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Corrosion Engineering, Science and Technology
The International Journal of Corrosion Processes and Corrosion Control
Volume 50, 2015 - Issue 2
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Research Papers

Characterisation of Fe–20Cr–6Al–Y model alloy in supercritical water

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Pages 137-148 | Received 12 May 2014, Accepted 17 Jun 2014, Published online: 01 Jul 2014

References

  • ‘A Technology Roadmap for Generation IV Nuclear Energy System’, GIF 002-00, US DOE Nuclear Energy Research Advisory Committee and Gen IV International Forum (GIF), 2002.
  • Buongiorno J , W. Corwin, P. MacDonald, L. Mansur, R. Nanstad, R. Swindeman, A. Rowcliffe, G. Was, D. Wilson and I. Wright: ‘Supercritical water reactor: survey of materials experience and R&D needs to assess viability’, INEEL/EXT-03-00693, Rev. 1, 2003.
  • Guzonas D: ‘SCWR materials and chemistry: status of ongoing research’, GIF Symp., Paris, France, September 2009, Generation IV International Forum, p.163–172.
  • Yetisir M, Gaudet M and Rhodes D: ‘Development and integration of Canadian SCWR concept with counter-flow fuel assembly’, ISSCWR-6, Shenzhen, China, March 2013, China Guangdong Nuclear Power Holding Co., Ltd (CGNPC) and China Nuclear Energy Association, Paper No. ISSCWR6–13059, p. 1–9.
  • Was GS, Ampornrat P and Gupta G: ‘Corrosion and stress corrosion cracking in supercritical water’, J. Nucl. Mater., 2007, 371, 176–201.
  • Kaneda J, Kasahara S, Kano F, Saito N, Shikama T and Matsui H: ‘Materials development for supercritical water-cooled reactor’, Proc. 5th Int. Symp. SCWR (ISSCWR-5), Vancouver, BC, Canada, March 2011, Canadian Nuclear Society, 102.
  • Zhang L, Bao Y, Li L and Tang R: ‘Progress on the corrosion screening tests and materials selection for supercritical water cooled reactors’, Proc. 5th Int. Symp. SCWR (ISSCWR-5), Vancouver, BC, Canada, March 2011, Canadian Nuclear Society, 117.
  • Teysseyre S, Jiao S, West E and Was GS: ‘Effect of irradiation on stress corrosion cracking in supercritical water’, J. Nucl. Mater., 2007, 371, (1–3), 107–117.
  • Kritzer P: ‘Corrosion in high-temperature and supercritical water and aqueous solutions: a review’, J. Supercrit. Fluids, 2004, 29, 1–29.
  • MacDonald PE: ‘Supercritical water cooled reactor – a progress report’, INEEL/EXT-03-01210, 2003.
  • Peng QJ, Teysseyre S, Andresen PL and Was GS: ‘Stress corrosion crack growth in 316 stainless steel in supercritical water’, Corrosion, 2007, 63, (11), 1033–1040.
  • Chen Y, Sridharan K and Allen TR: ‘Corrosion behaviour of NF616 and D9 as candidate alloys for supercritical water reactors’, NACE Int., Houston, TX, USA, April 2005, Paper 05391.
  • Yi Y, Lee B, Kim S and Jang J: ‘Corrosion and corrosion fatigue behaviors of a 9Cr steel in a supercritical water condition’, Mater. Sci. Eng. A, 2006, A429, 161–168.
  • Greenwood LR: ‘A new calculation of thermal neutron damage and helium production in nickel’, J. Nucl. Mater., 1983, 115, 137–142.
  • Selvig A, Huang X, Kim D.-J and Guzonas D: ‘Oxide formation on IN 625 and plasma sprayed NiCrAlY after high density and low density supercritical water testing’, J. Mater. Corros., 2012, DOI: 10.1002/maco.201206613.
  • ‘ASME’s Boiler and Pressure Vessel Code (BPVC), Section III – construction of nuclear facility components’, available at: www.goasme.org/bpvc13
