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Anticorrosion performance of the coating/metal system by electrochemical impedance spectra

Anticorrosion performance of the coating/metal system by electrochemical impedance spectra
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摘要 In order to investigate the anticorrosion performance of the organic coating/metal system, electrochemical impedance spectra (EIS) were measured in the 3.5wt% NaCl solution, the chemical component and the formation of corrosion products scale were analyzed by laser Raman microspectroscopy, and the pattern of the organic coating/metal system was observed by scanning electron microscopy (SEM). The characteristics and the delamination process of the organic coating/metal system were investigated systematically, and the emphases were on the transportation of the corrosive medium and the changes of the coating/metal interface. The results show that the impedance decreases at the initial immersion, then increases at the middle-immersion, and again decreases at last, which is related to the corrosion products scale. The concentration of Cl in the coating, which destroys the corrosion products scale, increases with the immersion time. In order to investigate the anticorrosion performance of the organic coating/metal system, electrochemical impedance spectra (EIS) were measured in the 3.5wt% NaCl solution, the chemical component and the formation of corrosion products scale were analyzed by laser Raman microspectroscopy, and the pattern of the organic coating/metal system was observed by scanning electron microscopy (SEM). The characteristics and the delamination process of the organic coating/metal system were investigated systematically, and the emphases were on the transportation of the corrosive medium and the changes of the coating/metal interface. The results show that the impedance decreases at the initial immersion, then increases at the middle-immersion, and again decreases at last, which is related to the corrosion products scale. The concentration of Cl in the coating, which destroys the corrosion products scale, increases with the immersion time.
出处 《Journal of University of Science and Technology Beijing》 CSCD 2008年第4期457-460,共4页 北京科技大学学报(英文版)
关键词 organic coating electrochemical impedance spectra corrosion product scale ANTICORROSION organic coating electrochemical impedance spectra corrosion product scale anticorrosion
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  • 1[1]National Nuclear Safety Administration and State Seismological Bureau. Earthquakes and Associated Topic in Relation to Nuclear Power Plant Siting (HAF0101(1) ). Beijing:China Legality Press, 1994.
  • 2[2]IAEA. Earthquakes and Associated Topics in Relation to Nuclear Power Plant Siting ( Safety Series No. 50-SG-Sl( Rew.1) ), 1991.
  • 3[3]The Office of the Federal Register National Archives and Records Administration. 10 CFR 100 "Reactor Site Criteria" Appendix A "Seismic and Geologic Siting Criteria for Nuclear Power Plants" and Appendix B "Criteria for the Seismic and Geologic Siting of Nuclear Power Plants", 1986.
  • 4[4]U.S. Nuclear Regulatory Commission. Regulatory Guide 1. 165 "Identification and Characterization of Seismic Sources and Determination of Shutdown Earthquake Ground Motion", 1997.
  • 5[5]State Seismological Bureau ed. CHINA GB 50267-97, "Code for Seismic design of Nuclear Power Plants ".Beijing:China Planning Press, 1998.
  • 6Tang, N.; van Ooij, W. J.; G6recki, G. Prog. Org. Coat., 1997,30(4): 255
  • 7van der Weijde, D. H.; van Westing, E. P. M.; de Wit, J. H. W.Corros. Sci., 1994, 36(4): 643
  • 8Loh, W. K.; Crocombe, A. D.; Abdelwahab, M. M.; Watts, J.F.; Shcroft, I. A. J. Adhesion Sci. Technol.,2002, 16(11): 1407
  • 9Brasher, D. M.; Kingsbury, A. H. J. Appl. Chem., 1954, 4:62
  • 10Domingues, L.; Oliveira, C.; Fernandes, J. C. S.; Ferreira,M. G. S. Electrochim. Acta, 2002, 47:2253

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