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Examination for Controlling Chloride Penetration of Concrete through Micro-Cracks with Surface Treatment System

표면도장공법을 적용한 미세균열 콘크리트의 염소이온 침투 제어 특성

  • 윤인석 (인덕대학 건설정보과) ;
  • 채규봉 (서울시립대학교 토목공학과)
  • Received : 2008.01.15
  • Accepted : 2008.07.04
  • Published : 2008.09.30

Abstract

For well-constructed concrete, its service life is a long period and it has an enough durability performance. For cracked concrete, however, it is clear that cracks should be a preferential channel for the penetration of aggressive substance such as chloride ions accoding to author's previous researches. Even though crack width can be reduced due to the high reinforcement ratio, the question is to which extend these cracks may jeopardize the durability of cracked concrete. If the size of crack is small, surface treatment system can be considered as one of the best options to extend the service life of concrete structures exposed to marine environment simply in terms of cost effectiveness versus durability performance. Thus, it should be decided to undertake an experimental study to deal with the effect of different types of surface treatment system, which are expected to seal the concrete and the cracks to chloride-induced corrosion in particular. In this study, it is examined the effect of surfaced treated systems such as penetrant, coating, and their combination on chloride penetration through microcracks. Experimental results showed that penetrant can't cure cracks. However, coating and combined treatment can prohibit chloride penetration through cracks upto 0.06 mm, 0.08 mm, respectively.

건전하게 설계 시공된 콘크리트는 충분한 내구성 및 장기수명을 갖는 것으로 알려졌다. 그러나 저자의 기존 연구에 의하면 콘크리트 표면에 존재하는 균열은 염소이온의 침투에 대한 빠른 침투 통로가 되어 내구성능을 저하시킬 수 있는 것으로 나타났다. 균열을 제어하기 위하여 설계적 측면에서 높은 철근비로 균열폭을 감소시킬수는 있으나, 이러한 균열이 실질적으로 내구성을 저하시키는데에 따른 검토 및 내구성 향상을 유도할 수 있는 방법이 필요하다. 표면도장공법은 균열폭이 작은 경우에 균열을 실링하여 염소이온 침투를 차단하는데 가장 간단한 방법중의 하나로 간주될 수 있다. 그래서 본 연구는 표면도장공법으로 미세균열의 개구를 통한 염소이온 침투를 제어할 수 있는지를 고찰하였다. 실험변수로 침투재와 도포재의 단일 적용과 복합적용이 실험변수로 고려되었으며, 급속 염소이온 침투 실험을 통하여 균열대비 염소이온 침투깊이를 검토하였다. 실험결과에 의하면 침투재는 균열 실링효과를 기대할 수 없었으나, 도막재는 0.06 mm, 침투재와 도막재를 혼합사용하면 0.08 mm이내의 균열폭에서 염소이온 침투를 제어할 수 있었다.

Keywords

References

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