Spiral Extrusion Die Design using Modified Differential Evolution Algorithm

In this work, a spiral extrusion die for industrial production of plastic foil has been designed using a modified differential evolution algorithm. The proposed method managed to provide a die design that was compliant with all demands of the foil manufacturer and lowered the production cost. Third-...

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Main Authors: Michal Pluhacek, Michal Hrdy, Adam Viktorin, Tomas Kadavy, Roman Senkerik
Format: Article
Language:English
Published: Brno University of Technology 2019-06-01
Series:Mendel
Subjects:
Online Access:https://mendel-journal.org/index.php/mendel/article/view/97
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author Michal Pluhacek
Michal Hrdy
Adam Viktorin
Tomas Kadavy
Roman Senkerik
author_facet Michal Pluhacek
Michal Hrdy
Adam Viktorin
Tomas Kadavy
Roman Senkerik
author_sort Michal Pluhacek
collection DOAJ
description In this work, a spiral extrusion die for industrial production of plastic foil has been designed using a modified differential evolution algorithm. The proposed method managed to provide a die design that was compliant with all demands of the foil manufacturer and lowered the production cost. Third-Party software is used to compute the die characteristics from the geometry designed by modified differential evolution.
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spelling doaj.art-3ce312eaf13847beb27a3c812b31cc962022-12-21T23:13:22ZengBrno University of TechnologyMendel1803-38142571-37012019-06-0125110.13164/mendel.2019.1.12197Spiral Extrusion Die Design using Modified Differential Evolution AlgorithmMichal Pluhacek0Michal Hrdy1Adam Viktorin2Tomas Kadavy3Roman Senkerik4Faculty of Applied Informatics, University in Zlin, Czech RepublicFaculty of Applied Informatics, University in Zlin, Czech RepublicFaculty of Applied Informatics, University in Zlin, Czech RepublicFaculty of Applied Informatics, University in Zlin, Czech RepublicFaculty of Applied Informatics, University in Zlin, Czech RepublicIn this work, a spiral extrusion die for industrial production of plastic foil has been designed using a modified differential evolution algorithm. The proposed method managed to provide a die design that was compliant with all demands of the foil manufacturer and lowered the production cost. Third-Party software is used to compute the die characteristics from the geometry designed by modified differential evolution.https://mendel-journal.org/index.php/mendel/article/view/97spiral dieextrusionindustrial applicationdifferential evolutionheuristic computing
spellingShingle Michal Pluhacek
Michal Hrdy
Adam Viktorin
Tomas Kadavy
Roman Senkerik
Spiral Extrusion Die Design using Modified Differential Evolution Algorithm
Mendel
spiral die
extrusion
industrial application
differential evolution
heuristic computing
title Spiral Extrusion Die Design using Modified Differential Evolution Algorithm
title_full Spiral Extrusion Die Design using Modified Differential Evolution Algorithm
title_fullStr Spiral Extrusion Die Design using Modified Differential Evolution Algorithm
title_full_unstemmed Spiral Extrusion Die Design using Modified Differential Evolution Algorithm
title_short Spiral Extrusion Die Design using Modified Differential Evolution Algorithm
title_sort spiral extrusion die design using modified differential evolution algorithm
topic spiral die
extrusion
industrial application
differential evolution
heuristic computing
url https://mendel-journal.org/index.php/mendel/article/view/97
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AT michalhrdy spiralextrusiondiedesignusingmodifieddifferentialevolutionalgorithm
AT adamviktorin spiralextrusiondiedesignusingmodifieddifferentialevolutionalgorithm
AT tomaskadavy spiralextrusiondiedesignusingmodifieddifferentialevolutionalgorithm
AT romansenkerik spiralextrusiondiedesignusingmodifieddifferentialevolutionalgorithm