Effect of temperature and dissolved oxygen on stress corrosion cracking behavior of P92 ferritic-martensitic steel in supercritical water environment

Author:

Zhang Z.,Hu Z.F.,Zhang L.F.,Chen K.,Singh P.M.

Funder

Shanghai Key Laboratory for R&D and Application of Metallic Functional Materials in Tongji University

Corrosion Laboratory for Nuclear Power Materials in Shanghai Jiao Tong University

Corrosion and Materials Chemistry Research Laboratory in Georgia Institute of Technology

Jiangsu Key Laboratory of Advanced Structural Materials and Application Technology in Nanjing Institute of Technology

National Natural Science Foundation of China

International Exchange Program for Graduate Students, Tongji University

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics

Reference60 articles.

1. Recent progress in solid breeder blanket development at JAEA;Nishitani;Fusion. Sci. Technol.,2007

2. Corrosion and stress corrosion cracking in supercritical water;Was;J. Nucl. Mater,2007

3. SCC behavior of austenitic and martensitic steels in supercritical pressurized water;Muthukumar;J. Nucl. Mater,2011

4. Stress corrosion cracking susceptibility of austenitic stainless steels in supercritical water conditions;Novotny;J. Nucl. Mater,2011

5. Environmentally Assisted Cracking of Sensitized Stainless Steel in Supercritical Water : Effects of Physical Property of Water, GENES4/ANP2003;Watanabe,2003

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