Effect of Pressure on the Corrosion of Materials in High Temperature Water

Author:

Li W.,Woo O. T.,Guzonas D.,Li J.,Huang X.,Sanchez R.,Bibby C. D.

Publisher

Springer International Publishing

Reference16 articles.

1. T.R. Allen, Y. Chen, X. Ren, K. Sridharan, L. Tan, G.S. Was, E. West, E. and D.A. Guzonas, “Material Performance in Supercritical Water”. In: Konings, R.J.M. (Ed.), Comprehensive Nuclear Materials, Elsevier, Amsterdam, 5 (2012), 279.

2. H.S. Cho, A. Kimura, S. Ukai and M. Fujiwara, “Corrosion Properties of Oxide Dispersion Strengthened Steels in Super-critical Water Environment”, J. Nucl. Mater. 329–330 (2004) 387–391.

3. A. Kimura et al., “Fuel Cladding Materials R&D for High Burn-up Operation of Advanced Water-cooling Nuclear Energy Systems”, Proc. ICAPP’05, Seoul, Korea, Paper 5338, May 15–19, 2005.

4. G.T. Hong, D.W. Ordway and V.A. Ziberstein, First Int. Workshop on Supercritical Water Oxidation, Jacksonville, Florida, Feb 6–9, 1995.

5. P. Kritzer, N. Boukis and E. Dinjus, “The Corrosion of Alloy 625 (NiCr22Mo9Nb; 2.4856) in High-temperature, High Pressure Aqueous Solutions of Phosphoric Acid and Oxygen. Corrosion at Sub- and Supercritical Temperatures”, NACE, Houston, TX Corrosion 98, Paper No. 415, 1998.

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1. Effect of Steam Pressure on the Oxidation Behaviour of Alloy 625;The Minerals, Metals & Materials Series;2017

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