DOI QR코드

DOI QR Code

Failure Behavior of Non-seismic RC Column with aspect ratio of 4.0

형상비 4.0인 비내진 철근콘크리트 기둥의 파괴거동

  • Ko, Seong-Hyun (Department of Civil Engineering, Jeju International University)
  • 고성현 (제주국제대학교 토목공학과)
  • Received : 2020.10.12
  • Accepted : 2020.11.27
  • Published : 2020.12.31

Abstract

Two octagonal RC bridge columns of small scale model were tested under cyclic lateral load with constant axial load. One in two specimens was solid cross section, the other was hollow cross section. The volumetric ratio of transverse spiral hoop of all specimens is 0.00206. The columns showed flexure-shear failure. Failure behavior and seismic performance were investigated. The test results showed that the structural performance of the hollow specimen such as initial crack pattern, initial stiffness, and energy dissipation performance was comparable to that of the solid specimen, but the lateral strength, ultimate displacement, energy dissipation performance of hollow specimen noticeably decreased after drift ratio of 3%.

축소모형 팔각형 기둥 실험체 2개를 제작하여 일정한 축력 하에서 반복 횡하중을 가력하는 실험을 수행하였다. 실험체는 중실단면과 중공단면이고 모든 실험체의 횡방향 나선철근 체적비는 0.00206의 값을 갖는다. 실험체들은 휨-전단 파괴거동을 보였다. 본 논문에서는 실험결과에 따른 파괴거동과 내진성능을 분석하였다. 실험결과, 중공 실험체는 초기강성, 초기 균열양상, 에너지 소산능력 등의 구조성능이 중실 실험체와 유사한 거동을 보였으나, 중공 실험체의 경우에는 3% 변위비 이후에 횡력, 극한변위, 에너지소산능력이 현저하게 감소되었다.

Keywords

References

  1. Ministry of Land, Infrastructure and Transport. (2019), Seismic Design Standard for Bridge (KDS 24 17 11), Seojong, Korea; MOLIT.
  2. Ministry of Land, Infrastructure and Transport. (2016), Seismic Design Standard for Bridge (KDS 14 20 22), Seojong, Korea; MOLIT.
  3. Ghee, A. B., Priestley, M. J. N., and Paulay, T. (1989), Seismic shear strength of Circular Reinforced Concrete Columns, ACI Structural Journal, 86(1), 45-59.
  4. Jaradat, O. A., McLean, D. I. and Marsh, M. L. (1998), Performance of Existing Bridge Columns under Cyclic Loading-Part 1: Experimental Results and Observed Behavior, ACI Structural Journal, 95(6), 695-704.
  5. Ko, S. H. (2012), Seismic Performance of Square RC Column Confined with Spirals. Journal of Korea Institute for Structural Maintenance Inspection, KSMI, 16(5), 88-97. https://doi.org/10.11112/jksmi.2012.16.5.088
  6. Ko, S. H. (2013), Displacement Ductility of Circular RC Column According to the Spacing of Spirals. Journal of Korea Institute for Structural Maintenance Inspection, KSMI, 17(2), 71-82. https://doi.org/10.11112/jksmi.2013.17.2.071
  7. Priestley, M. J. N., Seible, F. and Calvi, G. M. (1996), Seismic Design Retrofit of Bridges, John Willey and Sons, Inc., New York, 1996.
  8. Sim, J. I. and Yang, K. H., (2010), Influence of Anchorage of T-Plate on the Seismic Performance of RC Columns Strengthened with Unbounded Wire Rope Units, Journal of Korea Institute for Structural Maintenance Inspection, 14(1), 2010. 133-140. https://doi.org/10.11112/jksmi.2010.14.1.133
  9. Youm, K. S., Lee, S. H., Lee, Y. H., Song, J. J., Hwang and Y. K.,B (2009), Performance Evaluation of Scale-down Concrete Filled FRP Columns, Journal of Korea Institute for Structural Maintenance Inspection, 13(1), 135-144.