4.5 Article

Evaluating the chloride permeability of steel-concrete interface based on concretes of different stability

期刊

STRUCTURAL CONCRETE
卷 22, 期 5, 页码 2636-2649

出版社

ERNST & SOHN
DOI: 10.1002/suco.202000131

关键词

chloride migration coefficient; chloride permeability; fresh concrete stability; interfacial defects; steel-concrete interface

资金

  1. National Natural Science Foundation of China [51708060]
  2. Fundamental Research Funds for the Central Universities [2020CDJQY-A004]
  3. China Scholarship Council

向作者/读者索取更多资源

The study introduced a new experimental method called chloride penetration depth test to evaluate the chloride permeability along the steel-concrete interface. By using this method on two types of concrete with different stability, the researchers found that the chloride penetration depth increased with the defect size in the steel-concrete interface, demonstrating the effectiveness of the proposed method in identifying chloride permeability.
The deterioration of reinforced concrete structures caused by chloride-induced corrosion is a major threat to their service life. Previous studies show that defects in the steel-concrete interface have a significant impact on the corrosion process of steel bars. Study on the chloride permeability of steel-concrete interface is very important for revealing the mechanism. In this article, we devised a new experimental method named chloride penetration depth test which was used to evaluate the chloride permeability along the steel-concrete interface. Two types of fresh concretes, normal concrete (NC) and lightweight aggregate concrete (LWAC) with obviously different stability, were designed to obtain specimens of various defect sizes in the steel-concrete interface. The results show that the chloride penetration depth measured with the new method increased with the defect size in the steel-concrete interface determined by backscattered electron (BSE) imaging and nanoindentation technology, indicating that the chloride permeability of steel-concrete interface could be identified by the method we proposed.

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