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http://dx.doi.org/10.5345/JKIC.2009.9.5.063

Engineering Properties of Sound Absorbing Foamed Concrete Using Bottom Ash Depending on Mix Factors  

Kim, Jin-Man (공주대학교 건축학부)
Kang, Cheol (공주대학교 건축학부)
Publication Information
Journal of the Korea Institute of Building Construction / v.9, no.5, 2009 , pp. 63-70 More about this Journal
Abstract
This study is part of an ongoing research project on the development of a sound-absorbing lightweight foamed concrete manufactured by a hydro-thermal reaction between silica and calcium. As the silica source, pulverized bottom ash was used, and as several cementitious powders of ordinary portland cement, alumina cement and calcium hydroxide were used. Manufacture of foamed concrete was accomplished using the pre-foaming method to make a continuous pore system, which is the method of making the foam by using a foaming agent, then making the slurry by mixing the foam, water, and powders. The experiment factors are W/B, foam agent dilution ratio, and foam ratio, and test items are compressive strength, dry density, void ratio, and absorption rate, as evaluated by NRC. The experiment results showed that the sound absorption of lightweight foamed concrete satisfied NRC requirements for the absorbing materials in most of the experiments. It is thus concluded that foam ratio was the most dominant factor, and significantly affected all properties of lightweight foamed concrete in this study. W/B rarely affected total void ratio and continuous void ratio as well as compressive strength, and dry density and foam agent dilution ratio also had little effect onalmost all properties. The analysis of the correlation between NRC, absorption time, continuous void ratio, and absorption time showed that the interrelationship of the continuous void ratio was high.
Keywords
Lightweight foamed concrete; Noise reduction coefficient; Total void ratio; Continuous void ratio; Bottom ash;
Citations & Related Records
Times Cited By KSCI : 4  (Citation Analysis)
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