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FEM Numerical and Experimental Study on Dimensional Accuracy of Tubes Extruded from 6082 and 7021 Aluminium Alloys

The extrusion of hollow profiles from hard-deformable AlZnMg alloys by using porthole dies encounters great technological difficulties in practice. High extrusion force accompanies the technological process, which is caused by high deformation resistance and high friction resistance in extrusion con...

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Autores principales: Leśniak, Dariusz, Zasadziński, Józef, Libura, Wojciech, Żaba, Krzysztof, Puchlerska, Sandra, Madura, Jacek, Balcerzak, Maciej, Płonka, Bartłomiej, Jurczak, Henryk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9865809/
https://www.ncbi.nlm.nih.gov/pubmed/36676292
http://dx.doi.org/10.3390/ma16020556
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author Leśniak, Dariusz
Zasadziński, Józef
Libura, Wojciech
Żaba, Krzysztof
Puchlerska, Sandra
Madura, Jacek
Balcerzak, Maciej
Płonka, Bartłomiej
Jurczak, Henryk
author_facet Leśniak, Dariusz
Zasadziński, Józef
Libura, Wojciech
Żaba, Krzysztof
Puchlerska, Sandra
Madura, Jacek
Balcerzak, Maciej
Płonka, Bartłomiej
Jurczak, Henryk
author_sort Leśniak, Dariusz
collection PubMed
description The extrusion of hollow profiles from hard-deformable AlZnMg alloys by using porthole dies encounters great technological difficulties in practice. High extrusion force accompanies the technological process, which is caused by high deformation resistance and high friction resistance in extrusion conditions. As a result of high thermo-mechanical loads affecting the die, a significant loss of dimensional accuracy of extruded profiles can be observed. The different projects of porthole dies for the extrusion of Ø50 × 2 mm tubes from the 7021 alloy were numerically calculated and then tested in industrial conditions by using a press of 25 MN capacity equipped with a container with a diameter of 7 inches (for 7021 alloy and 6082 alloy for comparison). New extrusion die 3 with modified bridge and mandrel geometry and a special radial–convex entry to the die opening was proposed. FEM was applied to analyse the metal flow during extrusion, geometrical stability of extruded tubes and the die deflection. The photogrammetric measuring method was used to evaluate dimensional accuracy of tubes extruded in different conditions and geometrical deviations in porthole dies elements, especially the bridges and the mandrels. Research revealed a high dimensional accuracy of tubes extruded from the 6082 alloy and from the 7021 alloy by using original extrusion die 3, while much higher dimensional deviations were noted for tubes extruded from the 7021 alloy by using extrusion dies 1 and 2, particularly in relation to the circularity, centricity and wall thickness.
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spelling pubmed-98658092023-01-22 FEM Numerical and Experimental Study on Dimensional Accuracy of Tubes Extruded from 6082 and 7021 Aluminium Alloys Leśniak, Dariusz Zasadziński, Józef Libura, Wojciech Żaba, Krzysztof Puchlerska, Sandra Madura, Jacek Balcerzak, Maciej Płonka, Bartłomiej Jurczak, Henryk Materials (Basel) Article The extrusion of hollow profiles from hard-deformable AlZnMg alloys by using porthole dies encounters great technological difficulties in practice. High extrusion force accompanies the technological process, which is caused by high deformation resistance and high friction resistance in extrusion conditions. As a result of high thermo-mechanical loads affecting the die, a significant loss of dimensional accuracy of extruded profiles can be observed. The different projects of porthole dies for the extrusion of Ø50 × 2 mm tubes from the 7021 alloy were numerically calculated and then tested in industrial conditions by using a press of 25 MN capacity equipped with a container with a diameter of 7 inches (for 7021 alloy and 6082 alloy for comparison). New extrusion die 3 with modified bridge and mandrel geometry and a special radial–convex entry to the die opening was proposed. FEM was applied to analyse the metal flow during extrusion, geometrical stability of extruded tubes and the die deflection. The photogrammetric measuring method was used to evaluate dimensional accuracy of tubes extruded in different conditions and geometrical deviations in porthole dies elements, especially the bridges and the mandrels. Research revealed a high dimensional accuracy of tubes extruded from the 6082 alloy and from the 7021 alloy by using original extrusion die 3, while much higher dimensional deviations were noted for tubes extruded from the 7021 alloy by using extrusion dies 1 and 2, particularly in relation to the circularity, centricity and wall thickness. MDPI 2023-01-06 /pmc/articles/PMC9865809/ /pubmed/36676292 http://dx.doi.org/10.3390/ma16020556 Text en © 2023 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
Leśniak, Dariusz
Zasadziński, Józef
Libura, Wojciech
Żaba, Krzysztof
Puchlerska, Sandra
Madura, Jacek
Balcerzak, Maciej
Płonka, Bartłomiej
Jurczak, Henryk
FEM Numerical and Experimental Study on Dimensional Accuracy of Tubes Extruded from 6082 and 7021 Aluminium Alloys
title FEM Numerical and Experimental Study on Dimensional Accuracy of Tubes Extruded from 6082 and 7021 Aluminium Alloys
title_full FEM Numerical and Experimental Study on Dimensional Accuracy of Tubes Extruded from 6082 and 7021 Aluminium Alloys
title_fullStr FEM Numerical and Experimental Study on Dimensional Accuracy of Tubes Extruded from 6082 and 7021 Aluminium Alloys
title_full_unstemmed FEM Numerical and Experimental Study on Dimensional Accuracy of Tubes Extruded from 6082 and 7021 Aluminium Alloys
title_short FEM Numerical and Experimental Study on Dimensional Accuracy of Tubes Extruded from 6082 and 7021 Aluminium Alloys
title_sort fem numerical and experimental study on dimensional accuracy of tubes extruded from 6082 and 7021 aluminium alloys
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9865809/
https://www.ncbi.nlm.nih.gov/pubmed/36676292
http://dx.doi.org/10.3390/ma16020556
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