Study of mixing efficiency in kneading discs of co-rotating twin-screw extruders

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作者
Case Western Reserve Univ, Cleveland, United States [1 ]
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Polym Eng Sci | / 6卷 / 1082-1090期
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Computational fluid dynamics - Computer simulation - Disks (machine components) - Efficiency - Extruders - Finite element method - Flow patterns - Mixing - Shear stress - Three dimensional;
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摘要
Co-rotating twin-screw extruders are widely used in compounding and blending in polymer processing. In a modular machine, the dominant elements determining dispersive mixing efficiency are the kneading discs. A fluid dynamics analysis package - FIDAP, using the finite element method was implemented to simulate the 3-D isothermal flow patterns in the kneading disc region of a Werner & Pfleiderer ZSK-53 co-rotating twin-screw extruder. The kneading discs simulated are three-lobe discs. The flow field characteristics relevant for dispersive mixing are shear stresses generated and elongational flow components. We compare these flow characteristics for the three-lobe kneading discs of the ZSK-53 with the two-lobe discs of a ZSK-30 machine. We also discuss the influence of processing parameters on the flow field mixing efficiency.
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