Experimental and numerical investigation of a novel pinless friction stir spot welding for Al 1060 sheets
Author:
Funder
Science and Technology Development Fund of Pudong New Area
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s00170-024-14188-1.pdf
Reference26 articles.
1. Das A, Li D, Williams D, Greenwood D (2018) Joining technologies for automotive battery systems manufacturing. World Electr Veh J 9:22
2. Zwicker MFR, Moghadam M, Zhang W, Nielsen CV (2020) Automotive battery pack manufacturing–a review of battery to tab joining. J Adv Join Process 1:100017
3. Li WY, Li JF, Zhang ZH, Gao D, Wang WB, Dong CL (2014) Improving mechanical properties of pinless friction stir spot welded joints by eliminating hook defect. Mater Des 62(1):247–254
4. Larsen B, Hunt J, Hovanski Y (2020) Investigating steel tool life in the RFSSW process. J Manuf Process 58:637–645
5. Fu BL, Shen JJ, Suhuddin UFHR, Chen T, dos Santos JF, Klusemann B, Rethmeier M (2021) Improved mechanical properties of cast Mg alloy welds via texture weakening by differential rotation refill friction stir spot welding. Scr Mater 203:114113
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