Effect of FSW welding parameters on the tensile strength of aluminum alloys
The friction stir welding process is an innovative technique for joining metals using plasticity, without presenting the fusion. It was first applied to aluminum alloys, for example copper, steel alloys, polymers and others. In this work the effects of the rotational speed, the speed of travel and t...
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doaj-dd3f9096d4984af2b0a2128ee05d1d802021-09-06T19:41:12ZengSciendoArchives of Mechanical Technology and Materials2450-94692019-01-01391414510.2478/amtm-2019-0008amtm-2019-0008Effect of FSW welding parameters on the tensile strength of aluminum alloysSerier Mohamed0Berrahou Mohamed1Tabti Affaf2Bendaoudi Seif-E3Institute of Sciences and Technology, University center of Relizane, Relizane48000, AlgeriaInstitute of Sciences and Technology, University center of Relizane, Relizane48000, AlgeriaInstitute of Sciences and Technology, University center of Relizane, Relizane48000, AlgeriaInstitute of Sciences and Technology, University center of Relizane, Relizane48000, AlgeriaThe friction stir welding process is an innovative technique for joining metals using plasticity, without presenting the fusion. It was first applied to aluminum alloys, for example copper, steel alloys, polymers and others. In this work the effects of the rotational speed, the speed of travel and the axial force of the tool were grouped in a mathematical model to quantify their influences on the weld seam. In this context and with of the experimental tests, the desired objective through this study is to describe the tensile strength of the cord resulting from this welding operation, for the qualification of this type of parts with an optimum adapted to a given application.https://doi.org/10.2478/amtm-2019-0008tensile strengthfriction stir weldingaluminum alloyanova |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Serier Mohamed Berrahou Mohamed Tabti Affaf Bendaoudi Seif-E |
spellingShingle |
Serier Mohamed Berrahou Mohamed Tabti Affaf Bendaoudi Seif-E Effect of FSW welding parameters on the tensile strength of aluminum alloys Archives of Mechanical Technology and Materials tensile strength friction stir welding aluminum alloy anova |
author_facet |
Serier Mohamed Berrahou Mohamed Tabti Affaf Bendaoudi Seif-E |
author_sort |
Serier Mohamed |
title |
Effect of FSW welding parameters on the tensile strength of aluminum alloys |
title_short |
Effect of FSW welding parameters on the tensile strength of aluminum alloys |
title_full |
Effect of FSW welding parameters on the tensile strength of aluminum alloys |
title_fullStr |
Effect of FSW welding parameters on the tensile strength of aluminum alloys |
title_full_unstemmed |
Effect of FSW welding parameters on the tensile strength of aluminum alloys |
title_sort |
effect of fsw welding parameters on the tensile strength of aluminum alloys |
publisher |
Sciendo |
series |
Archives of Mechanical Technology and Materials |
issn |
2450-9469 |
publishDate |
2019-01-01 |
description |
The friction stir welding process is an innovative technique for joining metals using plasticity, without presenting the fusion. It was first applied to aluminum alloys, for example copper, steel alloys, polymers and others. In this work the effects of the rotational speed, the speed of travel and the axial force of the tool were grouped in a mathematical model to quantify their influences on the weld seam. In this context and with of the experimental tests, the desired objective through this study is to describe the tensile strength of the cord resulting from this welding operation, for the qualification of this type of parts with an optimum adapted to a given application. |
topic |
tensile strength friction stir welding aluminum alloy anova |
url |
https://doi.org/10.2478/amtm-2019-0008 |
work_keys_str_mv |
AT seriermohamed effectoffswweldingparametersonthetensilestrengthofaluminumalloys AT berrahoumohamed effectoffswweldingparametersonthetensilestrengthofaluminumalloys AT tabtiaffaf effectoffswweldingparametersonthetensilestrengthofaluminumalloys AT bendaoudiseife effectoffswweldingparametersonthetensilestrengthofaluminumalloys |
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1717766827684134912 |