Abstract

The reinforced steel corrosion which is the most important problem of reinforced concrete structures durability is generally stipulated for carbonization of concrete surrounding it. Concrete cover calculation at the design stage is predicated one because of the differences in manufacturing conditions and use of constructions. The applying of the probabilistic approaches to the carbonation process modeling allows to get predicated grade of the depth of carbonization of concrete and, thus, to settle minimum concrete cover thickness for a given projected service life of a construction. The procedures for concrete mix design for different strength classes of concrete are described in the article. Current recommendations on assignment of concrete strength class as well as concrete cover are presented. The European Standard EN 206:2013 defines the content requirements for the concrete structures operated in the exposure class XC1, including the minimum values of water-cement ratio, minimum cement content, and minimum strength class of concrete. Since the standard does not include any basis or explanations of the requirements, we made an effort to develop a scientific justification for the mentioned requirements. We developed the probabilistic models for the process of carbonation of concrete based on the concrete mix which was designed using the software VTK-Korroziya. The reinforced concrete structures with concrete cover 20–35 mm operated in the most unfavorable conditions within the exposure class XC1 were analyzed. The corresponding probabilistic calculations of the depth of carbonated concrete are described in the article.

Highlights

  • Reinforcement corrosion is considered as the most important problem in respect of reinforced concrete structures durability and it is usually caused by carbonization of concrete that surrounds it

  • Due to differences in structure manufacturing and operational conditions calculation of protective concrete layer is taken as a predictive one at the design stage

  • Application of probabilistic methods for simulation of the carbonization process makes it possible to obtain prediction estimates for concrete carbonation depth and it allows to prescribe a minimum thickness of the protective concrete layer for a predetermined expected useful life of structures

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Summary

Бетонные и железобетонные конструкции

Основы проектирования строительных конструкций: ТКП ЕН 1990–2011.

Возведение бетонных и железобетонных конструкций
12. DARTS – Durable and Reliable Tunnel Structures
14. LIFECON
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