The Academic Perspective Procedia publishes Academic Platform symposiums papers as three volumes in a year. DOI number is given to all of our papers.
Publisher : Academic Perspective
Journal DOI : 10.33793/acperpro
Journal eISSN : 2667-5862
[1] Rathinasuriyan C, Muniamuthu S, Mystica A, Senthil Kumar VS. Investigation of heat generation during submerged friction stir welding on 6061-T6 aluminum alloy. Mater Today: Proc 2021;46:8320-8324.
[2] Leon JS, Bharathiraja G, Jayakumar V. A review on friction stir welding in aluminium alloys. In IOP Conference Series: Materials Science and Engineering (Vol. 954, No. 1, p. 012007). IOP Publishing. 2020
[3] Zhang Z, Yang X, Zhang J, Zhou G, Xu X, Zou B. Effect of welding parameters on microstructure and mechanical properties of friction stir spot welded 5052 aluminum alloy. Mater. Des. 2011;32: 4461-4470.
[4] Tran VX, Pan J, Pan T. Fatigue behavior of aluminum 5754-O and 6111-T4 spot friction welds in lap-shear specimens. Int. J. Fatigue 2008; 30:2175-2190.
[5] Chowdhury SH, Chen DL, Bhole SD, Cao X, Wanjara P. Lap shear strength and fatigue life of friction stir spot welded AZ31 magnesium and 5754 aluminum alloys. Mater Sci Eng A 2012; 556:500-509.
[6] Badarinarayan H, Shi Y, Li X, Okamoto K. Effect of tool geometry on hook formation and static strength of friction stir spot welded aluminum 5754-O sheets. Int J Mach Tools Manuf 2009;49:814-823.
[7] Rhodes CG, Mahoney MW, Bingel WH, Spurling RA and Bampton CC. Effects of friction stir welding on microstructure of 7075 aluminium. Scr Mater 1997; 36:69-75.
[8] Nie F, Dong H, Chen S, Li P, Wang L, Zhao Z, Li X, Zhang H. Microstructure and mechanical properties of pulse MIG welded 6061/a356 aluminum alloy dissimilar butt joints. J Mater Sci Technol 2018;34:551–56.
[9] Fridlyander IN, Sister VG, Grushko OE, Berstenev VV, Sheveleva LM, Ivanova LA, Aluminum alloys: promising materials in the automotive industry Met Sci Heat Treat 2002; 44:365-370.
[10] Nturanabo F, Masu LM, Govender G. Automotive light-weighting using aluminium metal matrix composites. Mater Sci Forum 2015;828–829:485-491.
[11] Wang J, Chen X, Yang L, Zhang G. Effect of preheat & post-weld heat treatment on the microstructure and mechanical properties of 6061-T6 aluminum alloy welded sheets. Mater Sci Eng A 2022;841:143081.
[12] Rudawska A, Wahab MA. The effect of cataphoretic and powder coatings on the strength and failure modes of EN AW-5754 aluminium alloy adhesive joints. Int J Adhes Adhes 2019;89:40-50.
[13] Kumar NP, Vendan SA, Siva N. Investigations on the parametric effects of cold metal transfer process on the microstructural aspects in AA6061. J. Alloys Compd. 2016;658:255-264.
[14] Chen MA, Zhang D, Wu CS. Current waveform effects on CMT welding of mild steel. J Mater Process Technol 2017;243:395-404.
[15] Feng JC, Zhang HT, He P. The CMT short-circuiting metal transfer process and its use in thin aluminum sheets welding. Mater Des 2009;30(5):1850-1852.
[16] Tiana Y, Shen J, Hu S, Liang Y, Bai P. Effects of ultrasonic peening treatment on surface quality of CMT-welds of Al alloys. J Mater Process Technol 2018;254:193-200.