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Translated Articles

Friction stir lap welding between A6061/SPC270 thin sheets using welding tool with scroll shoulder

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References

  • Hirano S, Okamoto K, Doi M, et al. Microstructure of dissimilar joint interface of magnesium alloy and aluminum alloy by friction stir welding. Quart J Jap Weld Soc. 2003;21(4):539–545.
  • Sakiyama T, Murayama G, Naito Y, et al. Dissimilar metal joining technologies for steel sheet and aluminum alloy sheet in auto body. Nippon Steel Tech Rep. 2013;103:91–98.
  • Ogura T, Saito Y, Nishida T, et al. Partitioning evaluation of mechanical properties and the interfacial microstructure in a friction stir welded aluminum alloy/stainless steel lap joint. Scr Mater. 2012;66(8):531–534.
  • Das H, Basak S, Das G, et al. Influence of energy induced from processing parameters on the mechanical properties of friction stir welded lap joint of aluminum to coated steel sheet. Int J Adv Manuf Technol. 2013;64(9–12):1653–1661.
  • Uematsu Y, Kakiuchi T, Tozaki Y, et al. Comparative study of fatigue behaviour in dissimilar Al alloy/steel and Mg alloy/steel friction stir spot welds fabricated by scroll grooved tool without probe. Sci Technol Weld Joining. 2012;17(5):348–356.
  • Fukumoto M, Tsubaki M, Shimoda Y, et al. Welding between ADC12 and ss400 by means of friction stirring. Quart J Japan Weld Soc. 2004;22(2):309–314.
  • Thomas WM. International Patent Application No. PCT/GB 92 No. 9125978.8; 1991.
  • Thomas WM, Nicholas ED, Needham JC, et al. Friction stir welding, European Patent Specification 0615480B1; 1991.
  • Elrefaey A, Takahashi M, Ikeuchi K. Friction-stir-welded lap joint of aluminum to zinc-coated steel. Quart J Japan Weld Soc. 2005;23(2):186–193.
  • Zheng Q, Feng X, Shen Y, et al. Effect of plunge depth on microstructure and mechanical properties of FSW lap joint between aluminum alloy and nickel-base alloy. J Alloys Compd. 2017;695:952–961.
  • Yasui T. Friction stir welding between aluminum and dissimilar metal. J Japan Inst Light Metals. 2021;71(5):222–227.
  • Uematsu Y, Kakiuchi T, Kondoh E, et al. Fatigue behavior of dissimilar A6061/rolled steel (SS400) friction stir welds. Quart J Japan Weld Soc. 2013;31(2):112–118.
  • Chen Z, Yazdanian S. Friction stir lap welding of light alloys. Int J Soc Mater Eng Resour. 2014;20(2):186–190.
  • Chen YC, Nakata K. Effect of the surface state of steel on the microstructure and mechanical properties of dissimilar metal lap joints of aluminum and steel by friction stir welding. Metall Mater Trans A. 2008;39(8):1985–1992.
  • Watanabe T, Takayama H, Yanagisawa A. Joining of aluminum alloy to steel by friction stir welding. J Mater Process Technol. 2006;178(1–3):342–349.
  • Kar A, Vicharapu B, Morisada Y, et al. Elucidation of interfacial microstructure and properties in friction stir lap welding of aluminium alloy and mild steel. Mater Charact. 2020;168:110572.
  • Okane M, Shimizu T, Yasui T, et al. Mechanistic factors influencing fatigue behavior of the A5052/SPC270C joints by friction stir spot welding. J Light Metal Weld. 2018;56(2):21–29.
  • Liu X, Lan S, Ni J. Analysis of process parameters effects on friction stir welding of dissimilar aluminum alloy to advanced high strength steel. Mat Des. 2014;59:50–62.
  • Kim EH, Nakata K, Song KH. Investigation of microstructure and mechanical properties of friction stir lap-jointed A6061/HT590 alloys. Mater Trans. 2016;57(5):686–690.
  • Liu J, Hao Z, Xie Y, et al. Interface stability and fracture mechanism of Al/steel friction stir lap joints by novel designed tool. J Mater Process Technol. 2022;300:117425.
  • Mahto RP, Bhoje R, Pal SK, et al. A study on mechanical properties in friction stir lap welding of AA 6061-T6 and AISI 304. Mat Sci Eng. 2016;652:136–144.
  • Yasui T, Shimoda Y, Tsubaki M, et al. Characteristics of high speed welding between 6063 and s45c by means of friction stirring* – study on welding in dissimilar metals by means of friction stirring (1st report). Quart J Japan Weld Soc. 2005;23(3):469–475.
  • Wei Y, Li J, Xiong J, et al. Effect of tool pin insertion depth on friction stir lap welding of aluminum to stainless steel. J Mater Eng Perform. 2013;22(10):3005–3013.
  • Alaeibehmand S, Ranjbarnodeh E, Mirsalehi SE. Joining mechanism in pinless FSSW of aluminum-steel with or without Zn and brass interlayers. Mater Charact. 2021;180:111400.
  • Yasui T, Liu Y, Fukuhara T, et al. Effect of tilt angle and plunge depth of welding tool on friction stir lap welding of steel sheet and aluminum alloy sheet. Tetsu-to-Hagané. 2022;108(12):979–990.
  • Yasui T, Lv P, Yamaguchi S, et al. Effect of tool probe plunge depth on lap FSW between A6061 and SPC270. The 28th Material Processing Technical Conference (M&P2020); 2020.
  • Yasui T, Mizushima H, Tsubaki M, et al. Influence of tool shape on friction stir welded joint of aluminum and steel with circular weld line. Procedia Eng. 2014;81:2092–2097.
  • Yasui T, Ogura Y, Xu HL, et al. Control of material flow during friction stir welding between aluminum and steel by welding tool shape. International Conference on Leading Edge Manufacturing/Materials and Processing; Vol. 83624; 2020. p. V001T05A009. American Society of Mechanical Engineers.
  • Vander Voort G, Manilova EP. Metallographic etching of aluminum and its alloys. Buehler Ltd., EUA; 2009.
  • Shibayanagi T. Microstructural aspects in friction stir welding. J Japan Inst Light Metals. 2007;57(9):416–423.
  • Japan Welding Society. Friction stir welding – all about FSW. Tokyo: Sanpo Shuppan; Japan Welding Society; 2006. p. 84.

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