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Technical Paper

Summary of Denting Mechanism and Kinetic Studies with Seawater

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Pages 129-150 | Published online: 12 May 2017

References

  • “Steam Generator Update,” Westinghouse Electric Corporation, Pittsburgh, Pennsylvania (July 1976).
  • E. P. MORGAN, F. W. PEMENT, J. N. ESPOSITO and R. G. ASPDEN, “Examination of Denting,” presented at Research in Progress, San Francisco, California, March 1970, National Association of Corrosion Engineers.
  • M. J. WOOTTEN, G. ECONOMY, A. R. PEBLER and W. T. LINDSAY, “Laboratory Investigations of the Denting Phenomenon in Nuclear Steam Generators,” Mater. Perform., 17, 30 (1978).
  • A. R. VAIA, G. ECONOMY, M. J. WOOTTEN and R. G. ASPDEN, “Denting of Steam Generator Tubes in PWR Plants,” Mater. Perform., 19, 9 (1980).
  • A. R. VAIA, G. ECONOMY, M. J. WOOTTEN and R. G. ASPDEN, “Corrosion Performance of 12 Percent Chromium Stainless Steels in High Temperature Chloride Solution,” paper 99, presented at Corrosion 79, National Association of Corrosion Engineers.
  • E. C. POTTER and G. M. W. MANN, “A Laboratory Simulation of Waterside Boiler Corrosion,” Chem. & Ind., p. 1768 (1963).
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  • R. J. BIERNAT and R. G. ROBINS, “High Temperature Potential/pH Diagrams for the Iron-Water and Iron-Water-Sulfur Systems,” Electrochem. Acta, 17, 1261 (1972).
  • P. H. EFFERTZ, “Morphology and Composition of Magnetite Layers on Boiler Tubes Following Long Exposure,” Proc. 5th Int. Congress Metallic Corrosion, 1972, p. 920–924.
  • J. E. CASTLE and H. G. MASTERSON, “The Role of Diffusion in the Oxidation of Mild Steel in High Temperature Aqueous Solutions,” Corros. Sci., 6, 93 (1966).
  • M. A. SCHEIMAN, “Kinetics of the Chloride Induced Oxidation of Iron at 300°C,” Corros. Sci., 12, 477 (1972).
  • G. BIANCHI, L. FORMARO, F. MAZZA and S. TORCHIO, “An Electrochemical Model for the Interpretation of the Morphology of the Laminated Magnetite in the Corrosion on Load of Boiler Tubes,” Proc. 7th Int. Conf. Metal and Corrosion, Rio de Janeiro, Brazil, 1978, 2, 8, p. 1489.

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