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        검색결과 6

        1.
        2019.05 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Recent changes in the construction method of piles to minimize noise, along with the development of high-strength reinforcement, have provided an economical high performance RC pile development to compensate for the disadvantages of existing PHC piles. In this study, a methodology for the development of cross - section details of high performance RC piles of various performances is presented by freely applying high strength steel and concrete. This study suggested a technique for calculating bending moments for a given axial force corresponding to the allowable crack widths and this can be used for serviceablity check. In calculating the design shear force, the existing design equation applicable to the rectangular or the I section was modified to be applicable to the hollow circular section. In particular, in the limit state design method, the shear force is calculated in proportion to the axial force, and the procedure for calculating PV diagram is established. Last, the section details are determined through PM diagrams that they have the similar flexural and axial-flexural performances of the PHC pile A, B and C types with a diameter of 500 mm. To facilitate the application of the selected standard sections to the practical tasks, the design PM diagram and design shear forces are proposed in accordance with the strength design method and limit state design method.
        4,000원
        2.
        2015.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Shear wall systems behave as individual wall because of openings like window and elevator cage. When coupling beams are installed in shear walls, they will have high strength and stiffness so that be less damaged by lateral loads like earthquake. However, coupling beam is difficult construction method. And arranging reinforcement of slender coupling beams are especially hard. It is because the details of coupling beam provided by ACI 318 are complex. In this paper, experiments were conducted using coupling beams with 3.5 aspect ratio to improve the details of slender coupling beams provided by ACI 318. Two specimens were proposed for this study. One specimen applied with bundled diagonally reinforcement only. Another specimen applied both bundled diagonally reinforcement and High-Performance Fiber Reinforced Cementitious Composite (HPFRCC) so that coupling beams have half of transverse reinforcement. All specimen were compared with a coupling beam designed according to ACI 318 and were evaluated with hysteretic behaviors. Test results showed that the performance of two specimen suggested in this study were similar to that of coupling beam designed according to current criteria. And it was considered that simplification of the details of reinforcement would be available if transverse reinforcement was reduced by using bundled diagonally reinforcement and HPFRCC.
        4,000원
        3.
        2015.10 서비스 종료(열람 제한)
        This paper is to evaluate the flexural characteristics of 180MPa Ultra High Performance Concrete and reinforcing steel. In this study, the bending test is performed to evaluate the flexural characteristics considering lap-splice length. The stability of the lap-splice length proposed the structural design codes are evaluated on load-displacement. The results confirmed that the ductility has increased when the lap-splice has increased.
        4.
        2012.05 서비스 종료(열람 제한)
        In this study, experimental research was carried out to improve the structural performance of reinforced concrete beam-column joint using high performance FRP materials in existing reinforced concrete building. Test result shows that retrofitting specimen(LBCJ-CRU, CRS, CRUS) designed by the improvement of seismic performance of reinforced concrete beam-column joints load-carrying capacities were increased 1.30~1.54 times in comparison with the standard specimen.
        5.
        2011.03 KCI 등재 서비스 종료(열람 제한)
        본 연구에서는, 철근 밀집 감소, 노무비 및 보수 보강비 절약, 향상된 부식 저항성, 공기 단축 등의 장점을 가지고 있는 고성능 철근으로 휨 보강된 이방향 슬래브를 제작하고 구조실험을 실시하였다. 상부 휨철근비, 기둥 인접부 휨철근의 집중배근, 강섬유 보강 콘크리트의 타설을 변수로 하여 실험하였고, 펀칭 전단강도 및 균열후 강성을 일반 철근 및 GFRP bar로 휨 보강된 슬래브의 펀칭 전단실험 결과와 비교하였다. 또한, 휨철근의 변형률 분포 및 균열제어 효과 등을 비교, 분석하였고, 휨철근비 계산을 위한 유효폭 산정 방법을 검토하였다. 고성능 철근의 사용으로 펀칭 전단강도가 향상되었고, 휨 철근량을 감소시킬 수 있었다. 기둥 인접부 휨철근의 집중배근을 통해 철근비의 감소 때문에 작아진 강성을 회복시킬 수 있었고, 훌륭한 변형률 분포 및 균열제어 효과를 나타내었다. 또한, 기둥 인접부에 대한 강섬유 보강 콘크리트의 타설은 펀칭 전단강도의 증가와 균열 제어에 탁월한 효과를 보였다. 휨철근비 산정을 위한 유효폭은 기둥면으로부터 슬래브 두께의 2배 이상으로 확대하는 것이 합리적이라 판단된다.