Relationship between micro-structure and mechanical properties of dissimilar aluminum alloy plates by friction stir welding

Friction stir welding can be applied to weld dissimilar aluminum alloys which have different chemical and mechanical properties without causing any weld defects under a wide range of welding conditions. In this study, AA2024-T3 and AA6063-T6 aluminum alloys were selected and successfully welded in b...

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Main Author: Sarsilmaz Furkan
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2018-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2018/0354-98361700271S.pdf
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spelling doaj-06657628b5504ac79e9d1aeebd3010a72021-01-02T01:47:02ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632018-01-0122Suppl. 1556610.2298/TSCI170825271S0354-98361700271SRelationship between micro-structure and mechanical properties of dissimilar aluminum alloy plates by friction stir weldingSarsilmaz Furkan0Firat University, Department of Mechatronics Engineering, Elazığ, TurkeyFriction stir welding can be applied to weld dissimilar aluminum alloys which have different chemical and mechanical properties without causing any weld defects under a wide range of welding conditions. In this study, AA2024-T3 and AA6063-T6 aluminum alloys were selected and successfully welded in butt position together using by friction stir welding. The welding trials were conducted using different rotational speed and traverse speed conditions also investigating their effect on mechanical and micro-structural behavior of friction stir welding joints. The micro-structural evolution of the material was analyzed by optical observations and scanning electron microscopy inspections of the weld cross-sections. Tension and fatigue studies were also employed to the study. On the other hand, the fracture characterizations of samples were examined by scanning electron microscopy. Fatigue tests were performed by using a resonant electro-mechanical fatigue testing machine by axial bending fatigue test procedure. The fatigue strength has been analyzed drawing S-N curves. Experimental results indicate that micro-structural and mechanical properties are significantly affected by changing welding parameters within the chosen range of welding conditions.http://www.doiserbia.nb.rs/img/doi/0354-9836/2018/0354-98361700271S.pdffriction stir weldingaluminum alloysmechanical properties
collection DOAJ
language English
format Article
sources DOAJ
author Sarsilmaz Furkan
spellingShingle Sarsilmaz Furkan
Relationship between micro-structure and mechanical properties of dissimilar aluminum alloy plates by friction stir welding
Thermal Science
friction stir welding
aluminum alloys
mechanical properties
author_facet Sarsilmaz Furkan
author_sort Sarsilmaz Furkan
title Relationship between micro-structure and mechanical properties of dissimilar aluminum alloy plates by friction stir welding
title_short Relationship between micro-structure and mechanical properties of dissimilar aluminum alloy plates by friction stir welding
title_full Relationship between micro-structure and mechanical properties of dissimilar aluminum alloy plates by friction stir welding
title_fullStr Relationship between micro-structure and mechanical properties of dissimilar aluminum alloy plates by friction stir welding
title_full_unstemmed Relationship between micro-structure and mechanical properties of dissimilar aluminum alloy plates by friction stir welding
title_sort relationship between micro-structure and mechanical properties of dissimilar aluminum alloy plates by friction stir welding
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
2334-7163
publishDate 2018-01-01
description Friction stir welding can be applied to weld dissimilar aluminum alloys which have different chemical and mechanical properties without causing any weld defects under a wide range of welding conditions. In this study, AA2024-T3 and AA6063-T6 aluminum alloys were selected and successfully welded in butt position together using by friction stir welding. The welding trials were conducted using different rotational speed and traverse speed conditions also investigating their effect on mechanical and micro-structural behavior of friction stir welding joints. The micro-structural evolution of the material was analyzed by optical observations and scanning electron microscopy inspections of the weld cross-sections. Tension and fatigue studies were also employed to the study. On the other hand, the fracture characterizations of samples were examined by scanning electron microscopy. Fatigue tests were performed by using a resonant electro-mechanical fatigue testing machine by axial bending fatigue test procedure. The fatigue strength has been analyzed drawing S-N curves. Experimental results indicate that micro-structural and mechanical properties are significantly affected by changing welding parameters within the chosen range of welding conditions.
topic friction stir welding
aluminum alloys
mechanical properties
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2018/0354-98361700271S.pdf
work_keys_str_mv AT sarsilmazfurkan relationshipbetweenmicrostructureandmechanicalpropertiesofdissimilaraluminumalloyplatesbyfrictionstirwelding
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