4.7 Article

Study of the effective parameters on mechanical and electrical properties of carbon black filled PP/PA6 microfibrillar composites

Journal

COMPOSITES SCIENCE AND TECHNOLOGY
Volume 67, Issue 15-16, Pages 3233-3241

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.compscitech.2007.04.001

Keywords

composite; carbon black; electrical; mechanical properties; microfibrillar; PP/PA6

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In this study the electrical and mechanical properties of microfibrillar polypropylene (PP)/polyamide6 (PA6) blend filled with super conductive carbon black (CB) have been investigated. In situ microfibrillar PP/PA6 composites filled with CB are produced using a single screw extruder equipped with a spinneret. Glycidyl methacrylate (GMA) grafted polypropylene (PP-g-GMA) is used as the compatibilizer. To investigate the effects of extensional flow on the microstructure, electrical and mechanical properties, three adaptors with various convergence angles were designed, prepared and applied between the extruder and the spinneret. To optimize the effects of processing and material parameters on the electrical and mechanical properties, the Taguchi method of experimental design is used. Material and processing factors which are studied include: concentration of PA6, compatibilizer level, CB concentration, drawing speed of melt spinning line, adaptor angle, order of mixing and temperature profile along the extruder. The results show an increase in DC conductivity of up to 10(11) times in comparison with pure PA6, by increasing the concentration of CB, drawing speed, adaptor angle and optimizing other parameters. By optimizing processing and material factors studied here, strength of microfibrillar structured composites is increased of up to 80% in comparison to pure PP. (C) 2007 Elsevier Ltd. All rights reserved.

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