Okada, H., & Yoshida, Y. (2024, May). Both sides corner stationary shoulder friction stir welding. 13th International Symposium.
Okada H and Yoshida Y. "Both sides corner stationary shoulder friction stir welding". 13th International Symposium (May.2024).
Okada, H and Yoshida, Y. "Both sides corner stationary shoulder friction stir welding". 13th International Symposium (May.2024).
Okada H. and Yoshida Y.Both sides corner stationary shoulder friction stir welding. 13th International Symposium. 2024 May; .
Okada & Yoshida 2024, 'Both sides corner stationary shoulder friction stir welding', 13th International Symposium. Available from: https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-202405-6Paper03.pdf.
Okada H, Yoshida Y. Both sides corner stationary shoulder friction stir welding. 13th International Symposium. 2024;. https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-202405-6Paper03.pdf.
Okada HH, Yoshida YY. Both sides corner stationary shoulder friction stir welding. 13th International Symposium. 2024 May;. https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-202405-6Paper03.pdf.
Both sides corner stationary shoulder friction stir welding
- Okada H. and
- Yoshida Y.
- Okada H. and
- Yoshida Y.
May 2024
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Description
Corner "Friction Stir Welding" technology is beneficial for T-joints in a variety of products, including aluminum aircraft. Although a stationary shoulder device and Corner Stationary Shoulder FSW (CSS-FSW) are promising technology to realize T-joints from inside, there were many challenges in welding actual products, such as the placement of the backing plate jigs. In consideration of these issues, Kawasaki Heavy Industries, Ltd (KHI) has developed the cutting-edge CSS-FSW, which has two spindles (dual heads).
13th International Symposium, 21-23 May 2024, Session 6: Techniques II, Paper 02
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