Experimental and numerical investigation for simulation of thermophysical properties for polypropylene 575 polymer melts in single screw extruder
A numerical model for Polypropylene 575 polymer melts flow along the solid conveying screw of a single screw extruder under constant heat flux using ANSYS-FLUENT 17.2 software ha s been conducted. The model uses the thermophysical properties such as Viscosity, thermal conductivity, Specific heat and...
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Veröffentlicht in: | Ai-Khawarizmi engineering journal 2018-12, Vol.14 (4), p.72-82 |
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Hauptverfasser: | , , |
Format: | Artikel |
Sprache: | ara ; eng |
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Zusammenfassung: | A numerical model for Polypropylene 575 polymer melts flow along the solid conveying screw of a single screw
extruder under constant heat flux using ANSYS-FLUENT 17.2 software ha s been conducted. The model uses the
thermophysical properties such as Viscosity, thermal conductivity, Specific heat and density of polypropylene 575 that
measured as a function of temperature, and residence time data for process simulation. The numerical simulation using
CFD models for single screw extruder and the polymer extrusion was analysed for parameters such as (thermal
conductivity, specific heat, density and viscosity) reveals a high degree of similarity to experimental data measured. The
most important outcome of this study is that geometrical, parameter and conditions have been obtained from the
simulation used to minimize the size, cost and time of operation for extruder. |
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ISSN: | 1818-1171 2312-0789 |
DOI: | 10.22153/kej.2018.04.003 |