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섬유 조합변화가 HPFRCC의 공학적 특성에 미치는 영향

Effect of Hybrid Fibers on the Engineering Properties of HPFRCC

  • Han, Dongyeop (Research Institute of Industrial Sciences, Cheong ju University) ;
  • Han, Min Gheol (Department of Architectural Engineering, Cheong ju University) ;
  • Kang, Byeong Hoe (Department of Architectural Engineering, Cheong ju University) ;
  • Park, Yong Jun (Department of Architectural Engineering, Cheong ju University)
  • 투고 : 2014.07.08
  • 심사 : 2014.11.24
  • 발행 : 2014.12.20

초록

최근에는 현대사회의 기술발전으로 인간의 삶의 질이 향상됨에 따라 건설산업에서도 재료 및 건축구조물의 발전이 계속되고 있는데, 그 중에서 콘크리트 재료의 발전이 특히 주목받고 있다. 그러나, 콘크리트는 간편성, 공기단축 및 높은 압축강도 등의 이점이 있는 반면에, 낮은 인장 및 휨강도, 취성파괴 및 건조수축 등의 문제점들이 발생하여 일부 기업 및 학계에서는 이를 해결하기 위하여 섬유보강 콘크리트 등 다방면의 연구가 진행되고 있다. 그 중, 섬유의 다량혼입으로 큰 응력에서 넓은 범위의 변형을 일으킬 수 있는 HPFRCC 재료 개발의 경우 섬유의 다량 혼입으로 높은 인성 등 발휘하는 장점이 있으나, 섬유 뭉침 등의 문제로 유동성 저하의 문제점이 발생하여 궁극적으로는 콘크리트의 품질저하를 초래할 수 있다. 따라서 본 연구에서는 인장 및 휨 강도 성능 향상을 확보를 위해 섬유를 활용한 섬유보강 HPFRCC의 시멘트 복합재료에 시공성능을 향상시키기 위한 목적으로 유 무기 섬유 조합변화에 따른 HPFRCC의 유동 특성 및 역학적 특성 등을 분석하므로서 최적의 섬유조합을 제안하고자 한다. 결과적으로 1 % 소량 혼입시 유동성 측면에서는 섬유 조합변화한 경우보다 단독으로 사용하였을 경우 높은 유동성을 나타내었고 특히, SS섬유의 경우가 가장 높은 유동성을 나타내었다. 또한 공기량이 낮았던 유기섬유의 경우 상대적으로 공기량이 높았던 강섬유의 비해 강도는 높았지만 인장 및 휨 강도는 낮은 것으로 나타났다.

For the construction materials, concrete, as the most widely used material, is focused on its improvement of performance. Although concrete has many advantages of easiness of handling, economical benefits, and high compressive strength, low tensile strength, brittleness and drying shrinkage are reported as the drawbacks of concrete. Hence, to solve these drawbacks of concrete, many research has conducted especially using fiber-reinforced concrete technology. Especially, HPFRCC which has high volume of fiber reinforcement was suggested as a solution of these drawbacks of normal concrete with increased ductility while it has the possibility of workability loss with fiber clumping which can cause low performance of concrete. Therefore, in this paper, optimized fiber combination with either or both metal and organic fibers is suggested to provide better performance of HPFRCC in tensile strength and ductility. As the results of experiment, better workability was achieved with 1 % of single fiber rather than multiple fibers combinations, espeically, short steel fiber showed the best workability result. Furthermore, in the case of organic fibers which showed higher air content than steel fibers, higher compressive strength was achieved while lower tensile and flexural strength were shown.

키워드

참고문헌

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