Tensile strength prediction and process parameters optimization of FSW thick AA2219-T8 based on ANN-GA
Author:
Funder
National Key Research and Development Program of China
Natural Science Foundation of Liaoning Province
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s40430-024-04962-3.pdf
Reference46 articles.
1. Wang ZL, Zhang Z, Xue P, Ni DR, Ma ZY, Hao YF, Zhao YH, Wang GQ (2021) Defect formation, microstructure evolution, and mechanical properties of bobbin tool friction-stir welded 2219–t8 alloy. Mater Sci Eng A 832:142414. https://doi.org/10.1016/j.msea.2021.142414
2. Kumar TS, Shalini S, Thankachan T (2023) Friction stir processing based surface modification of AZ31 magnesium alloy. Mater Manuf Process 38(11):1426–1435. https://doi.org/10.1080/10426914.2023.2165670
3. Gibson BT, Lammlein DH, Prater TJ, Longhurst WR, Cox CD, Ballun MC, Dharmaraj KJ, Cook GE, Strauss AM (2014) Friction stir welding: process, automation, and control. J Manuf Process 16(1):56–73. https://doi.org/10.1016/j.jmapro.2013.04.002
4. Mustafa FF, Kadhym AH, Yahya HH (2015) Tool geometries optimization for friction stir welding of AA6061-T6 aluminum alloy T-joint using taguchi method to improve the mechanical behavior. ASME J Manuf Sci Eng 137(3):031018. https://doi.org/10.1115/1.4029921
5. Ramachandran KK, Murugan N, Kumar SS (2016) Performance analysis of dissimilar friction stir welded aluminium alloy AA5052 and HSLA steel butt joints using response surface method. Int J Adv Manuf Technol 86(9):2373–2392. https://doi.org/10.1007/s00170-016-8337-6
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