4.6 Article

Isotactic Polypropylene Composites Reinforced with Multiwall Carbon Nanotubes, Part 2: Thermal and Mechanical Properties Related to the Structure

Journal

JOURNAL OF APPLIED POLYMER SCIENCE
Volume 115, Issue 6, Pages 3576-3585

Publisher

WILEY-BLACKWELL
DOI: 10.1002/app.30413

Keywords

polypropylene nanocomposites; carbon nanotubes; thermal stability; dynamic mechanical properties; tensile characteristics; rheology-structure-property relations; reinforcement

Funding

  1. Bilateral Project CLPCM-BAS
  2. Bulgaria/ICTP-CNR, Italy
  3. FP7-CSA-NaPolyNet
  4. NSF-BG [NT4-02-D01-469/06, D-02-53/08]

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Polypropylene nanocomposites containing multiwall carbon nanotubes (MWCNT), from 0.1 to 3 wt %, are prepared by dilution of a polypropylene based masterbatch (20% MWCNT) with isotactic polypropylene (iPP) using extrusion processing. CNT are found to enhance significantly the thermal stability of iPP in nitrogen and air atmosphere. Dynamic mechanical analysis and tensile tests confirm the reinforcement effect of small amount of nanotubes in iPP. Rheology, structure, and properties are correlated determine the optimal limits of nanofiller content required for improving the performance of nanocomposites. The rheological flocculation threshold of phi* = 0.5% is found as a critical concentration for the formation of a flocculated type of structure in the dispersions. It is proposed, that the flocculated structure is responsible for the maximal improvement of nanocomposite mechanical and thermal properties. The MWCNT additive slightly enhances the local dynamics of iPP molecules in the glass transition region and suppresses the global relaxation of the chain segments in the amorphous regions, resulting in a reinforcement effect. The fracture mechanism is discussed and associated with the hierarchy of the flocculated nanocomposite morphology and the bridging of matrix cracks by CNT. (C) 2009 Wiley Periodicals, Inc. J Appl Polym Sci 115: 3576-3585, 2010

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