Intergranular stress corrosion cracking behavior of niobium-added Type 308 stainless steel weld overlay metal in a simulated BWR environment

Author:

Hamada Ikuhisa,Yamauchi Kiyoshi

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference16 articles.

1. ASME section II, SFA-5.9, 1998. Specification for Base Stainless Steel Welding Electrodes and Rods. ASME, New York, NY.

2. Brooks, J.A., Lippold, J.C., 1993. ASM Handbook, vol. 6, Welding, Brazing, and Soldering, Selection of Wrought Austenitic Stainless, ASM International, Material Park, OH, pp. 456–470.

3. Hamada, I., Yamauchi, K., 2001. Mechanism of sensitization and healing of ferrite-austenite duplex stainless steel weld metals, in: 10th International Conference on Environmental Degradation of Materials in Nuclear Power Systems—Water Reactors, Houston NACE International, American Nuclear Society, and The Minerals, Metals & Materials Society, August 5–9, 2001. Lake Tahoe, Nevada, Paper No. 35.

4. Niobium added Type 308 stainless steel weld metal resistant to sensitization by postweld heat treatment and low temperature aging;Hamada;Corrosion,2002

5. Hamada, I., Yamauchi, K., 2002b. Intergranular stress corrosion cracking behavior of two-phase stainless steel weld metals in a simulated BWR environment. Metall. Trans. A (in review).

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