Improvement in the Long Term Creep Rupture Strength of SUS 316 Steel for Fast Breeder Reactors by Nitrogen Addition
Author:
Affiliation:
1. Stainless Steel&Titanium Research Lab., Nippon Steel Corp.
2. Analysis Research Lab., Nippon Steel Corp.
3. Kobe Shipyard and Engine Works, Mitsubishi Heavy Industries, Ltd.
4. Takasago Techinical Institute,Mitsubishi Heavy Industries, Ltd.
Publisher
Iron and Steel Institute of Japan
Subject
Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics
Link
https://www.jstage.jst.go.jp/article/tetsutohagane1955/75/8/75_8_1346/_pdf
Reference5 articles.
1. 5) R. RAJ : J. Engineering Materials and Technology (1976) April, p. 132
2. 6) M. DEIGHTON : J. Iron Steel Inst., 208 (1970), p. 1012
3. 7) D. G. MORRIS and D. R. HARRIES : Met. Sci., 12 (1978), p. 542
4. 8) G. ALDEN and B. ARONSSON : Proc. on "Creep Strength in Steel and High-Temperature Alloys" (1972), p. 67
5. 10) J. A. HORAK, V. K. SIKKA and D. T. RASKE : Proc. Int. Conf. on "Nuclear Power Plant Aging" (1985), p. 301
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1. Effect of sodium on repair weldability of SUS316FR for a fast breeder reactor;Welding International;2015-04-27
2. Effect of Cold-working and Mo Addition on Creep Behavior in High Mn Austenitic Stainless Steels;Tetsu-to-Hagane;2015
3. Effect of Local Fluctuation of the High Temperature Strength Properties in Weld Metal on Creep Deformation Behavior of Multi-Layer Welded Joint;Journal of the Society of Materials Science, Japan;2005
4. Effects of Silicon, Molybdenum, and Nitrogen on Elevated Temperature Properties of Low Carbon Austenitic Stainless Steels;Tetsu-to-Hagane;2005
5. Effects of Carbon, Molybdenum, and Phosphorus Contents on Creep Rupture Properties of Low Carbon Medium Nitrogen Type 316 Stainless Steels;Journal of the Japan Institute of Metals;2000
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