Experimental analysis on friction stir welding using flat-faced pins in AA2024-T3 plate

In friction stir welding, lesser tool life restricts the usage of non-circular pin in friction stir welding tool eventhough it delivers comparatively better weld joints than circular pin. Process peak temperature during the process affects the shear strength of the flowing material around the tool p...

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Main Authors: Leon Stephen J., Bharathiraja G., Jayakumar V.
Format: Article
Language:English
Published: University of Belgrade - Faculty of Mechanical Engineering, Belgrade 2021-01-01
Series:FME Transactions
Subjects:
Online Access:https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2021/1451-20922101078L.pdf
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spelling doaj-5e8baa0c35064974b2b2df46d224141b2021-01-24T11:13:18ZengUniversity of Belgrade - Faculty of Mechanical Engineering, BelgradeFME Transactions1451-20922406-128X2021-01-0149178861451-20922101078LExperimental analysis on friction stir welding using flat-faced pins in AA2024-T3 plateLeon Stephen J.0Bharathiraja G.1Jayakumar V.2Saveetha Institute of Medical and Technical Sciences, Saveetha School of Engineering, Department of Mechanical Engineering, Chennai, Tamilnadu, IndiaSaveetha Institute of Medical and Technical Sciences, Saveetha School of Engineering, Department of Mechanical Engineering, Chennai, Tamilnadu, IndiaAmrita Vishwa Vidyapeetham, Amrita School of Engineering, Department of Mechanical Engineering, Chennai, IndiaIn friction stir welding, lesser tool life restricts the usage of non-circular pin in friction stir welding tool eventhough it delivers comparatively better weld joints than circular pin. Process peak temperature during the process affects the shear strength of the flowing material around the tool pin. Maintaining the process peak temperature as low as possible improves the properties in heat affected zone but on the other hand it increases the stress on the tool pin.Especially on the usage of non-circular pin, the pin surface experiences uneven stress distribution and causes premature tool failure. In this paper, optimum thermal environment through proper selection of process parameters and dwell period with respect to the pin geometry are analysed. A comparative analysis is also made to understand the impact of increase in flat surfaces in the pin surface on weld quality in the view of developing a suitable thermal environment that can improve tool life without compromising joint strength. Apart from this, optimum dwell period for the chosen tool pin geometry is analysed based on the empirical softening temperature of the material.https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2021/1451-20922101078L.pdffriction stir weldingexperimental analysisnon-circular tool pindwell periodmechanical propertythermal analysis
collection DOAJ
language English
format Article
sources DOAJ
author Leon Stephen J.
Bharathiraja G.
Jayakumar V.
spellingShingle Leon Stephen J.
Bharathiraja G.
Jayakumar V.
Experimental analysis on friction stir welding using flat-faced pins in AA2024-T3 plate
FME Transactions
friction stir welding
experimental analysis
non-circular tool pin
dwell period
mechanical property
thermal analysis
author_facet Leon Stephen J.
Bharathiraja G.
Jayakumar V.
author_sort Leon Stephen J.
title Experimental analysis on friction stir welding using flat-faced pins in AA2024-T3 plate
title_short Experimental analysis on friction stir welding using flat-faced pins in AA2024-T3 plate
title_full Experimental analysis on friction stir welding using flat-faced pins in AA2024-T3 plate
title_fullStr Experimental analysis on friction stir welding using flat-faced pins in AA2024-T3 plate
title_full_unstemmed Experimental analysis on friction stir welding using flat-faced pins in AA2024-T3 plate
title_sort experimental analysis on friction stir welding using flat-faced pins in aa2024-t3 plate
publisher University of Belgrade - Faculty of Mechanical Engineering, Belgrade
series FME Transactions
issn 1451-2092
2406-128X
publishDate 2021-01-01
description In friction stir welding, lesser tool life restricts the usage of non-circular pin in friction stir welding tool eventhough it delivers comparatively better weld joints than circular pin. Process peak temperature during the process affects the shear strength of the flowing material around the tool pin. Maintaining the process peak temperature as low as possible improves the properties in heat affected zone but on the other hand it increases the stress on the tool pin.Especially on the usage of non-circular pin, the pin surface experiences uneven stress distribution and causes premature tool failure. In this paper, optimum thermal environment through proper selection of process parameters and dwell period with respect to the pin geometry are analysed. A comparative analysis is also made to understand the impact of increase in flat surfaces in the pin surface on weld quality in the view of developing a suitable thermal environment that can improve tool life without compromising joint strength. Apart from this, optimum dwell period for the chosen tool pin geometry is analysed based on the empirical softening temperature of the material.
topic friction stir welding
experimental analysis
non-circular tool pin
dwell period
mechanical property
thermal analysis
url https://scindeks-clanci.ceon.rs/data/pdf/1451-2092/2021/1451-20922101078L.pdf
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