Theoretical and experimental analysis of the Cu-Al bimetallic bar rolling process

In this study, the authors present the results of their theoretical and experimental analysis of the rolling process of Cu – Al bimetallic bars in elongation passes. The original bars were round aluminium bar, covered with copper layer. For theoretical tests, the Forge2008® computer program was used...

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Main Authors: S. Mróz, P. Szota, H. Dyja, A. Kawałek
Format: Article
Language:English
Published: Croatian Metallurgical Society 2011-04-01
Series:Metalurgija
Subjects:
Online Access:http://public.carnet.hr/metalurg/Metalurgija/2011_vol_50/No_2/MET_50_2_85-88_Mroz.pdf
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author S. Mróz
P. Szota
H. Dyja
A. Kawałek
author_facet S. Mróz
P. Szota
H. Dyja
A. Kawałek
author_sort S. Mróz
collection DOAJ
description In this study, the authors present the results of their theoretical and experimental analysis of the rolling process of Cu – Al bimetallic bars in elongation passes. The original bars were round aluminium bar, covered with copper layer. For theoretical tests, the Forge2008® computer program was used, based on FEM. The model simulated metal flow during rolling of bimetallic bars in oval – round passes. The results of the experiments were compared with the finite element calculations. The analysis demonstrated that an appropriate selection of shape and size of oval pass allows production of even distribution of the copper layer in the bimetallic roll products.
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spelling doaj.art-997adc7bb39043aead55443fde633d6e2022-12-21T18:24:36ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762011-04-015028588Theoretical and experimental analysis of the Cu-Al bimetallic bar rolling processS. MrózP. SzotaH. DyjaA. KawałekIn this study, the authors present the results of their theoretical and experimental analysis of the rolling process of Cu – Al bimetallic bars in elongation passes. The original bars were round aluminium bar, covered with copper layer. For theoretical tests, the Forge2008® computer program was used, based on FEM. The model simulated metal flow during rolling of bimetallic bars in oval – round passes. The results of the experiments were compared with the finite element calculations. The analysis demonstrated that an appropriate selection of shape and size of oval pass allows production of even distribution of the copper layer in the bimetallic roll products.http://public.carnet.hr/metalurg/Metalurgija/2011_vol_50/No_2/MET_50_2_85-88_Mroz.pdfbimetallic barselongating groovesFEM (Finite Elements method)numerical analysis
spellingShingle S. Mróz
P. Szota
H. Dyja
A. Kawałek
Theoretical and experimental analysis of the Cu-Al bimetallic bar rolling process
Metalurgija
bimetallic bars
elongating grooves
FEM (Finite Elements method)
numerical analysis
title Theoretical and experimental analysis of the Cu-Al bimetallic bar rolling process
title_full Theoretical and experimental analysis of the Cu-Al bimetallic bar rolling process
title_fullStr Theoretical and experimental analysis of the Cu-Al bimetallic bar rolling process
title_full_unstemmed Theoretical and experimental analysis of the Cu-Al bimetallic bar rolling process
title_short Theoretical and experimental analysis of the Cu-Al bimetallic bar rolling process
title_sort theoretical and experimental analysis of the cu al bimetallic bar rolling process
topic bimetallic bars
elongating grooves
FEM (Finite Elements method)
numerical analysis
url http://public.carnet.hr/metalurg/Metalurgija/2011_vol_50/No_2/MET_50_2_85-88_Mroz.pdf
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AT pszota theoreticalandexperimentalanalysisofthecualbimetallicbarrollingprocess
AT hdyja theoreticalandexperimentalanalysisofthecualbimetallicbarrollingprocess
AT akawałek theoreticalandexperimentalanalysisofthecualbimetallicbarrollingprocess