Morisada, Y., Imaizumi, T., Fujii, H., Ueji, R., Matsushita, M., & Ikeda, R. (2014, May). Three-dimensional visualization of material flow for aluminum and steel in FSW by x-ray radiography. 10th International Symposium.
Morisada Y, Imaizumi T, Fujii H, et al. "Three-dimensional visualization of material flow for aluminum and steel in FSW by x-ray radiography". 10th International Symposium (May.2014).
Morisada, Y, Imaizumi, T, Fujii, H, et al. "Three-dimensional visualization of material flow for aluminum and steel in FSW by x-ray radiography". 10th International Symposium (May.2014).
Morisada Y., Imaizumi T., Fujii H., Ueji R., Matsushita M. and Ikeda R.Three-dimensional visualization of material flow for aluminum and steel in FSW by x-ray radiography. 10th International Symposium. 2014 May; .
Morisada, et al 2014, 'Three-dimensional visualization of material flow for aluminum and steel in FSW by x-ray radiography', 10th International Symposium. Available from: https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-201405-9BPaper02.pdf.
Morisada Y, Imaizumi T, Fujii H, Ueji R, Matsushita M, Ikeda R. Three-dimensional visualization of material flow for aluminum and steel in FSW by x-ray radiography. 10th International Symposium. 2014;. https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-201405-9BPaper02.pdf.
Morisada YY, Imaizumi TT, Fujii HH, Ueji RR, Matsushita MM, Ikeda RR. Three-dimensional visualization of material flow for aluminum and steel in FSW by x-ray radiography. 10th International Symposium. 2014 May;. https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-201405-9BPaper02.pdf.
Three-dimensional visualization of material flow for aluminum and steel in FSW by x-ray radiography
- Morisada Y. ,
- Imaizumi T. ,
- Fujii H. ,
- et al
- Morisada Y. ,
- Imaizumi T. ,
- Fujii H. ,
- Ueji R. ,
- Matsushita M. and
- Ikeda R.
May 2014
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The material flows of aluminium and steel during friction stir welding were visualised in three dimensions using x-ray transmission radiographic real-time imaging. The movement of a miniature spherical tungsten tracer during welding was visualised using two pairs of x-ray radiography systems. Friction stir welding was carried out on aluminium A1050 (5 mm thickness) and low carbon steel (2 mm thickness) with A2017 and silicon nitride as back plates, and using a silicon nitride FSW tool. The effects of the welded material on the material flow were examined. The different material flows of A1050 and the low carbon steel parent metals are discussed.
10th International Symposium, 20-22 May 2014, Session 9B: Modelling II, Paper 02
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