Aluminum alloy corrosion and precipitation in high-temperature flow loop simulating environment after loss-of-coolant accidents

Author:

Wang Da,Leong Amanda,Zhuo Weiqian,Wu Huali,Yang Qiufeng,Zhang Jinsuo

Funder

Virginia Polytechnic Institute and State University

North China Electrical Power University

Publisher

Elsevier BV

Subject

Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials

Reference40 articles.

1. NRC, Potential impact of debris blockage on emergency recirculation during design basis accidents at Pressurized Water Reactors, Nuclear Regulatory Commission, 2004.

2. A.E. Lane, T.S. Andreychek, W.A. Byers, E.J. Lahoda, R.D. Reid, WCAP-16530-NP-A: evaluation of post-accident chemical effects in containment sump fluids to support GSI-191, Westinghouse, 2008.

3. J.C. Griess, A.L. Bacarella, Design considerations of reactor containment spray systems – part III: the corrosion of materials in spray solutions, Oak Ridge National Laboratory, 1969.

4. J. Piippo, T. Laitinen, P. Sirkai, Corrosion behavior of Zinc and Aluminumin simulated nuclear accident environments, Finnish Center for Radiation and Nuclear Safety, 1997.

5. V. Jain, X. He, Y.M. Pan, Corrosion rate measurements and chemical speciation of corrosion products using thermodynamic modeling of debris components to support GSI-191, Center for Nuclear Waste Regulatory Analyses, 2005.

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