A die rotating system for moderations of extrusion load and pressure drop profiles for molten PP and wood/polypropylene composites in extrusion processes

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Author listIntawong N., Kantala C., Lotaisong W., Sombatsompop N.

PublisherWiley

Publication year2011

JournalJournal of Applied Polymer Science (0021-8995)

Volume number120

Issue number2

Start page1006

End page1016

Number of pages11

ISSN0021-8995

eISSN1097-4628

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-78650899006&doi=10.1002%2fapp.33209&partnerID=40&md5=321b516d5aee46fc69c2c4f26e8b7d8e

LanguagesEnglish-Great Britain (EN-GB)


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Abstract

A die-rotating system was proposed in this work for moderations of extrusion forces and entrance pressure drop for molten polypropylene (PP) and wood/polypropylene (WPP) composites in a capillary rheometer and a single screw extruder. The effects of processing conditions and wood loading in PP were of our interests. The extrusion force and entrance pressure drop with and without the die rotating system were monitored in real-time. This was the first time that the die-rotating system was used for processing of highly viscous wood/polymer composite materials. It was found that the flow properties of the molten PP and WPP composites obeyed pseudoplastic non-Newtonian behavior. The behavior was more obvious at wood contents of above 6 wt % and in the capillary rheometer. The rotation of the die could moderate the extrusion load by 60% and entrance pressure drop by 20% in the capillary rheometer, and the entrance pressure drop by 30% in the single screw extruder, especially at the conditions where the viscosities of the WPP and the extrusion rate were high. Greater fluctuations in entrance pressure drop caused by die rotation were observed in the single screw extruder. ฉ 2010 Wiley Periodicals, Inc. J Appl Polym Sci 120:1006-1016, 2011.


Keywords

Extrusion


Last updated on 2023-26-09 at 07:35