A Research About One-dimensional Chloride Ion Erosion In Concrete Under Drying-wetting Cycles

Author:

Shen Hang,Li Jinyuan,Chen Changyuan,Li Yongli,Ji Wenjun

Abstract

Reinforced concrete structures are now widely used in China, and with the exploitation of marine resources, many concrete structures are in a relatively harsh service environment. Concrete in wave and tidal stream areas is in a dry and wet cycle state. When unsaturated concrete is in a dry and wet cycle state, chloride ions will invade the concrete by diffusion and convection, which accelerates the erosion of the reinforcement within the concrete and degrades the concrete performance. Therefore, the study of chloride ion erosion in concrete under dry and wet cycles is particularly important. Fick’s law is a good predictor of the diffusion of chloride ions in saturated concrete with stable boundaries, but it is difficult to obtain satisfactory results for concrete under dry and wet cycles. There are many difficult parameters in the microscopic model that make programming the calculations more difficult. In this paper, we propose to use the radial basis function matching point method to solve the problem. It is found that the error is within acceptable limits and can be used to calculate the one-dimensional erosion of chloride ions under dry and wet cycles through solving the validation algorithm.

Publisher

EDP Sciences

Reference11 articles.

1. Li Xuezhi. Hazards of chloride ions in concrete and preventive measures [J]. Journal of Concrete Theoretical Research, 2008(10):42-44.

2. Wang Xiaochu, Jin Mingjun, Yang Chunfeng, A Review of the Current Status of Research on the Durability of Concrete Structures [J]. Journal of Concrete, 2006(2):31-33.

3. Fu Qingchuan, Mechanism of chloride salt transport in concrete and model of reinforcement rusting and swelling [D]. ZheJiang: University of ZheJiang, 2012:1-15.

4. Cao Weiqun, Ion Chloride Attack and Durability Protection of Concrete in Alternating Wet and Dry Environments [D], Xi’an: Xi’an university of architecture and technology, 2013:19-23

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