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Title Permeability of Cracked Concrete as a Function of Hydraulic Pressure and Crack Width
Authors 현태양 ; 김진용 ; 김진근
Page pp.291-298
ISSN 1229-5515
Keywords 균열 ; 수압 ; 투수계수 ; 누수 ; 균열 콘크리트 ; 자기 치유 crack ; hydraulic pressure ; permeability ; leakage ; cracked concrete ; autogenous healing
Abstract Cracks in concrete generally interconnect flow paths and increase concrete permeability. The increase in concrete permeability due to the progression of cracks allows more water or aggressive chemical ions to penetrate into concrete, facilitating deterioration. The goal of this research is to study the relationship between crack width and water permeability of cracked concrete. Tests have been carried out as a function of hydraulic pressure (0.1 ~ 2 bar) and crack width (30 ~ 100 μm). Splitting and reuniting method was used to manufacture cracked concrete specimens with controlled crack width. Crack widths are checked by using a microscope(×100). The results show a considerable increase of water transport with crack width and hydraulic pressure. When the crack width is smaller than 50μm, the crack width has little effect on concrete permeability. Due to the autogenous healing, the water flow through the crack gradually reduces with time. When crack width is 100 μm and hydraulic pressure increase from 0.1 bar to 0.25 bar, concrete permeability increases rapidly about 190 times according to the test results.