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Corrosion Behavior of AISI 1018 Reinforcing Steel in Sustainable Concrete made with Sugar Cane Bagasse Ash and Recycled Aggregates Exposed in Seawater

Author

Listed:
  • Brenda Paola Baltazar-García

    (Universidad Veracruzana, Mexico.)

  • Daniel Francisco Baltazar-Zamora

    (Universidad Veracruzana, México)

  • Laura Landa-Ruiz

    (Universidad Veracruzana, México.)

  • Ce Tochtli Méndez

    (Universidad Veracruzana, Mexico.)

  • Rodolfo Solorzano

    (Universidad Veracruzana, Mexico.)

  • Sabino Márquez

    (Universidad Veracruzana, Mexico.)

  • Griselda Santiago-Hurtado

    (Universidad Autónoma de Coahuila, México.)

  • Victor Moreno-Landeros

    (Universidad Autónoma de Coahuila, México.)

  • René Croche

    (Universidad Veracruzana, México.)

  • Miguel Angel Baltazar-Zamora

    (Universidad Veracruzana, Mexico.)

Abstract

In the present research, the electrochemical behavior of corrosion in Conventional Concrete (CC) and Sustainable Concrete (SC) made with 80% of Portland Cemment, 20% of Sugar Cane Bagasse Ash and Recycled Aggregates with 50% and 100% was evaluated, AISI 1018 steel bars were embedded in all the specimens, which were exposed to seawater for more than 300 days. For corrosion monitoring, the electrochemical techniques of Corrosion Potential (Ecorr) and Linear Polarization Resistance was used to determine the intensity of the corrosion current (Icorr). The results of Ecorr and Icorr indicate that the sustainable concrete of this study can be used in non-aggressive environments, but not in highly aggressive media such as seawater, since according to the results, its protection against corrosion is weak, with the SC having the worst performance with 100% recycled aggregate.

Suggested Citation

  • Brenda Paola Baltazar-García & Daniel Francisco Baltazar-Zamora & Laura Landa-Ruiz & Ce Tochtli Méndez & Rodolfo Solorzano & Sabino Márquez & Griselda Santiago-Hurtado & Victor Moreno-Landeros & René , 2022. "Corrosion Behavior of AISI 1018 Reinforcing Steel in Sustainable Concrete made with Sugar Cane Bagasse Ash and Recycled Aggregates Exposed in Seawater," European Journal of Engineering and Technology Research, European Open Science, vol. 7(6), pages 101-107, October.
  • Handle: RePEc:epw:ejeng0:v:7:y:2022:i:6:id:62930
    DOI: 10.24018/ejeng.2022.7.6.2930
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