MODELLING CHLORIDE DIFFUSION IN CONCRETE WITH INFLUENCE OF CONCRETE STRESS STATE

Author:

WANG Jian1,NG Pui-Lam2,WANG Weishan3,DU Jinsheng1,SONG Jianyong4

Affiliation:

1. Beijing Jiaotong University

2. Vilnius Gediminas Technical University

3. Highway Research Institute of Xi’an

4. Research Institute of Highway Ministry of Transport

Abstract

Under coastal or marine conditions, chloride erosion is the major accelerating factor of reinforcement corrosion. Therefore, it is of vital importance to investigate the chloride diffusion model. Research reveals that the concrete stress state has great influence on chloride diffusion; therefore a stress influence coefficient was incorporated in chloride diffusion coefficient model by many researchers. By referring to the experimental data from eight different researchers, the law between stress influence coefficient and concrete stress ratio is studied in detail, and equations relating the stress influence coefficient with the concrete stress ratio are established. Compared with three typical existing groups of equations, it is found that the proposed equations give the most accurate estim.ation of the stress influence coefficient. Hence, the proposed equations can be adopted to improve the valuation of chloride diffusion coefficient, and a modified chloride diffusion model is put forward. Three groups of experimental data are used to validate the modified chloride diffusion model, which is shown to be reasonable and having high prediction accuracy.

Funder

Marie Skłodowska-Curie Actions, European Commission

Key Laboratory of Transportation for Old Bridge Inspection and Strengthening (Beijing)

Ningbo Science and Technology Bureau of China

Shanxi Provincial Transport Department of China

Publisher

Vilnius Gediminas Technical University

Subject

Strategy and Management,Civil and Structural Engineering

Reference32 articles.

1. Chloride Penetration in Nonsaturated Concrete

2. ACI Committee 365. 2000. Service-life prediction (ACI 365.1R00). American Concrete Institute, Michigan, USA. 44 p.

3. Chloride interaction with concretes subjected to a permanent splitting tensile stress level of 65%

4. Chloride penetration into concrete in marine environment—Part I: Main parameters affecting chloride penetration

5. Crank, J. 1975. The mathematics of diffusion. 2nd ed. Clarendon Press, Oxford, UK. 424 p.

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