Groove Rolling Process of Mg/Al Bimetallic Bars

The paper presents the results of the experimental tests of Mg/Al bimetallic bars rolling process in classic and multi-radial modified round-oval-round passes. The bimetallic bar consist of magnesium core, grade AZ31 and aluminium outer layer, grade 1050A. The stocks were round bars with diameter 22...

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Main Authors: S. Mróz, A. Stefanik, P. Szota
Format: Article
Language:English
Published: Polish Academy of Sciences 2019-09-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:https://journals.pan.pl/Content/113024/PDF/AMM-2019-3-43-Mroz.pdf
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author S. Mróz
A. Stefanik
P. Szota
author_facet S. Mróz
A. Stefanik
P. Szota
author_sort S. Mróz
collection DOAJ
description The paper presents the results of the experimental tests of Mg/Al bimetallic bars rolling process in classic and multi-radial modified round-oval-round passes. The bimetallic bar consist of magnesium core, grade AZ31 and aluminium outer layer, grade 1050A. The stocks were round bars with diameter 22.5 mm with an aluminium layer share of 28%. As a result of rolling in four passes, bars of a diameter of about 17 mm were obtained. A bimetallic feedstock was manufactured using an explosive welding method. The use of the designed arrangement of multi-radial modified stretching passes resulted in obtaining Mg/Al bimetallic bars with an uniform distribution of the cladding layer over the bar perimeter and high quality of shear strength between individual layers compared to Mg/Al bars obtained in the classic passes.
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spelling doaj.art-8e90fb59fef64f0391615784abe3c9162022-12-22T03:41:51ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092019-09-01vol. 64No 310671072https://doi.org/10.24425/amm.2019.129496Groove Rolling Process of Mg/Al Bimetallic BarsS. MrózA. StefanikP. SzotaThe paper presents the results of the experimental tests of Mg/Al bimetallic bars rolling process in classic and multi-radial modified round-oval-round passes. The bimetallic bar consist of magnesium core, grade AZ31 and aluminium outer layer, grade 1050A. The stocks were round bars with diameter 22.5 mm with an aluminium layer share of 28%. As a result of rolling in four passes, bars of a diameter of about 17 mm were obtained. A bimetallic feedstock was manufactured using an explosive welding method. The use of the designed arrangement of multi-radial modified stretching passes resulted in obtaining Mg/Al bimetallic bars with an uniform distribution of the cladding layer over the bar perimeter and high quality of shear strength between individual layers compared to Mg/Al bars obtained in the classic passes.https://journals.pan.pl/Content/113024/PDF/AMM-2019-3-43-Mroz.pdfbimetallic barsmg alloygroove rollingmulti-radial passes
spellingShingle S. Mróz
A. Stefanik
P. Szota
Groove Rolling Process of Mg/Al Bimetallic Bars
Archives of Metallurgy and Materials
bimetallic bars
mg alloy
groove rolling
multi-radial passes
title Groove Rolling Process of Mg/Al Bimetallic Bars
title_full Groove Rolling Process of Mg/Al Bimetallic Bars
title_fullStr Groove Rolling Process of Mg/Al Bimetallic Bars
title_full_unstemmed Groove Rolling Process of Mg/Al Bimetallic Bars
title_short Groove Rolling Process of Mg/Al Bimetallic Bars
title_sort groove rolling process of mg al bimetallic bars
topic bimetallic bars
mg alloy
groove rolling
multi-radial passes
url https://journals.pan.pl/Content/113024/PDF/AMM-2019-3-43-Mroz.pdf
work_keys_str_mv AT smroz grooverollingprocessofmgalbimetallicbars
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AT pszota grooverollingprocessofmgalbimetallicbars