Abstract
Recently, as structures in Korea and other countries become much taller, larger, and more specialized, concrete used for constructions of these structures is required to have high performance characteristics. Especially, seismic performance of concrete must be improved to resist cyclic loading from earthquakes. Consequently, this study was performed to focus on developing optimal mixtures of high ductile fiber reinforced mortar with high ductility and durability, which have good serviceability, stability and reliability performances. Eventually, this material is expected to improve seismic performance of concrete structures such as load carrying capacity, ductility capacity, and energy dissipation capacity when applied to critical regions of flat plate slab-column joint. Ultimately, this research is intended to develop a material for basic designs and practical constructions of reinforced concrete structures. Test results showed that the maximum load carrying capacity, the ductility capacity, and the energy dissipation capacity of the test specimens titled RCFPP series were increased by 15%~34%, by 33%~37%, and by 2.14 times, respectively, compared to those of the standard specimen titled SRCFP.
최근 국내외 건축물이 초고층화, 대형화되고 다양화됨으로써 콘크리트의 고성능화가 요구되고 있으며 지진하중과 같은 반복 주기하중이 작용할 때 철근콘크리트 부재의 내진성능의 개선이 필요한 실정이다. 따라서 이 연구에서는 사용성, 안정성 및 신뢰성이 우수한 고연성고내구성을 갖는 최적배합의 고인성 섬유 복합모르타르를 개발하고 플랫 플레이트 슬래브-기둥 접합부의 위험단면영역에 적용하여 건축물의 내력, 연성능력, 에너지소산능력 등의 내진성능을 개선하고 철근콘크리트 건축물의 설계시 기초자료 및 실용화 기술을 제시하고자 한다. 실험 결과 고인성 섬유 복합 모르타르를 활용한 플랫 플레이트 슬래브-기둥 접합부 실험체(RCFPP 시리즈)는 표준실험체(SRCFP)보다 최대내력 15~34%, 연성능력 33~37%, 에너지소산능력은 최대 2.14배 증가함을 나타내었다.