A Fundamental Study on the Development of Fire Resistance Filling of Friendly Environment Using Aerated Concrete

기포콘크리트를 이용한 친환경 내화충전제개발에 관한 기초적 연구

  • Published : 2007.08.31

Abstract

In this study, we processed two procedures of application test of filler for fire-resistance utility that are new application methods of aerated concrete and properties test of aerated concrete according to mixing ratio because we investigated the better use of aerated concrete as filler for fireproof safety and we proposed basic data about standardization of mixing of aerated concrete. We measured flow and volume change of aerated concrete. And if its volume doesn't change, we added measuring unit weight and compressive strength. To test application of aerated concrete as filler for fireproof safety, we filled up aerated concrete to fireproof safety according to suitable mixing ratio. Then we measured maximum temperature of inner part of fireproof safety in accordance with the standard test of fireproof. According to the results, aerated concrete as filler for fireproof safety could be possibly used. So when we make aerated concrete, we should consider using an adding agent as well as a foaming agent.

Keywords

References

  1. 박상순, (1996 .6) "고분자기포제를 이용한 경량기포콘크리트의 개발과 역학적 특성",연세대학교 토목공학과 석사학위논문
  2. 서치호, (1985), "경량콘크리트의 성태에 관한 실험적 연구" 한양대학교 박사학위 논문
  3. 한천구 외 4인 (2007. 06), "혼화재료의 치환에 따른 경량기포 콘크리트의 기초적 특성분석" 한국건축시공학회논문집
  4. 김진만 외 5인 (2007. 04), "폐콘크리트 미분을 사용한 경량기포콘크리트의 특성에 관한 실험적 연구" 한국건축시공학회
  5. 이승한, (1995), 이중우, 공성훈, 정해구, Bottom Ash를 이용한 기포콘크리트의 열전도특성, KCI 가을학술발표회 논문집, 제 7권, 2호, KCI
  6. 정동학, (1988), "퍼라이트를 이용한 경량몰탈의 강도에 관한 실험적 연구", 건국대학교 석사학위 논문
  7. 정재동, (2002), "콘트리트재료공학", 보성각
  8. Watson, K.L., Eden, N.b. and Farrant, J.R., The Effect of Admixture on the Relationship between Compressive Strength and Density of Autoclaved Aerated Concrete made from Slate Powder and Portland Cement, Silicates Industrials, Vol. 43, 1978, pp. 57-64
  9. 山田哲夫, 超輕量コンクリート開發, セメント․コンク リート, No. 577, 1995, pp. 32-36
  10. 森範行, 佐勝常雄, 桑原正彦, 氣泡混合補强土工法, 特集輕量盛土工法, 1994, pp. 28-36
  11. Isu, N., Teramura S. and Mitsuda T., Mechanical Property Evaluation during Autoclaved Process of Aerated Concrete using Slag : II Fracture Toughness and Microstructure, Journal of the American Ceramic Society, 1994, pp. 2093-2096
  12. Edan, N.b., Manthorpe, A.R., Autoclaved Aerated Cocrete from Slate Waste Part 1 : Some Property/Density Relationships, The International Journal of Lightweight Concrete, Vol. 2, No. 2, 1980, pp. 95-100 https://doi.org/10.1016/0262-5075(80)90028-7
  13. Tada, S., Material Design of Aerated Concrete : An Optimum Performance Design, Materiaux et Constructions, Vol 19, No. 109, 1986, pp. 21-25 https://doi.org/10.1007/BF02472306