Experimental investigation on microstructural and mechanical properties of in situ SiC-reinforced friction stir spot weld of Al 6061-T6
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
https://link.springer.com/content/pdf/10.1007/s10853-022-08110-x.pdf
Reference33 articles.
1. Tanaka T, Nezu M, Uchida S, Hirata T (2020) Mechanism of intermetallic compound formation during the dissimilar friction stir welding of aluminum and steel. J Mater Sci 55(7):3064–3072. https://doi.org/10.1007/s10853-019-04106-2
2. Chaudhary N, Singh S (2022) Experimental investigation and ANFIS-based modelling of effect of process parameters on friction stir spot welding of Al 6061-T6. 1–11
3. Mazzaferro CCP, Rosendo TS, Tier MAD, Mazzaferro JAE, Dos Santos JF, Strohaecker TR (2015) Microstructural and mechanical observations of galvanized TRIP steel after friction stir spot welding. Mater Manuf Process 30(9):1090–1103
4. UTZEL E (2009) Advantages and disadvantages of arc and laser welding. Hybrid laser-arc welding, 1
5. Chaudhary N, Singh S, Garg MP, Garg HK, Sharma S, Li C, El-Khatib S (2022) Parametric optimisation of friction-stir-spot-welded Al 6061-T6 incorporated with silicon carbide using a hybrid WASPAS–Taguchi technique. Materials 15(18):6427
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