全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

Experimental Study of the Anti-Corrosion Performance of Montmorillonite K-10 on Rebar in HCl Environment: Application in Mortar for the Rehabilitation of Reinforced Concrete Degraded by Corrosion

DOI: 10.4236/ojce.2024.142008, PP. 155-167

Keywords: Clay, Reinforced Concrete, Corrosion, Inhibitor, Rehabilitation, Electrochemical Methods

Full-Text   Cite this paper   Add to My Lib

Abstract:

This work first investigates the corrosion-inhibiting behavior of montmorillonite K-10 on reinforcing steel. The corrosion-inhibiting power of the clay (Montmorillonite) is determined in a medium HCl (C = 1N) using free corrosion potential monitoring, Tafel potentiodynamic polarization curves and electrochemical impedance spectroscopy. The results of this study showed a satisfactory corrosion-inhibiting efficiency of around 72.665% for the optimum content of 1%. This is due to the presence of a stable oxide layer that protects the metal against corrosion. To validate the concept of montmorillonite as a corrosion inhibitor in repair mortar, we now turn to the influence of montmorillonite on the mechanical properties of mortars in the hardened state. In this part, montmorillonite K-10 is added to the mortar by partial substitution of the cement by 5% and 10% of the cement mass. The aim of this study is to ensure that the addition of this clay to the mortar composition will not have a negative effect on its compressive and flexural strengths. The results of the compression and flexural tests showed that the presence of montmorillonite in the mortar improved flexural and compressive strengths for the different compositions studied.

References

[1]  Angst, U.M., Geiker, M.R., Michel, A., Gehlen, C., Wong, H., Isgor, O.B., et al. (2017) The Steel-Concrete Interface. Materials and Structures, 50, 143.
https://doi.org/10.1617/s11527-017-1010-1
[2]  Khanzadeh Moradllo, M., Qiao, C., Ghantous, R.M., Zaw, M., Hall, H., Ley, M.T., et al. (2020) Quantifying the Freeze-Thaw Performance of Air-Entrained Concrete Using the Time to Reach Critical Saturation Modelling Approach. Cement and Concrete Composites, 106, Article ID: 103479.
https://doi.org/10.1016/j.cemconcomp.2019.103479
[3]  Hubert, B. (2002) Approche des études géotechniques liées à la pathologie des ouvrages. Géologues (Paris), 132, 97-106.
[4]  Benzargoun, Messaouda et Touban, Nadjat. (2020) Etude de L’effet inhibiteur sur l’extrait de plante Calotropis Procera (Krnaka) la corrosion de L’acier X70 en milieu acide HCl 1M. Thèse de Doctorat. Université de Ghardaïa.
[5]  Nagendrappa, G. (2002) Organic Synthesis Using Clay Catalysts. Resonance, 7, 64-77.
https://doi.org/10.1007/bf02836172
[6]  Diallo, M.D., Diop, S.N., Diémé, M.M. and Diawara, C.K. (2020) Removal of Fluoride in Brackish Drinking Water from Senegal by Using KSF and K10 Montmorillonite Clays. International Journal of Applied Chemistry, 7, 65-70.
https://doi.org/10.14445/23939133/ijac-v7i3p112
[7]  Rahim, O., Achoura, D., Benzerara, M. and Bascoulès-Perlot, C. (2021) Experimental Contribution to the Study of the Physic-Mechanical Behavior and Durability of High-Performance Concretes Based on Ternary Binder (Cement, Silica Fume and Granulated Blast Furnace Slag). Frattura ed Integrità Strutturale, 16, 344-358.
https://doi.org/10.3221/igf-esis.59.23
[8]  Bodian, M. (2022) Étude par voies électrochimique, physique et mécanique des effets de la corrosion des armatures métalliques sur les performances de l’adhérence acier-béton. Thèse de cotutelle entre UCAD et INSA de Rennes.
[9]  Garcés, P., Saura, P., Méndez, A., Zornoza, E. and Andrade, C. (2008) Effect of Nitrite in Corrosion of Reinforcing Steel in Neutral and Acid Solutions Simulating the Electrolytic Environments of Micropores of Concrete in the Propagation Period. Corrosion Science, 50, 498-509.
https://doi.org/10.1016/j.corsci.2007.08.016
[10]  Tritthart, J. (2003) Transport of a Surface-Applied Corrosion Inhibitor in Cement Paste and Concrete. Cement and Concrete Research, 33, 829-834.
https://doi.org/10.1016/s0008-8846(02)01067-0
[11]  Bodian, M., Keinde, D., Yade, I., Hannawi, K., Agbodjan, P.W., Fall, M. and Darquennes, A. (2022) Study of Attapulgite as an Additive in Reinforced Concrete by Substitution of Cement and Its Effects on the Durability Properties of Hardened Concrete. Open Journal of Civil Engineering, 12, 301-319.
https://doi.org/10.4236/ojce.2022.123018

Full-Text

comments powered by Disqus

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133

WeChat 1538708413