Effect of shoulder diameter, tool rotation speed, and arrangement of plates on mechanical and metallurgical properties of dissimilar aluminum 2024-T3 and 7075-T6 friction stir spot welding (FSSW)

Author:

Feizollahi Vahid,Yousefi Mehregan,Elahifar Akbar,Pourmirza Behzad,Ghobeiti Hasab Mehdi,Heidary Moghadam Ali

Publisher

Elsevier BV

Reference30 articles.

1. Effect of tool rotational speed on friction stir spot welded Aa5052 – H38 aluminum alloy;Sekhar;Mater. Today:. Proc.,2018

2. Shear and hardness properties study of AA-6061 aluminium alloy lap-joints produced by friction stir spot welding process using H13 tool steel;Hanapiah;Int. J. Eng. Mater. Manuf.,2021

3. Modified friction stir clinching of dissimilar AA2024-T3 to AA7075-T6: Effect of tool rotational speed and penetration depth;Paidar;J. Manuf. Process.,2019

4. Arabzadeh, A., Mousavizade, S.M., Korojy, B., Hosseini, S.A., 2020, Projection Friction Stir Spot Welding: A New Welding Technique for Creating Safe and Reliable Aluminum Welds, Iranian Journal of Oil & Gas Science and Technology, Vol. 9 (2020), No. 3, pp. 61–76.

5. Feizollahi, V., Heidary Moghadam, A., (2024), The study investigates the effects of tool pin length, rotation speed and dwell time on the microstructure and tensile strength of dissimilar joints between low-carbon galvanized steel and aluminum T6-6061 through friction stir spot welding, engineering failure analysis 157, 107925.

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