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Electrochemical investigation of passive film properties on low alloy steel rebars in cement extract and saturated Ca(OH)2 solutions

  • Shimin Li
  • , Wei Liu*
  • , Yueming Fan
  • , Yutao Wang
  • , Banthukul Wongpat
  • , Baojun Dong
  • , Yonggang Zhao
  • , Zhentao Wang
  • , Yanliang Zhou
  • , Thee Chowwanonthapunya
  • , Xiaogang Li
  • *Corresponding author for this work
  • University of Science and Technology Beijing
  • Kasetsart University

Research output: Contribution to journalArticlepeer-review

Abstract

In this paper, the differences in the passivation behaviours of low alloy steel rebars in saturated Ca(OH)2 solution (SC) and cement extract solution (CE) were studied by Mott-Schottky, XPS and cyclic potentiodynamic polarisation (CPP) analyses. The results indicate that the formation rate of a passive film in SC is faster than that in CE at the initial stage of immersion. With the same passivation time, the passive film that formed in CE has a lower self-corrosive current density, a greater film resistance, a thicker film and better stability than the film formed in SC. The passive films formed in SC and CE have the same composition, and they both exhibit n-type semiconductor characteristics, but the passive films formed in CE have a lower donor carrier concentration and better compactness than those formed in SC. The unpassivated steel has a higher critical Cl-concentration in SC. However, after the steel rebar is passivated for 7 days, the critical Cl-concentration in CE is higher than that in SC. The critical Cl-concentration of passivated steel rebars is 4 times higher than that of unpassivated steel rebars, which indicates that passive films can significantly improve the pitting corrosion resistance of steel rebars.

Original languageEnglish
Pages (from-to)10983-10999
Number of pages17
JournalInternational Journal of Electrochemical Science
Volume14
DOIs
StatePublished - 2019
Externally publishedYes

Keywords

  • Critical Cl-concentration
  • Cyclic potentiodynamic polarisation
  • Low alloy steel rebars
  • Mott-schottky
  • Passive film

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