순환잔골재를 혼입한 자기충전 콘크리트의 현장적용을 위한 실험적 연구

An Experimental Study on Field Application of Self-Compacting Concrete Using Recycled Fine Aggregate

초록

The purpose of this study, looking to which the recycled fine aggregates from waste concrete have a lot of problems as a material for structure purpose, is applying the recycled fine aggregate to Self-Compacting Concrete(In the reminder of this paper, it often referred to as SCC) by using the characteristic which the powder containing the recycled fine aggregates can increase strength and liquidity. In this study, that is, the recycled fine aggregate powder is appropriate for developing high strength(over 40 MPa) and liquidity(JSCE 2 grade), the characteristic of the SCC and it was increased the ratio of mixing the recycled fine aggregates emerging from waste concrete and the normal fine aggregates by 25%, making differential in total 5 levels and applied to SCC. After all, this study was reviewed the physical properties of the fresh concrete, analyzed the mechanical properties and durability of the hardening concrete and tried to ensure the possibility of utilizing the recycled fine aggregates as a material for SCC. As a result, this study reached a conclusion that among the 5-level replacement ratios of the physical, mechanical analysis and the durability characteristics, the normal fine aggregates could be applied up to a replacement ratio of 50% more than the recycled fine aggregates and resulted in a deterioration in performance the replacement ratio larger than 50%. It is judged that the applicability of the real structures should be followed up in order to check the possibility of applying the recycled fine aggregates to real life.

키워드

폐콘크리트순환잔골재자기충전 콘크리트(SCC)미분말혼입률Waste concreteRecycled fine aggregateSelf-compacting concretePowderReplacement ratio
제목
순환잔골재를 혼입한 자기충전 콘크리트의 현장적용을 위한 실험적 연구
제목 (타언어)
An Experimental Study on Field Application of Self-Compacting Concrete Using Recycled Fine Aggregate
저자
유재석송일현
DOI
10.11112/jksmi.2011.15.4.193
발행일
2011-07
저널명
한국구조물진단유지관리공학회 논문집
15
4
페이지
193 ~ 203