Effect of tool geometry on microstructure and static strength in friction stir spot welded aluminium alloys

Author:

Tozaki Yasunari,Uematsu Yoshihiko,Tokaji Keiro

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference8 articles.

1. R. Sakano, K. Murakami, K. Yamashita, T. Hyoe, M. Fujimoto, M. Inuzuka, Y. Nagao, H. Kashiki, Development of spot FSW robot system for automobile body members, in: Proceedings of the Third International Symposium of Friction Stir Welding, Kobe, Japan, 2004.

2. M. Fujimoto, M. Inuzuka, M. Nishio, Y. Nakashima, Development of friction spot joining (Report 1)—Cross sectional structures of friction spot joints, Reprints of the National Meeting of Japan Welding Society No. 74, 2004, pp. 4–5.

3. M. Fujimoto, M. Inuzuka, M. Nishio, Y. Nakashima, Development of friction spot joining (Report 2)—Mechanical properties of friction spot joints, Reprints of the National Meeting of Japan Welding Society No. 74, 2004, pp. 6–7.

4. P.-C. Lin, S.-H. Lin, J. Pan, T. Pan, J.M. Nicholson, M.A. Garman, Microstructures and failure mechanisms of spot friction welds in lap-shear specimens of aluminum 6111-T4 sheets, SAE Technical Paper No. 2004-01-1330, 2004.

5. P.-C. Lin, J. Pan, T. Pan, Fracture and fatigue mechanisms of spot friction welds in lap-shear specimens of aluminum 6111-T4 sheets, SAE Technical Paper No. 2005-01-1247, 2005.

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