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Influence of Column Aspect Ratio on the Hysteretic Behavior of Slab-Column Connection

슬래브-기둥 접합부의 이력거동에 대한 기둥 형상비의 영향

  • Choi, Myung-Shin (School of Architecture and Architectural Engineering, Hanyang University) ;
  • Cho, In-Jung (School of Architecture and Architectural Engineering, Hanyang University) ;
  • Ahn, Jong-Mun (Dept. of Architectural Design, Ansan College) ;
  • Shin, Sung-Woo (School of Architecture and Architectural Engineering, Hanyang University)
  • Published : 2007.08.31

Abstract

In this investigation, results of laboratory tests on four reinforced concrete flat plate interior connections with elongated rectangular column support which has been used widely in tall residential buildings are presented. The purpose of this study is to evaluate an effect of column aspect ratio (${\beta}_c={c_1}/{c_2}$=side length ratio of column section in the direction of lateral loading $(c_1)$ to the direction of perpendicular to $c_1$) on the hysteretic behavior under earthquake type loading. The aspect ratio of column section was taken as $0.5{\sim}3\;(c_1/c_2=1/2,\;1/1,\;2/1,\;3/1)$ and the column perimeter was held constant at 1200mm in order to achieve nominal vertical shear strength $(V_c)$ uniformly. Other design parameters such as flexural reinforcement ratio $(\rho)$ of the slab and concrete strength$(f_{ck})$ was kept constant as ${\rho}=1.0%$ and $f_{ck}=40MPa$, respectively. Gravity shear load $(V_g)$ was applied by 30 percent of nominal vertical shear strength $(0.3V_o)$ of the specimen. Experimental observations on punching failure pattern, peak lateral-load and story drift ratio at punching failure, stiffness degradation and energy dissipation in the hysteresis loop, and steel and concrete strain distributions near the column support were examined and discussed in accordance with different column aspect ratio. Eccentric shear stress model of ACI 318-05 was evaluated with experimental results. A fraction of transferring moment by shear and flexure in the design code was analyzed based on the test results.

본 연구는 주거용 고층 건물에서 폭넓게 사용되고 있는 플랫플레이트 구조에서 장방형 기둥-슬래브 접합부를 대상으로 실시한 4개의 실험 결과를 분석한 것이다. 이 연구의 목적은 지진하중과 같이 반복적으로 작용하는 횡하중에 대하여 기둥 단면의 형상비 (${\beta}_c=c_1/c_2$=횡하중과 나란한 방향의 기둥 단면의 크기/횡하중과 직교 방향의 기둥 단면의 크기)에 따른 접합부의 이력 거동을 비교 평가한 것이다. 기둥 단면의 형상비는 $0.5{\sim}3\;(c_1/c_2=1/2,\;1/1,\;2/1,\;3/1)$으로 선정되었고, 기둥 또는 슬래브 위험단면의 둘레 길이 $(b_o)$가 일정하지 않을 경우 공칭 수직 전단력 $(V_c)$의 크기기 변화하여 중력 전단력비의 차이가 발생하기 때문에 기둥 양변의 크기를 동시에 변화시켜서 $b_o$가 일정해 지도록 기둥 단면의 크기를 결정하였다. 그리고 슬래브 휨 철근비와 중력 전단력비 $(V_g/V_c)$ 등 접합부의 이력 거동에 영향을 줄 수 있는 다른 영향 인자들은 일정한 조건으로 계획하여 기둥 형상비의 영향을 고찰할 수 있도록 하였다. 일정 수직하중과 반복횡하중이 작용하는 슬래브_기둥 접합부의 실험을 통해서 뚫림전단파괴 양상과 균열 패턴, 철근 및 콘크리트의 변형률, 접합부의 강도와 강성, 그리고 변형 능력 등을 기둥 형상비 변수에 따라 분석하였다. 또한, ACI 318-05 설계기준의 편심 전단응력 모델에 의한 전단응력을 실험 결과와 비교하여 평가하였고, 실험 결과에 기초하여 휨과 전단에 의한 접합부 불균형모멘트 전달비율에 대한 검토를 하였다.

Keywords

References

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