The purpose of this study is intended to determine the validity of shear reinforcement by evaluating flexural performance in the hollow slab. The hollow slab is relatively light and second moment of inertia is large. Due to these characteristics, it can be used to slab system efficiently. Therefore the prediction of the structural behaviors is very important because of decrease of shear and flexural strength which is caused by hollow section of slab interior. In this study, the flexural test were performed to analyze the flexural capacity of the hollow slab w/ or w/o shear reinforcement. A total of six full scale specimens were tested. These specimens have three cases of reinforcing bar ratio, 0.009, 0.018 and 0.024. To verify the flexural behavior such as ultimate load, load-deflection and crack pattern, the flexural experiment were tested by using loading frame. Experimental results have shown that the flexural behavior are depend on the reinforcing bar ratio. Also the hollow slab with shear reinforcement have shown flexural behavior. Therefore, it is appropriate that the hollow slab is reinforced by shear reinforcement to improve the flexural performance of the hollow slab.
The hollow slab has advantages that its self-weight does not greatly increase notwithstanding the increase of its thickness and its flexural performance does not significantly degrade in comparison with general reinforced concrete slab. However, the utilization of the hollow slab is currently being underestimated in spite of structural system that enables economic design of building and construction of eco-friendly structure. the significant reasons for this situation is that the method of structural analysis and design for hollow slab is not generalized. In this study, to consider practical compressive zone of hollow slab, the equation for its flexural strength is proposed by the volume of compressive stress block according to neutral axis location in hollow section assumed. Existing estimation method of flexural strength of hollow slab considering only compressive zone above hollow part is evaluated as the most conservative method and the method estimating flexural strength by two alternative cross-section of hollow slab is evaluated as more practical method.
중공슬래브 시스템은 슬래브 두께가 증가해도 자중은 크게 증가하지 않으면서 일반슬래브에 비해서 휨강성이 크게 저하 되지 않는 장점이 있다. 그러나 이러한 장스팬 구조의 경우 바닥판 진동의 증가에 의한 사용성 문제가 발생할 수 있고, 특 히 중공슬래브의 경우 기존의 구조시스템과 동적특성이 상이하다. 따라서 진동에 대한 중공슬래브의 안전성 및 사용성 검 토가 요구되고 있으며, 이를 위한 실용적인 정밀해석이 필요하다. 본 연구에서는 효율적인 고유치 해석을 위하여 일방향 중공슬래브의 동적특성을 비교적 정확하게 나타낼 수 있는 등가의 플레이트 모델을 사용하였다. 결론적으로 등가플레이트 모델이 일방향 중공슬래브의 동적특정을 비교적 정확하게 나타나는 것으로 나타났다.
중공슬래브는 슬래브의 자중을 감소시킴으로써 콘크리트 하중을 제어하여 수직 구조 부재 하중 및 지진 하중의 양을 감소시키는 바닥구조시스템이다. 중공슬래브는 슬래브의 자중을 획기적으로 줄일 수 있지만 슬래브 내부의 중공부로 인하여 휨 및 전단강도가 감소하기 때문에 구조 성능의 예측이 매우 중요하다. 중공슬래브에 관한 국내외의 많은 연구에도 불구하고 일방향 중공슬래브의 전단보강에 따른 전단강도에 관한 연구는 많이 이루어지지 않고 있다. 따라서 본 연구에서는 전단보강 유무에 따른 일방향 중공슬래브의 파괴양상 분석과 산정식의 전단강도와 실험값의 전단강도의 비교를 통하여 일방향 중공슬래브의 전단보강의 필요성에 대해 검증하고자 한다.
In this study, the necessity of shear reinforcement for one-way voided slab is verified through the experiment. The shear reinforcement for one-way voided slab needs to be considered for improvement of its structural performance, according to analysis results about the shear strength and the failure mode of its specimens.
철근콘크리트 구조물의 전단거동은 수년간의 많은 연구에도 불구하고, 이론적으로 명확하게 규명하기에 어려운 문제중에 하나이다. 중공슬래브의 휨강도와 전단강도는 중공부로 인하여 감소되기 때문에, 이에 따른 구조물의 성능을 예측하는 것은 중요한 문제라 할 수 있다.현재 각국의 중공슬래브 전단설계기준은 실험에 의한 기준식을 제시하고 있다. 따라서 본 연구에서는 철근비에 따른 일방향 중공슬래브 전단강도 산정방법에 관한 연구를 수행하기 위해 실험결과를 분석하고, 전단강도 산정식들을 비교, 분석하였다.
The shear behavior of reinforced concrete structure is one of the difficult problems that are not identified theoretically clearly yet despite the efforts of researchers for several years. Since bending and shear strength of hollow slab may decrease due to hollow part inside slab, prediction of such structure performance is very important. In this study, the shear behavior of one-way hollow slab were analyzed through experiment to conduct study on estimation of shear strength, and after comparative evaluation of structure performance based on experiment results.
The objective of this study is about hollow core slab with GFRP (Glass Fiber Reinforced plastics) Reinforcing bar instead of using deformed bar. This experiment is planed because using GFRP Reinforcing bar instead of tension bar in existing RC hollow core slab will improve not only on the constructability but also on the durability by solving the corrosion of slab. As the result of the experimental study, GFRP Reinforcing bar and additional deformed bar appear to be superior compared to RC hollow core slab in structural ability.
The existing evaluation method of flexural strength of the hollow slab considering only compressive zone above the hollow part is conservatively evaluated. In this study, the practical compressive zone of the hollow slab are considered to evaluate its flexural performance according to neutral axis location