Effect of double-side welding on the microstructural characteristics and mechanical performance of dissimilar AA6061-AA5052 aluminium alloys

A, Rajesh Kannan and N, Siva Shanmugam and Yasam, Palguna and et al, . (2023) Effect of double-side welding on the microstructural characteristics and mechanical performance of dissimilar AA6061-AA5052 aluminium alloys. Materials Letters, 331 (133444). pp. 1-4. ISSN 0167-577X

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Abstract

In this study, cold metal transfer (CMT) based double-side welding process was employed to weld AA5052-H32 and AA6061-T6 plates having a thickness of 6 mm. The microstructure and mechanical integrity of the weldment was examined systematically. Symmetric and defect free joint with full penetration was achieved. The multiple heating and cooling cycles during CMT welding did not affect the weldment while the microstructure comprised of columnar and equiaxed dendrites and the heat affected zone (HAZ) width was < 50 µm at all interfaces. Precipitates such as Al3Mg2, Mg2Si, and α-Al(FeMn)Si were observed in the fusion zone. Intergranular Al-Si eutectic structure along with few microliquefaction cracks were noticed in the α-Al matrix. The maximum tensile properties for double-side welded joint were 214 MPa and 12.30 % with a joint efficiency of 70.68 %. Tensile specimens underwent ductile fracture in the weaker AA5052-H32 side with confined plastic deformation. © 2022 Elsevier B.V.

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IITH Creators:
IITH CreatorsORCiD
Item Type: Article
Additional Information: This work has been supported by the research fund of Hanyang University (HY-2022).
Uncontrolled Keywords: Aluminum alloys; Cold Metal Transfer; Double-side welding; Mechanical properties; Microstructure
Subjects: Others > Metallurgy
Others > Metallurgy Metallurgical Engineering
Materials Engineering > Materials engineering
Divisions: Department of Material Science Engineering
Depositing User: Ms Palak Jain
Date Deposited: 22 May 2023 09:33
Last Modified: 22 May 2023 09:33
URI: http://raiithold.iith.ac.in/id/eprint/11464
Publisher URL: https://doi.org/10.1016/j.matlet.2022.133444
OA policy: https://v2.sherpa.ac.uk/id/publication/13701
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