Open Access

Influence of surface treatment on corrosion resistance of steel in liquid Pb


Cite

1. J. Zhang: A review of steel corrosion by liquid lead and lead-bismuth, Corrosion Science, 2009, 38, 1207–1227.10.1016/j.corsci.2009.03.013Search in Google Scholar

2. A. Hojná, P. Halodová, L. Rozumová, M. Chocholoušek, Z. Špirit: Environmentally assisted cracking of the T91 in heavy liquid metals, Corrosion Reviews, 2020, 38, 183–194.10.1515/corrrev-2019-0035Search in Google Scholar

3. G. Müller, A. Heinzel, J. Konys, G. Schumacher, A. Weisenburger, F. Zimmermann, V. Engelko, A. Rusanov, V. Markov: Results of steel corrosion tests in flowing liquid Pb/Bi at 420-600 °C after 200 h, J. Nuc. Mat., 2002, 301, 40–46.10.1016/S0022-3115(01)00725-5Search in Google Scholar

4. A. Weisenburger, K. Aoto, G. Müller, A. Heinzel, G. Schumacher, T. Furukawa: Behaviour of chromium steels in liquid Pb-55.5Bi with changing oxygen content and temperature, J. Nuc. Mat., 2006, 358, 69–76.10.1016/j.jnucmat.2006.07.001Search in Google Scholar

5. A. Kimura, R. Kasada, N. Iwata, H. Kishimoto, C.H. Zhang, J. Isselin, P. Dou, J.H. Lee, N. Muthukumar, T. Okuda, M. Inoue, S. Ukai, S. Ohnuki, T. Fujisawa, T.F. Abe: Development of Al added high-Cr ODS steels for fuel cladding of next generation nuclear systems, J. Nuc. Mat., 2011, 417, 176–179.10.1016/j.jnucmat.2010.12.300Search in Google Scholar

6. L. Tan, M.T. Machut, K. Sridharan, T.R. Allen: Corrosion behavior of a ferritic/martensitic steel HCM12A exposed to harsh environments, J. Nuc. Mat., 2007, 371, 161–170.10.1016/j.jnucmat.2007.05.001Search in Google Scholar

7. J. Lim, I.S. Hwang, J.H. Kim: Design of alumina forming FeCrAl steels for lead or lead-bismuth cooled fast reactors, J. Nuc. Mat., 2013, 441, 650–660.10.1016/j.jnucmat.2012.04.006Search in Google Scholar

8. Y. Yano, S. Yamashita, S. Ohtsuka, T. Kaito, N. Akasaka, T. Shibayama, S. Watanabe, H. Takahashi: Mechanical properties and microstructural stability of 11Cr-ferritic/martensitic steel cladding under irradiation, J. Nuc. Mat., 2010, 398, 59–63.10.1016/j.jnucmat.2009.10.010Search in Google Scholar

9. V. Tsisar, C. Schroer, O. Wedemeyer, A. Skrypnik, J. Konys: Corrosion behavior of austenitic steels 1.4970, 316L and 1.4571 in flowing LBE at 450 and 550 °C with 10-7 mass% dissolved oxygen, J. Nuc. Mat., 2014, 454, 332–342.10.1016/j.jnucmat.2014.08.024Search in Google Scholar

10. A. Heinzel, A. Weisenburger, G. Müller: Corrosion behavior of austenitic steels in liquid lead bismuth contining 10-6 wt% and 10-8 wt% oxygen at 400-500 °C, J. Nuc. Mat., 2014, 448, 163–171.10.1016/j.jnucmat.2014.01.046Search in Google Scholar

11. F. Gnecco, E. Ricci, C. Bottino, A. Passerone: Corrosion behavior of steels in lead-bismuth at 823 K, J. Nuc. Mat., 2004, 335, 185–188.10.1016/j.jnucmat.2004.07.013Search in Google Scholar

12. K. Lambrinou, V. Koch, G. Coen, J. Van den Bosch, C. Schroer: Corrosion scales on various steels after exposure to liquid lead-bismuth eutectic, J. Nuc. Mat., 2014, 450, 244–255.10.1016/j.jnucmat.2013.09.034Search in Google Scholar

13. M. Del Giacco, A. Weisengurger, A. Jianu, F. Lang, G. Mueller: Influence of composition and microstructure on the corrosion behavior of different Fe–Cr–Al alloys in molten LBE, J. Nuc. Mat., 2012, 421, 39–46.10.1016/j.jnucmat.2011.11.049Search in Google Scholar

