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Flow Analysis in an Internal Mixer
Part I: Application of Finite Element Analysis
-
K. Yagii
und K. Kawanishi
Veröffentlicht/Copyright:
27. Mai 2013
Abstract
An attempt has been made to predict flow behavior of the rub bery material in an internal mixer by means of finite element analysis. For the convenience of analysis, a simplified model for the mixer and some assumptions were introduced. The model consists of a circular cylinder and a rotor with uniform cross sectional shape along the axis which rotates around the axis located at the center of the cylinder. Rubbery material fills the void between the cylinder and the rotor. The assumptions are: the material is a power law liquid, the material is incompressible, and the viscosity is large enough to allow laminar flow.
Published Online: 2013-05-27
Published in Print: 1990-09-01
© 1990, Carl Hanser Verlag, Munich
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Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- Modelling Twin Rotor Mixers and Extruders
- Flow Analysis in an Internal Mixer
- Flow Analysis in an Internal Mixer
- Flow Field Characterization in a Banbury Mixer
- State of Dispersion – Mechanical Properties Correlation in Small Particle Filled Polymer Composites
- Modified Flow Analysis Network Method for Analysis of Extrusion and Molding
- Processing of ABS Latex in a Single Screw Extruder
- Modelling Flow in Tangential Counter-rotating Twin Screw Extruders
- Throughput characteristics of Tightly Intermeshing Co-rotating Twin Screw Extruders
Artikel in diesem Heft
- Contents
- Contents
- Original Contributions
- Modelling Twin Rotor Mixers and Extruders
- Flow Analysis in an Internal Mixer
- Flow Analysis in an Internal Mixer
- Flow Field Characterization in a Banbury Mixer
- State of Dispersion – Mechanical Properties Correlation in Small Particle Filled Polymer Composites
- Modified Flow Analysis Network Method for Analysis of Extrusion and Molding
- Processing of ABS Latex in a Single Screw Extruder
- Modelling Flow in Tangential Counter-rotating Twin Screw Extruders
- Throughput characteristics of Tightly Intermeshing Co-rotating Twin Screw Extruders