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시멘트 콘크리트 ASR 저감에 영향을 미치는 혼화재 치환량에 대한 미세구조 분석 KCI 등재

Microstructure Analysis on Substitution Amount of Mineral Admixtures Affecting ASR Reduction in Cement Concrete

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한국도로학회논문집 (International journal of highway engineering)
한국도로학회 (Korean Society of Road Engineers)
초록

PURPOSES : In this study, an ASR-reducing (alkali-silica reaction) cement was developed to prevent the blow-up of concrete pavements. To develop ASR-reducing cement, various amounts of ground granulated blast furnace slag (GGBFS), and fly ash (FA) were substituted with Portland cement, and the ASR reduction effect was verified through various experiments.
METHODS : The physical properties of ASR-reducing cement, varying with the substitution amounts of GGBFS and FA, were verified through compressive strength tests. In addition, the ASR reduction effect was examined using accelerated mortar bar tests. Furthermore, the reasons for the ASR reduction were investigated using microstructural analysis techniques, such as XRD and TG/DTG.
RESULTS : There was a difference in the compressive strength results according to the amount of GGBFS and FA substitution. In addition, the samples with GGBFS and FA exhibited relatively lower compressive strengths at 3 days, than OPC samples, but the compressive strength at 28 days was higher than that of the OPC samples. The samples with GGBFS and FA had higher compressive strength at 28 days than OPC samples, because the substituted GGBFS and FA induced pozzolanic reaction. Through XRD and TG/DTG analyses, various degrees of pozzolanic reaction occurring in the samples were examined, and a more active pozzolanic reaction occurred in the samples with FA than in the samples with GGBFS. Therefore, it appeared that the ASR reduction effect occurred because of the induced pozzolanic reaction.
CONCLUSIONS : GGBFS and FA substituting Portland cement indicated an ASR reduction effect, which was owing to the pozzolanic reaction. In addition, FA indicated a greater ASR reduction effect than GGBFS, which suggested that FA induced a more active pozzolanic reaction than GGBFS.

목차
ABSTRACT
1. 서론
    1.1. 연구 배경 및 목적
2. 실험 계획 및 방법
    2.1. 원재료
    2.2. 배합비
    2.3. 샘플 제작 및 실험 방법
3. 실험 결과
    3.1. 압축강도
    3.2. XRD 분석
    3.3. TG/DTG 분석
    3.4. 촉진 모르타르 봉 실험
4. 결론
감사의 글
REFERENCES
저자
  • 송다혜(인하대학교 공과대학 스마트시티공학과 석사과정) | Song, Da Hye
  • 염우성(한국건설기술연구원 인프라안전연구본부 박사 후 연구원) | Yum, Woo Sung
  • 이재훈(인하대학교 공과대학 스마트시티공학과 박사과정) | Lee, Jae Hoon
  • 정진훈(인하대학교 공과대학 사회인프라공학과 교수) | Jeong, Jin Hoon 교신저자