Variation in Service Life on RC Structure According to Concrete Binder Type.

Materials (Basel)

Korea Institute of Future Convergence Technology, Hankyong National University, 327 Jungang-ro, Anseong 17579, Korea.

Published: November 2020

AI Article Synopsis

  • Using an additive to replace part of the cement in concrete creates a dense pore structure that reduces chlorine ion penetration and corrosion of reinforcing bars.
  • However, this increased density also lowers the pH level, negatively impacting the protective layer on the rebar.
  • The study compared the service lives of reinforced concrete with different binders, measuring chloride ion diffusion and monitoring rebar corrosion to assess which binder combinations provided the greatest durability, with the best performance from S6 (OPC 40% + GGBFS 60%).

Article Abstract

When an additive is used to replace a certain amount of cement, a concrete pore structure becomes dense. Thus, it results in inhibiting the penetration of chlorine ions and suppressing corrosion of reinforcing bars. However, the pH level of the concrete decreases, and it deteriorates the performance of the passive film formed on the surface of the rebars embedded in the concrete. Therefore, in this study, the service lives of reinforced concrete containing different types of concrete binders were predicted and compared. The chloride ion diffusion coefficients of concretes with various binders were measured, and the critical chloride content of the rebar was assessed by the real-time monitoring on the corrosion initiation time of the rebar embedded in concrete. Moreover, Fick's 2nd law was applied to predict when the chloride content at the 40 mm depth of cover reached the critical chloride content based on the chloride ion diffusion coefficient. It was observed that the service life of S6 (OPC 40% + GGBFS 60%) was the highest, followed by TBC (OPC 40% + GGBFS 40% + FA 20%), S3 (OPC 70% + GGBFS 30%), and OPC (OPC 100%).

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7731309PMC
http://dx.doi.org/10.3390/ma13235430DOI Listing

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