nanoparticles and the compatibilizing agent present centers of germination and nucleation of crystallites. Thus, the use of the coupling agent resulted in a further enhancement of mechanical properties of the nanocomposites due to the reduction of silica agglomeration.<br />INTRODUCTION Over the past decades, there has been a notable progress in the science and technology of polymer nanocomposites. This innovative class of materials made up of organic polymer composites [...]

Details

Language :
English
ISSN :
00323888
Volume :
54
Issue :
9
Database :
Gale General OneFile
Journal :
Polymer Engineering and Science
Publication Type :
Academic Journal
Accession number :
edsgcl.381405226
Full Text :
https://doi.org/10.1002/pen.23768