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A Study on the Durability Improvement by Controlling the Deterioration of Underground Concrete Structures  

천병식 (한양대학교 공과대학 토목공학과)
최춘식 (서울그라우팅연구)
정원우 ((주)도와종합기술공사)
Publication Information
Journal of the Korean Geotechnical Society / v.20, no.3, 2004 , pp. 23-31 More about this Journal
Abstract
Normally, coating is used for protecting reinforced concrete. For this purpose, both organic and inorganic coatings are used. The advantages of inorganic coatings are lower absorption of UV, non-burning etc. On the other hand, organic coatings have the advantage of low permeability of $CO_2, SO_2$ and water. Organic coatings provide better protection for reinforced concrete. However, organic coatings such as epoxy, urethane and acryl reduce long-term adhesive strength by the difference of their thermal expansion coefficients and elastic modules from those of concrete, and the formed coating cover of these is blistered by poor breathing. Also, when organic coatings are applied to the wet surface of concrete, they have a problem with adhesion. In this study, a new coating material for protecting concrete was hybridized with polymer and ceramics. And tests were carried out on its physical and durable characteristics, and safety characteristic on elution. All results were compared with organic coating materials and epoxies and showed that the performance of the developed coating material was not inferior to that of other organic coatings in protecting concrete. On the other hand, safety characteristic on elution was superior to epoxies which were used in this study. So, the developed coating material was considered as a suitable protecting coating material which have advantages of inorganic and organic coatings for protecting underground concrete structures, especially in contact with water.
Keywords
Ceramic; Coating; Polymer; Protecting concrete; Underground concrete structure;
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