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http://dx.doi.org/10.5762/KAIS.2019.20.12.715

The Effects of Silica Sol and Modified Latex on the Concrete Surface Protection Cement Mortar for Improvement of Durability of Concrete  

Kim, Yong-Hoon (Department of civil engineering, University of seoul)
Jeaong, Cheol-Soo (Korea infrastructure safety and techmology corporation)
Song, Myong-Shin (Research center of advanced convergence processig on materials, Kangwon national university)
Lee, Woong-Geol (Advanced materials engineering, Kangwon national university)
Publication Information
Journal of the Korea Academia-Industrial cooperation Society / v.20, no.12, 2019 , pp. 715-722 More about this Journal
Abstract
The durability of concrete structures deteriorates due to the corrosion of rebars and concrete deterioration by harmful ions (CO32-, Cl-, SO42-) penetrating and diffusing from the outside into concrete. Therefore, the use of surface-protection finishing mortar is very important for preventing or delaying the deterioration of concrete. In this study, the possibility of the prevention of deterioration or delay of deterioration of concrete was investigated using natural latex modified with silica sol and calcium ions for cement mortar, which can be used to repair the mortar of deteriorated concrete or for finishing the mortar of concrete. As a result, fine calcium silicate hydrate was formed in the pores of the cement material due to the calcium ions and silica sol components contained in the modified latex component that reduce the pore distribution of the cement mortar, thereby reducing the penetration and diffusion of harmful ions (CO32-, Cl-, and SO42-). Furthermore, the latex component was found to be present in the pores of the cement to improve the alkali resistance and carbonation resistance.
Keywords
Concrete; Deterioration; Modified Latex; Silica Sol; Durability;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
연도 인용수 순위
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