Hot Cracking Susceptibility of Extra High-Purity Type 304 and 316 Stainless Steels
Author:
Affiliation:
1. Graduate School of Eng., Osaka Univ.
2. Fukui University of Technology
3. Japan Atomic Energy Agency
4. Kobe Steel, Ltd.
Publisher
Japan Welding Society
Subject
Metals and Alloys,Surfaces, Coatings and Films,Mechanical Engineering,Mechanics of Materials
Link
https://www.jstage.jst.go.jp/article/qjjws/33/3/33_295/_pdf
Reference25 articles.
1. 1) Y. Nakao, K. Nishimoto and W. P. Zhang: "Effect of Rapid Solidification by Laser Surface Melting on Solidification Modes, -Study on Laser Surface Modedication of Stainless Steels (Report 1)-", Quar. J. JWS, 7-3 (1989), p.414-421 (in Japanese).
2. 2) E. J. Chun, H. Baba, K. Nishimoto and K. Saida: "Precipitation of Sigma and Chi Phases in δ-ferrite of Type 316FR Weld Metals", Mater. Characterization, 86 (2013), p.152-166.
3. 3) J. Nakayama, T. Noura, H. Yamada and K. Yamamoto: "Extra High Purity Alloy EHP for Next Generation Nuclear Systems", Kobe Steel Eng. Rept., 59-2 (2009), p.94-97 (in Japanese).
4. 5) K. Nishimoto, K. Saida, Y. Okabe, K. Hata, K. Kiuchi and J. Nakayama: "Hot Cracking Behaviour and Susceptibility of Extra High-Purity Type 310 Stainless Steels", Sci. & Technol. Welding & Joining, 15-1 (2010), p.87-96.
5. 6) K. Saida, H. Matsushita, K. Nishimoto, K. Kiuchi and J. Nakayama: "Quantitative Influence of Minor and Impurity Elements on Hot Cracking Susceptibility of Extra High-Purity Type 310 Stainless Steel", Quar. J. JWS, 31-1 (2013), p. 56-65 (in Japanese).
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