한국건설순환자원학회논문집 (Journal of the Korean Recycled Construction Resources Institute)
- 제8권1호
- /
- Pages.33-40
- /
- 2013
- /
- 1975-5201(pISSN)
유동화제가 알칼리 활성 슬래그 모르타르의 유동 특성 및 압축 강도에 미치는 영향
Influence of Superplasticizers on Fluidity and Compressive Strength of Alkali Activated Slag Mortar
- Kim, Dae-Wang (Dept. of Civil, Architectural and Environmental System Engineering, Sungkyunkwan University) ;
- Oh, Sang-Hyuk (Dept. of Civil, Architectural and Environmental System Engineering, Sungkyunkwan University) ;
- Lee, Kwang-Myong (Dept. of Civil, Architectural and Environmental System Engineering, Sungkyunkwan University)
- 투고 : 2013.02.13
- 심사 : 2013.03.18
- 발행 : 2013.03.31
초록
최근 시멘트 생산 시에 발생하는 다량의
The cement industry brought very severe environment problems with massive carbon dioxide during its production. To solve this problem, attempts on Alkali-Activated Slag (AAS) concrete that perfectly substitutes industrial by-products such as ground granulated blast furnace slag (GGBFS) for cement are being actively made. AAS concrete is possible to have high strength development at room temperature, however, it is difficult to ensure the working time due to the fast setting time and the loss of workabillity because of the alkali reaction. In this study, the early age properties of alkali activated slag mortar are investigated to obtain the fundamental data for AAS concrete application to structural members. The water-binder ratio (W/B) was fixed at 0.35 and sodium hydroxide and waterglass as alkali activator was used. The compressive strength, the flow and the ultrasonic pulse velocity were measured according to the type of superplasticisers, which were naphthalene(N), lignin(L), melamine(M) and PC(P), up to a maximum of 2 percent by the mass of GGBFS. The results showed that adding melamine type of superplasticizer improved the fluidity of AAS mortar without decreasing the compressive strength, while naphthalene and polycarbonate type of superplasticizer had little effect on the fluidity of AAS mortar.
키워드