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Experimental Investigation and Numerical Simulation of a Self-Wiping Corotating Parallel Octa-Screw Extruder

An octa-screw extruder (OSE) is equipment for pelletizing, blending, and mixing polymers and composites. In this study, the degree of resin filling, residence time distribution (RTD) of molten resin, and temperature profile in the octa-screw extruder were evaluated both experimentally and numericall...

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Autores principales: Liu, Cheng-Ying, Mikoshiba, Shota, Kobayashi, Yutaka, Ishigami, Akira, Yorifuji, Daisuke, Tanifuji, Shin-ichiro, Ito, Hiroshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8953573/
https://www.ncbi.nlm.nih.gov/pubmed/35335532
http://dx.doi.org/10.3390/polym14061201
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author Liu, Cheng-Ying
Mikoshiba, Shota
Kobayashi, Yutaka
Ishigami, Akira
Yorifuji, Daisuke
Tanifuji, Shin-ichiro
Ito, Hiroshi
author_facet Liu, Cheng-Ying
Mikoshiba, Shota
Kobayashi, Yutaka
Ishigami, Akira
Yorifuji, Daisuke
Tanifuji, Shin-ichiro
Ito, Hiroshi
author_sort Liu, Cheng-Ying
collection PubMed
description An octa-screw extruder (OSE) is equipment for pelletizing, blending, and mixing polymers and composites. In this study, the degree of resin filling, residence time distribution (RTD) of molten resin, and temperature profile in the octa-screw extruder were evaluated both experimentally and numerically. An intermeshing corotating parallel octa-screw kneading extruder was used for the experiments. For the comparison study, the results obtained from this extruder were compared with the twin-screw extruder. High-density polyethylene was selected as the material for extrusion. Meanwhile, a numerical code, based on a 2.5 D finite element method derived from the Hele–Shaw flow model, was developed to simulate the octa-screw extrusion process. The empirical outcomes suggest that octa-screw extrusion exhibited a narrower RTD of the molten resin compared with the twin-screw extrusion, suggesting better extrudate quality. The octa-screw extrusion also showed a lower temperature profile than twin-screw extrusion. The results of the simulation were also found to be in good agreement with experimental measurements. Experimental and numerical investigations of an OSE enable detailed comprehension and visualization of resin distribution in the entire length of the OSE, thus providing advantages in terms of process optimization.
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spelling pubmed-89535732022-03-26 Experimental Investigation and Numerical Simulation of a Self-Wiping Corotating Parallel Octa-Screw Extruder Liu, Cheng-Ying Mikoshiba, Shota Kobayashi, Yutaka Ishigami, Akira Yorifuji, Daisuke Tanifuji, Shin-ichiro Ito, Hiroshi Polymers (Basel) Article An octa-screw extruder (OSE) is equipment for pelletizing, blending, and mixing polymers and composites. In this study, the degree of resin filling, residence time distribution (RTD) of molten resin, and temperature profile in the octa-screw extruder were evaluated both experimentally and numerically. An intermeshing corotating parallel octa-screw kneading extruder was used for the experiments. For the comparison study, the results obtained from this extruder were compared with the twin-screw extruder. High-density polyethylene was selected as the material for extrusion. Meanwhile, a numerical code, based on a 2.5 D finite element method derived from the Hele–Shaw flow model, was developed to simulate the octa-screw extrusion process. The empirical outcomes suggest that octa-screw extrusion exhibited a narrower RTD of the molten resin compared with the twin-screw extrusion, suggesting better extrudate quality. The octa-screw extrusion also showed a lower temperature profile than twin-screw extrusion. The results of the simulation were also found to be in good agreement with experimental measurements. Experimental and numerical investigations of an OSE enable detailed comprehension and visualization of resin distribution in the entire length of the OSE, thus providing advantages in terms of process optimization. MDPI 2022-03-16 /pmc/articles/PMC8953573/ /pubmed/35335532 http://dx.doi.org/10.3390/polym14061201 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Cheng-Ying
Mikoshiba, Shota
Kobayashi, Yutaka
Ishigami, Akira
Yorifuji, Daisuke
Tanifuji, Shin-ichiro
Ito, Hiroshi
Experimental Investigation and Numerical Simulation of a Self-Wiping Corotating Parallel Octa-Screw Extruder
title Experimental Investigation and Numerical Simulation of a Self-Wiping Corotating Parallel Octa-Screw Extruder
title_full Experimental Investigation and Numerical Simulation of a Self-Wiping Corotating Parallel Octa-Screw Extruder
title_fullStr Experimental Investigation and Numerical Simulation of a Self-Wiping Corotating Parallel Octa-Screw Extruder
title_full_unstemmed Experimental Investigation and Numerical Simulation of a Self-Wiping Corotating Parallel Octa-Screw Extruder
title_short Experimental Investigation and Numerical Simulation of a Self-Wiping Corotating Parallel Octa-Screw Extruder
title_sort experimental investigation and numerical simulation of a self-wiping corotating parallel octa-screw extruder
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8953573/
https://www.ncbi.nlm.nih.gov/pubmed/35335532
http://dx.doi.org/10.3390/polym14061201
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