14. A. Weisenburger, A. Jianu, S. Doyle, M. Brunus, R. Fetzer, A. Heinzel, M. DelGiacco, W. An, G. Müller: Oxide scales formed on Fe-Cr-Al-based model alloys exposed to oxygen containing molten lead, J. Nuc. Mat., 2013, 437, 282–292.10.1016/j.jnucmat.2013.02.044Search in Google Scholar

15. A. Weisenburger, G. Müller, A. Heinzel, A. Jianu, H. Muscher, M. Kieser: Corrosion, Al containing corrosion barriers and mechanical properties of steels foreseen as structural materials in liquid lead alloy cooled nuclear systems, Nuc. Eng. Design, 2011, 241, 1329–1334.10.1016/j.nucengdes.2010.08.005Search in Google Scholar

16. A. Heinzel, M. Kondo, M. Takahashi: Corrosion of steels with surface treatment and Al-alloying by GESA exposed in lead-bismuth, J. Nuc. Mat., 2006, 350, 264–270.10.1016/j.jnucmat.2006.01.014Search in Google Scholar

17. V. Engelko, G. Mueller, A. Rusanov, V. Markov, K. Tkachenko, A. Weisenburger, A. Kashtanov, A. Chikiryaka, A. Jianu: Surface modification/alloying using intense pulsed electron beam as a tool for improving the corrosion resistance of steels exposed to heavy liquid metals, J. Nuc. Mat., 2011, 415, 270–275.10.1016/j.jnucmat.2011.04.030Search in Google Scholar

18. S. Majumdar, A. Borgohain, V. Kain: Interaction between liquid lead-bismuth eutectic and aluminized Inconel 625 superalloy at 600 and 850 °C, J. Nuc. Mat., 2019, 518, 54–61.10.1016/j.jnucmat.2019.02.046Search in Google Scholar

19. U. Jain, A. Mukjerjee, S. Sonak, S. Kumar, R. Mishra,”Interaction of alumina with liquid Pb83Li17 alloy, Fusion Eng. And Design, 2014, 2554-2558.10.1016/j.fusengdes.2014.06.007Search in Google Scholar

20. Ch. Sun, X. Zhou, Ch. Xie: Effect of processing conditions on Al-based amorphous/nanocrystalline coating by cold-spraying, Surf. Coat. Tech., 2019, 362, 97–104.10.1016/j.surfcoat.2019.01.096Search in Google Scholar

21. E. Miorin, F. Montagner, V. Zin, D. Giuranno, E. Ricci, M. Pedroni, V. Spanpinato, E. Vasallo, S.M. Deambrosis: Al rich PVD protective coatings: A promising approach to prevent T91 steel corrosion in stagnant liquid lead, Surf. Coat. Tech., 2019, 377, 124–890.10.1016/j.surfcoat.2019.124890Search in Google Scholar

22. E. Vassallo, M. Pedroni, V. Spampinato, S.M. Deambrosis, E. Miorin, E. Ricci, V. Zin: Effect of alumina coatings on corrosion protection of steels in molten lead, J. Vac. Sci. Technol., 2018, 36.10.1116/1.4993286Search in Google Scholar

23. F. García Ferré, A. Mairov, D. Iadicicco, M. Vanazzi, S. Bassini, M. Utili, M. Tarantino, M. Bragaglia, F.R. Lamastra, F. Nanni, L. Ceseracciu, Y. Serruys, P. Trocellier, L. Beck, K. Sridharan, M.G. Geghi, F. Di Fonzo: Corrosion and radiation resistant nanoceramic coatings for lead fast reactors, Cor. Sc., 2017, 124, 80–92.10.1016/j.corsci.2017.05.011Search in Google Scholar

24. P. Lorusso, S. Bassini, A. Del Nevo, I. Di Piazza, F. Giannetti, M. Tarantino, M. Utili, “GEN-IV LFR development: Status & perspectives, Prog. Nuc. En., 2018, 105, 318–331.10.1016/j.pnucene.2018.02.005Search in Google Scholar

25. F.G. Ferré, M. Ormellese, F. Di Fonzo, M.G. Beghi: Advanced Al2O3 coatings for high temperature operation of steels in heavy liquid metals: a preliminary study, Cor. Sci., 2013, 77, 375–378.10.1016/j.corsci.2013.07.039Search in Google Scholar

26. F.G. Ferré, E. Bertarelli, A.Chiodoni, D. Carnelli, D. Gastaldi, P. Vena, M.G. Beghi, F. Di Fonzo: The mechanical properties of a nanocrystalline Al2O3/a-Al2O3 composite coating measured by nanoindentation and Brillouin spectroscopy, A. Mat., 2013, 61, 2662–2670.10.1016/j.actamat.2013.01.050Search in Google Scholar

