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Original Articles

Spallation models and their relevance to steam-grown oxides

Pages 155-166 | Published online: 02 Jan 2014

References

  • Armitt, J., Holmes, D. R., Manning, M. I., Meadowcroft, D. B. and Metcalfe, E. The spallation of steam grown oxide from superheater and reheater tube steels. Electric Power Research Institute report FP-686, Palo Alto, California, USA, 1978.
  • Evans, H .E. and Lobb, R. C., Corros. Sci., 24, 209–222 (1984).
  • Quadakkers, W. J. and Bennett, M. J., Mater. Sci. Technol., 10, 126–131 (1994).
  • Barrett, C. A. and Lowell, C. E., Oxid. Met., 9, 307–355 (1997).
  • Barrett, C. A., Carlick. G. and Lowell, C. E., Cyclic oxidation data: turbine alloys, NASA reports NASA TM 83665 and TM 101468, NASA Lewis Research Center, Cleveland, USA, (1989).
  • Moon, Chang-Oh and Lee, Soon-Bok, Oxid. Met., 39, 1–13 (1993).
  • Lowell, C. E., Barrett, C. E., Palmer, R. W., Auping, J. V. and Probst, H. B., Oxid. Met., 36, 81–112 (1991).
  • Smialek, J. L., Acta Mater. , in press.
  • Evans, H. E., Mitchell, G. P., Lobb, R. C. and Owen, D. R. J., Proc. R. Soc. , A440, 1-22 (1993).
  • Evans, H. E. and Strawbridge, A., In: Shores, D. A., Rapp, and Hou, P. Y. (eds), Fundamentals of High Temperature Corro-sion, pp.1–15. VI, The Electrochem. Soc., Pennington, USA, (1997).
  • Evans, H. E. and Taylor, M. P., Surf Coat. Tech., 94-95, 27-33 (1997).
  • Evans, H. E. and Nicholls, J. R. In: Schütze, M., Quadakkers, W. J. and Nicholls, J. R. (eds), Lifetime Modelling of High Temperature Corrosion Processes, pp. 37-49. Maney Publishing for The Institute of Materials, London (2001).
  • Fry, A., Osgerby, S. and Wright, M., Oxidation of alloys in steam environments — a review. National Physical Laboratory report MATC(A)90. Teddington, UK, September 2002.
  • Ehlers, R. J., Ennis, P. J., Singheiser, L., Quadakkers, W. J., and Link, T. In: Schütze, M., Quadakkers, W. J. and Nicholls, J. R. (eds), Lifetime Modelling of High Temperature Corrosion Pro-cesses, pp. 178-193. Maney Publishing for The Institute of Materials, London, (2001).
  • Galerie, A., Henry, S., Wouters, Y., Petit, J-P., Mermoux, M., Chemarin, C and Antoni, L. In: Schütze, M., Quadakkers, W. J. and Nicholls, J. R. (eds), Lifetime Modelling of High Temperature Cor-rosion Processes, pp. 194-205. Maney Publishing for The Institute of Materials, London (2001).
  • Dettenwanger, F., Schorr, M., Enrich, J., Weber, T and Schütze, M. In: Schütze, M., Quadakkers, W. J. and Nicholls, J. R. (eds), Lifetime Mod-elling of High Temperature Corrosion Processes, pp. 206-219. Maney Publishing for The Institute of Materials, London (2001).
  • Evans, U. R., An Introduction to Metallic Corrosion, Edward Arnold, London, 194-195 (1948).
  • Hancock, P. and Hurst, R. C. In: Fontana, M. and Staehle, R. W. (eds), Advances in Corrosion Science and Technology, pp. 1-84. Plenum Press, New York (1974)
  • Hancock, P. In: Environmental Degradation of High Temperature Materials, 2/1-2/9. The Institution of Metallurgists, London (1980).
  • Manning, M. I., Corros. Sci., 21, 301–316 (1981).
  • Schütze, M., Oxid. Met., 24, 199–232 (1985).
  • Schütze, M., Oxid. Met., 25, 409–422 (1986).
  • Hancock, P., Corros. Sci., 35, 979–987 (1993).
  • McLauchlin, I. R., Mater. Sci. Tech., 6, 39–44 (1990).
  • Tien, J. K. and Davidson, J. M. In: Cathcart, J. .V. (ed.), Stress Effects and the Oxidation of Metals, pp. 200-219. AIME, New York (1975).