  • Aguero A, Muelas R and Gonzalez V: ‘HVOF coatings for steam oxidation protection’, Mater. Corros., 2008, 59, (5), 393–401.
  • Saunders SRJ, Monteiro M and Rizzo F: ‘The oxidation behaviour of metals and alloys at high temperatures in atmospheres containing water vapour: a review’, Prog. Mater. Sci., 2008, 53, 775–837.
  • Allam I, Whittle D and Stringer J: ‘The oxidation behavior of CoCrAl systems containing active element additions’, Oxidat. Met., 1978, 12, (1), 35–67.
  • Huang X and Guzonas D: ‘Characterization of Ni-20Cr-5Al model alloy in supercritical water’, J. Nucl. Mater., 2014, 445, (1), 298–307.
  • Xu P, Zhao L, Sridharan K and Allen T: ‘Oxidation behaviour of grain boundary engineered alloy 690 in supercritical water environment’, J. Nucl. Eng., 2012, 422, 143–151.
  • Hansson AN, Pantleon K, Grumsen FB and Somers MA: ‘Microstructure evolution during steam oxidation of a Nb stabilized austenitic stainless steel’, Oxidat. Met., 2010, 73, 289–309.
  • Liang X, Zhong Y, Zhu S, He H, Yuan P, Zhu J and Jiang Z: ‘The valence and site occupancy of substituting metals in magnetite spinel structure Fe3–xMxO4 (M = Cr, Mn, Co and Ni) and their influence on thermal stability: an XANES and TG-DSC investigation’, Solid State Sci., 2013, 15, 115–122.
  • Bischoff J, Motta A, Eichfeld C, Comstock R, Cao G and Allend T: ‘Corrosion of ferritic-martensitic steels in steam and supercritical water’, J. Nucl. Mater., 2012 , 441, (1–3), 604–611.
  • Chen M, Shen M, Zhu S, Wang F and Wang X: ‘Effect of sand blasting and glass matrix composite coating on oxidation resistance of a nickel-based superalloy at 1000°C’, Corros. Sci., 2013, 73, 331–341.
  • Sisse S, Laffont L, Tanguy B, Lafont M.-C and Andrieu E: ‘Effect of surface preparation on the corrosion of austenitic stainless steel 304L in high temperature steam and simulated PWR primary water’, Corros. Sci., 2012, 56, 209–216.
  • Ruther WE and Greenberg S: ‘Corrosion of steels and nickel alloys in superheated steam’, J. Electrochem. Soc., 1964, 111, (10), 1116–1121.
  • Guzonas DA and Cook W: Corros. Sci., 2012, 65, 48–66.
  • Tan L, Ren D, Sridharan K and Allen TR: ‘Effect of shot peening on the oxidation of alloy 800H exposed to supercritical water and cyclic oxidation’, Corros. Sci., 2008, 50, 2040–2046.
  • Otsuka N and Fujikawa H: ‘Scaling of austenitic stainless steels and nickel base alloys in high temperature steam at 973K’, Corrosion, 1991, 47, (4), 240–248.
  • Ren X, Sridharan K and Allen TR: ‘Effect of grain refinement on corrosion of ferritic martensitic steels in supercritical water environment’, Mater. Corros., 2010, 6, (9), 748–755.
  • Tan L, Ren X, Sridharan K and Allen TR: ‘Corrosion behaviour of Ni-base alloys for advanced high temperature water-cooled nuclear reaction’, Corros. Sci., 2008, 50, 3056–3062.
  • Allen T, Sridharan K, Chen Y, Tan L, Ren X and Kruizenga A: ‘Research and development on materials corrosion issues in supercritical water environment’, ICPWS XV, Berlin, Germany, September 2008, p. 1–12.
  • Nie SH, Chen Y, Ren X, Sridharan K and Allen TR: ‘Corrosion of alumina-forming austenitic steel Fe-20Ni-14Cr-3Al-0·6Nb-0·1Ti’, J. Nucl. Mater., 2010, 399, 231–235.
  • Penttila S: ‘Materials for the SCWR concept’, GEN4FIN Seminar, Lappeenranta, Finland, October 2008, VTT Technical Research Centre of Finland, p. 1–29.

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