Global Modeling for Single Screw Extrusion of Viscoplastics
An extensive modeling study is presented on viscoplastic flows in the single screw extruder. An effective modeling procedure is developed, and fully three-dimensional Non-Newtonian FEM computations are performed to design the screw and die characteristics which may be implemented into the global mod...
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Published in | International polymer processing Vol. 35; no. 1; pp. 26 - 36 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
De Gruyter
06.03.2020
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Online Access | Get full text |
ISSN | 0930-777X 2195-8602 |
DOI | 10.3139/217.3866 |
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Abstract | An extensive modeling study is presented on viscoplastic flows in the single screw extruder. An effective modeling procedure is developed, and fully three-dimensional Non-Newtonian FEM computations are performed to design the screw and die characteristics which may be implemented into the global model of the process. ANSYS Polyflow software is applied to model these viscoplastic flows. An analysis is performed for the flow with yield stress effects both in the screw and in the die. Screw characteristics and die characteristics are calculated and modeled for various viscoplasticity parameters. The effect of yield stress parameters on the extruder operation has been discussed. |
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AbstractList | An extensive modeling study is presented on viscoplastic flows in the single screw extruder. An effective modeling procedure is developed, and fully three-dimensional Non-Newtonian FEM computations are performed to design the screw and die characteristics which may be implemented into the global model of the process. ANSYS Polyflow software is applied to model these viscoplastic flows. An analysis is performed for the flow with yield stress effects both in the screw and in the die. Screw characteristics and die characteristics are calculated and modeled for various viscoplasticity parameters. The effect of yield stress parameters on the extruder operation has been discussed. |
Author | Wilczyński, K. Lewandowski, A. |
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Cites_doi | 10.3139/217.2706 10.3139/217.3154 10.3139/217.2962 10.3390/polym10030295 10.1002/pen.23797 10.3139/9783446434189.fm 10.3139/217.2351 10.3139/9781569905395.fm 10.1080/00986449308936153 10.3139/217.2802 10.1515/revce-1983-0102 10.1002/pen.24175 10.3139/217.930335 10.1080/03602559.2012.659313 10.1002/pen.760221706 10.3139/217.3007 10.1080/03602559.2010.543228 10.3139/217.890232 10.3139/217.3653 10.1016/j.jnnfm.2014.05.006 10.1002/adv.21570 10.3139/217.2419 10.1080/03602559909351602 10.1002/pen.11501 10.1080/03602559.2012.716477 10.1002/pen.760341906 |
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Title | Global Modeling for Single Screw Extrusion of Viscoplastics |
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