콘크리트 충전강관은 국부좌굴을 방지하고 내화성이 향상되기 때문에 건설현장에서 많이 적용되며 휨성능을 향상시 키기 위해 강관 내부에 철근을 보강하여 사용한다. 그러나 철근은 부식되며 내구성이 저하되기 때문에 이를 대신할 소재에 대 한 연구가 진행되고 있다. 탄소섬유보강근은 철근에 비해 경량이며 고강도와 내부식성이 우수하다는 이점이 있다. 그러나 임계 온도가 250℃로 철근의 임계온도인 538℃에 비해 현저히 낮기 때문에 내화피복이 필요하다. 따라서 열전달해석을 통해 탄소섬 유보강근을 사용하였을 때 온도분포를 확인하고 P-M상관도를 도출하여 적용 가능여부를 확인하고자 한다. 해석결과 내화성능을 확보하기 위해 콘크리트 피복두께 40mm, 뿜칠내화피복재 30mm를 적용하거나 콘크리트 피복두께 60mm, 뿜칠내화피복재 20mm 를 적용하면 3시간 내화성능을 만족하는 것으로 평가되었다.
TR-CFT(Transversely Reinforced Concrete Filled Steel Tube) 기둥은 CFT 기둥의 국부좌굴부위를 탄소섬유쉬트로 보강을 하여 국부좌굴을 방지하거나 지연시키는 기둥부재이다. 본 연구에서는TR-CFT 기둥의 휨내력 산정을 위한 설계식을 제안하였다. CFT 기둥의 ACI 설계식은 강관내부에 발생하는 콘크리트의 구속효과를 고려하지 않아 저평가 되고 있다. 따라서 본 연구에서는 구속효과를 고려한 콘크리트의 응력-변형률 곡선를 이용하여 CFT 기둥과 TR-CFT 기둥의 휨내력 산정식을 제안했으며 해석에 의한 예측 값들은 실험값과 잘 일치함을 확인할 수 있었다.
This paper is presented an experimental studies on bond stress between steel and concrete in concrete filled Rectangular steel tubes. In the actual building frames, vertical dead and live loads on beams are usually transferred to columns by beam-to-column connections. In case when concrete filled steel tubes are used as columns of an actual building frame which has a simple connection, shear forces in the beam ends are not directly transferred to the concrete core but directly to the steel tube. Provided that the bond effect between steel tube and concrete core should not be expected, none of the end shear in the beams would be transferred to the concrete core but only to the steel tube. Therefore, it is important to investigate the bond strength between steel tube and concrete core in the absence of shear connectors.
This paper is presented an experimental studies on bond stress between steel and concrete in concrete filled steel tubes. In the actual building frames, vertical dead and live loads on beams are usually transferred to columns by beam-to-column connections. In case when concrete filled steel tubes are used as columns of an actual building frame which has a simple connection, shear forces in the beam ends are not directly transferred to the concrete core but directly to the steel tube. Provided that the bond effect between steel tube and concrete core should not be expected, none of the end shear in the beams would be transferred to the concrete core but only to the steel tube. Therefore, it is important to investigate the bond strength between steel tube and concrete core in the absence of shear connectors.
The object of this study is to review hysteretic characteristics of RC column that increase seismic performance by attaching CFT(Concrete Filled Steel Tube). For the attainment of this purpose, Static test and FE- Analysis for column under lateral cyclic loading and constant axial load were conducted. Push over curve obtained from FE-analysis using ATENA 3D corresponds with hysteretic curve of experimental data. And then structural stability and superiority for retrofitted RC members in terms of strength enhancement is verified
In this research, we evaluate the workability of 100 MPa concrete for CFT column thru Batch plant test. Also, we evaluate the fire resistance performance of steel composite column.
In this study, an experimental study to investigate the load transfer behavior of the CFT column to steel beam connection was carried out. The load transfer mechanism and the effect of the load transfer length were examined, and the results were also compared with finite element analysis results. Finally, the results are to be used for the basic reference of the design guideline for the CFT column connection.