  • Noden, J. D., Knights, C. J. and Thomas, M. W., Br Corros J, 3, 47–55 (1968).
  • Donaldson, A. T. and Evans, H. E., J Nucl Mater, 99, 38–65 (1981).
  • Saunders, S. R. J., Evans, H. E., Li, M., Gohil, D. D. and Osgerby, S, Oxid. Met., 48, 189–200 (1997).
  • Hou, P. Y. and Stringer, J., Acta Metall Mater, 39, 841–849 (1991).
  • Huntz, A. M., Liu, C., Kornmeier, M and Lebrun, J. L., Corros Sci, 35, 989–997 (1993).
  • Goedjen, J. G., Stout, J. H., Guo Qui and Shores, D. A., Mater. Sci. Eng. , A177, 115-124 (1994).
  • Sarioglu, C., Schumann, E, Blachere, J. R., Pettit, F. S. and Meier, G. H., Mater. High Temp., 17, 109–115 (2000).
  • Tolpygo, V. K. and Clarke, D. R., Acta Mater. , 49, 187 (1998).
  • Tortorelli, P. F., Mater. High Temp. , in press.
  • Bull, S. J., Oxid. Met., 49, 1–17 (1998).
  • Huntz, A-M., Calvarin-Amiri, Evans, H. E. and Cailletaud, G., Oxid. Met. 57, 499–521 (2002).
  • Evans, H. E., Int. Mater. Rev., 40, 1–40 (1995).
  • Rhines, F. N. and Wolf, J. S., Metall Trans, 1, 1701–1710 (1970).
  • Suo, Z., J. Mech. Phys. Solids, 43, 829–846 (1995).
  • Crouch, A. G., J. Amer. Ceramic Soc., 55, 558–563 (1972).
  • Crouch, A. G. and Robertson, J. Creep and oxygen diffusion in magnetite. National Power Report ESTDILI01071R89. Leatherhead, U.K, December 1989.
  • Foldyna, V., Microstructural Stability of Ferritic 9-12% Chromium Steels, EC report under Contract No. COST-94-0076-CZ(DG 12CSMC), (1994).
  • Robertson, J. and Manning, M. I., Mater. Sci. Technol., 6, 81–91 (1990).
  • Evans, H. E., Mater. Sci. Technol., 4, 415–420 (1988).
  • Evans, H. E. and Lobb, R. C., in Eurocorr '87, Dechema, Frankfurt (1987).
  • Wilber, J. P., Bennett, M. J. and Nicholls, J. R. In: Schütze, M. and Quadakkers, W. J. (eds) Cyclic Oxidation of High Temperature Ma-terials, pp. 133-147. IOM Communications, London (1999).
  • Timoshenko, S. Theory of Elastic Stability, pp. 367. McGraw-Hill, New York (1936).
  • Osgerby, S., Mater. High Temp., 17, 307–310 (2000).
  • Wells, C. H., Follansbee, P. S. and Dills, R. R. In: Cathcart, J. (ed.), Stress Effects and the Oxidation of Metals, pp. 220-244. AIME, New York (1975).
  • Evans, H. E., Mechanisms of Creep Fracture, Elsevier Applied Sci-ence, London (1984).
  • Timoshenko, S. and Goodier, J. N., Theory of Elasticity, p. 408. McGraw-Hill, New York (1951).
  • Evans, A. G., Crumley, G. B. and Demaray, R. E., Oxid. Met., 20, 193–216 (1983).
  • Schütze, M., Mater. Sci. Technol., 4, 407–414 (1988).
  • Niranatlumpong, P., Ponton, C. B. and Evans, H. E., Oxid. Met., 53, 241–258 (2000).
  • McCartney, L. N., this workshop.
  • Hancock, P. and Nicholls, J. R., Mater. Sci. Technol., 4, 398–406 (1988).
  • Nagl, W. M., Evans, W.T, Hall, D. J. and Saunders, S. R. J., J.Phys. (France) IV, Colloq.C9, Supp.13, 3, 933-941 (1993).
  • Schütze, M., Int.J.Pressure Vessels Piping, 47, 293–315 (1991).
  • Evans, H. E., Nicholls, J. R. and Saunders, S. R. J., Solid State Phenomena, 41, 137–156 (1995).
  • Grosskreutz, J. C., J. Electrochem. Soc., 116, 1232–1237 (1969).
  • Mahmood, K., PhD thesis, University of Cranfield, UK (1988).
  • McCartney, L. N., Schoeppner, G. A. and Becker, W., Composite Science and Technology, 60, 2347–2359 (2000).
  • Nagl, MM., Saunders, S. R. J., Evans, W. T. and Hall, D. J., Corros. Sci., 35, 965–977 (1993).
  • Damerell, G. Assessment of simple models of the cracking of coat-ings strained under tension. National Physical Laboratory report CMMT(A)39. Teddington, UK, September 1996.

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