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http://dx.doi.org/10.4334/JKCI.2005.17.5.695

Estimation of Air Void System and Permeability of Latex-Modified Concretes by Image Analysis Method  

Jeong Won-Kyong (Dept. of Civil Engineering, Kangwon National University)
Yun Kyong-Ku (Dept. of Civil Engineering, Kangwon National University)
Hong Seung-Ho (Dept. of Civil Engineering, Kangwon National University)
Publication Information
Journal of the Korea Concrete Institute / v.17, no.5, 2005 , pp. 695-702 More about this Journal
Abstract
It is known that latex-modified concretes were increased their durability and permeability by added latex. The purpose of this study was to analysis the air void systems in latex-modified concretes using a reasonable and objective image analysis method with main experimental variables such as water-cement ratios, latex contents(0%, 15%) and cement types(ordinary portland cement, high-early strength cement and very-early strength cement). The results are analyzed spacing factor, air volume after hardened, air distribution and structure. Also, air void systems and permeability of latex-modified concretes were compared with correlation. The results are as follows; The same w/c ratio LMC showed better air entraining effect than OPC with AE water reducer. The VES-LMC showed that the number of entrained air below $100{\mu}m$ increased more than four times. In the HES-LMC, micro entraining air having range from 50 to $500{\mu}m$ increased above 7 times without antifoamer. Though spacing factor was measured low, latex-modified concretes were showed that permeability was good. It is considered that air void system does not have an effect on the property of latex-modified concretes but latex film is more influenced in the their durability.
Keywords
image analysis method; latex modified concrete; antifoamer; air void; permeability;
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