On the Durability of Sealable Circular Concrete Structures under Chloride Environment

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Abstract

Reinforcement corrosion resulting from chloride attack is one major mechanism that compromises concrete durability. Numerical methods were commonly used for tackling Fick's diffusion equations. In this paper, we developed a Crank-Nicolson based finite difference scheme suitable for circular concrete structures. Both a time-dependent surface chloride model and diffusivity were considered. The impact of an ideal sealer on chloride redistribution was further investigated. Results suggested that the chloride threshold depth in a concrete structure is greatly affected by the radius of curvature, environment severity, and diffusivity. For sealable concrete structures, both the sealer application timing and location are of great importance.

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Mi, C., Shao, K., & Li, X. (2015). On the Durability of Sealable Circular Concrete Structures under Chloride Environment. Advances in Materials Science and Engineering, 2015. https://doi.org/10.1155/2015/510845

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