On numerical Simulations of Polymer Extrusion Instabilities

The objective of this study is mainly to review recent work concerning the numerical modeling of the stick-slip and gross melt fracture polymer extrusion instabilities. Three different mechanisms of instability are discussed: (a) combination of nonlinear slip with compressibility; (b) combination of...

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Veröffentlicht in:Applied rheology (Lappersdorf, Germany) Germany), 2002-04, Vol.12 (2), p.88-104
Hauptverfasser: Achilleos, Evdokia, Georgiou, Georgios C., Hatzikiriakos, Savvas G.
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Sprache:eng
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Zusammenfassung:The objective of this study is mainly to review recent work concerning the numerical modeling of the stick-slip and gross melt fracture polymer extrusion instabilities. Three different mechanisms of instability are discussed: (a) combination of nonlinear slip with compressibility; (b) combination of nonlinear slip with elasticity; and (c) constitutive instabilities. Furthermore, preliminary numerical simulations of the time-dependent, compressible extrudate-swell flow of a Carreau fluid with slip at the wall, using a realistic macroscopic slip equation that is based on experimental data for a high-density polyethylene, are presented.
ISSN:1617-8106
1617-8106
DOI:10.1515/arh-2002-0006