27. F.G. Ferré, A. Mairov, D. Iadicicco, M. Vanazzi, S. Bassini, M. Utili, M. Tarantino, M. Bragaglia, F.R. Lamastra, F. Nanni, L. Ceseracciu, Y. Serruys, P. Trocellier, L. Beck, K. Sridharan, M.G. Beghi, F. Di Fonzo: Corrosion and radiation resistant nanoceramic coatings for lead fast reactors, Cor. Scie., 2017, 124, 80–92.10.1016/j.corsci.2017.05.011Search in Google Scholar

28. R. Kasada, P. Dou: Sol-gel composite coatings as anti-corrosion barrier for structural materials of lead-bismuth eutectic cooled fast reactor, J. Nuc. Mat., 2013, 440, 647–653.10.1016/j.jnucmat.2013.06.014Search in Google Scholar

29. P. Dou, P. Kasada: Preliminary study on nano- and micro-composite sol-gel based alumina coatings on structural components of lead-bismuth eutectic cooled fast breeder reactors, J. Nuc. Mat., 2011, 409, 177–182.10.1016/j.jnucmat.2010.11.022Search in Google Scholar

30. Q. Jiao, F. Guo, Ch. Li, G. Zheng, J. He, H. Zhao, Y. Qin, F. Yin: Effects of Mo addition on tribological performance of plasma- sprayed Ti-Si-C coatings, Ceramics International, 2020, 46, 12948–12954.10.1016/j.ceramint.2020.02.064Search in Google Scholar

31. M. Braic, A. Vladescu, A.C. Parau, C.I. Pruncu, V. Braic: Tribological properties of alloed TiSi-stainless steel carbide coatings deposited by reactive cathodic arc method, Wear, 2020, 460–461, 203456.10.1016/j.wear.2020.203456Search in Google Scholar

32. S.K. Mishra, V.A. Sherbakov: In-situ synthesis of Ti-Si-C fine grained composite with different amount of TiC: Microstructure and mechanical properties, Int. J. Ref. Met. H. Mat., 2016, 59, 19–25.10.1016/j.ijrmhm.2016.05.008Search in Google Scholar

33. C. Vetelaru, M. Balaceanu, A. Parau, C.R. Luculescu, A. Vladescu: Investigation of nanostructured TiSiC-Zr and TiSiC-Cr hard coatings for industrial applications, Surf. Coat. Tech., 2014, 251, 21–28.10.1016/j.surfcoat.2014.04.001Search in Google Scholar

34. M. Braic, A. Vladescu, M. Balaceanu, C. Luculescu, S.C. Padmanabhan, L. Constantin, M.A. Morris, V. Braic, C.E.A. Grigorescu, P. Ionescu, M.D.Dracea, C. Logofatu: A comparative study of the structural, mechanical and tribological characteristics of TiSiC–Cr coatings prepared in CH4 and C2H2 reactive atmosphere by cathodic vacuum arc, J. Nuc. Mat., 2017, 400, 318–328.10.1016/j.apsusc.2016.12.160Search in Google Scholar

35. K.A. Kuptsov, Ph.V. Kiryukhantsev-Korneev, A.N. Sheveyko, D.V. Shtansky: Comparative study of electrochemical and impact war behavior of TiCN, TiSiCN, TiCrSiCN, and TiAlSiCN, Surf. Coat. Tech., 2013, 216, 273–281.10.1016/j.surfcoat.2012.11.058Search in Google Scholar

36. S.K. Mishra, Hkusboo, V.A. Sherbakov: Fabrication of in-situ Ti-Si-C fine grained composite by the self propagating high temperature synthesis (SHS) process, Int. J. Ref. Met. H. Mat., 2011, 29, 209–213.10.1016/j.ijrmhm.2010.10.008Search in Google Scholar

37. J. Lauridsen, P. Eklund, T. Joelsson, H. Ljungcranz, Å. Öberg, E. Lewin, U. Jansson, M. Beckers, H. Högberg, L. Hultman: High-rate deposition of amorphous and nanocomposite Ti-Si-C multifunctional coatings, Surf. Coat. Tech., 2010, 205, 299–305.10.1016/j.surfcoat.2010.06.051Search in Google Scholar

38. A. Iveković, S. Novak, G. Dražić, D. Blagoeva, S. Gonzalez de Vincente: Current status and prospects of SiCf/SiC for fucion structural application, J. Eu. Cer. Soc., 2013, 33, 1577–1589.10.1016/j.jeurceramsoc.2013.02.013Search in Google Scholar

eISSN:
1804-1213
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Industrial Chemistry, Chemical Engineering, Materials Sciences, Ceramics and Glass