DOI QR코드

DOI QR Code

Seismic Performance and Flexural Over-strength of Hollow Circular RC Column with Longitudinal Steel Ratio 2.017%

축방향철근비 2.017%인 중공 원형 RC 기둥의 내진성능과 휨 초과강도

  • 고성현 (제주국제대학교 토목공학과)
  • Received : 2016.08.08
  • Accepted : 2016.12.12
  • Published : 2017.01.01

Abstract

Three small scale hollow circular reinforced concrete columns with aspect ratio 4.5 were tested under cyclic lateral load with constant axial load. Diameter of section is 400 mm, hollow diameter is 200 mm. The selected test variable is transverse steel ratio. Volumetric ratios of spirals of all the columns are 0.302~0.604% in the plastic hinge region. It corresponds to 45.9~91.8% of the minimum requirement of confining steel by Korean Bridge Design Specifications, which represent existing columns not designed by the current seismic design specifications or designed by seismic concept. The longitudinal steel ratio is 2.017%. The axial load ratio is 7%. This paper describes mainly crack behavior, load-displacement hysteresis loop, seismic performance such as equivalent damping ratio, residual displacement and effective stiffness and flexural over-strength of circular reinforced concrete bridge columns with respect to test variable. The regulation of flexural over-strength is adopted by Korea Bridge Design Specifications (Limited state design, 2012). The test results are compared with nominal strength, result of nonlinear moment-curvature analysis and the design specifications such as AASHTO LRFD and Korea Bridge Design Specifications(Limited state design).

형상비(M/VD, shear span-depth ratio)가 4.5인 축소모형의 원형기둥 실험체 3개를 제작하였다. 철근콘크리트 기둥 실험체의 단면은 원형이고 중공단면으로 제작되었다. 철근콘크리트 기둥 실험체의 단면 지름은 400 mm, 중공 지름은 200 mm이다. 일정한 축력 하에서 반복하중을 가력하는 준정적 실험을 수행하였다. 실험체의 주요변수는 횡방향철근비이다. 모든 실험체의 횡방향 나선철근 체적비는 소성힌지 구간에서 0.302~0.604%의 값을 갖는다. 이 값은 도로교설계기준에서 요구하는 최소 심부구속철근 요구량의 45.9~91.8%에 해당하며, 이는 내진 설계가 되지 않은 기존 교각이나 내진설계개념으로 설계되는 교각을 나타낸다. 본 연구의 최종목적은 실험적 기초자료의 제공과 함께 성능단계별 균열거동, 하중-변위 이력곡선, 에너지 소산 능력, 등가점성감쇠비, 잔류변형, 유효강성 등 내진성능의 정량적 수치와 경향을 제공하기 위한 것이다. 본 논문에서는 실험결과를 통해 분석된 실험변수에 따른 실험결과들을 공칭강도, 비선형 모멘트-곡률 해석 결과, AASHTO LRFD 및 도로교설계기준(한계상태설계법)과 같은 기준들과 비교하였다.

Keywords

References

  1. AASHTO (2005), LRFD Bridge Design Specifications, American Association of State Highway and Transportation Officials, SI Unit, 3rd ed., Washington, DC, USA
  2. ATC/MCEER (2001), Recommended LRFD Guidelines for the Seismic Design of Highway Bridges, Part I : Specifications, Part II : Commentary and Appendices.
  3. ATC-32 (1996), Improved Seismic Design Criteria for California Bridges, Provisional Recommendations, Applied Technology Council, Redwood City, California.
  4. CALTRANS (2002), Caltrans Seismic Design Criteria, Version 1.3, California Department of Transportation, Sacramento, USA.
  5. CEN (1996), Design Provisions for Earthquake Resistance of Structures - Bridges, Eurocode 8 Part 2, European Committee for Standardization.
  6. Ko, S. H. (2012), 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. (in Koean) https://doi.org/10.11112/jksmi.2013.17.2.071
  7. 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 (in Koean). https://doi.org/10.11112/jksmi.2012.16.5.088
  8. Ko, S. H. (2014), Failure Behavior of Octagonal Flared RC Columns Using Oblong Hoops. Journal of Korea Institute for Structural Maintenance Inspection, KSMI, 18(3), 58-68 (in Koean). https://doi.org/10.11112/jksmi.2014.18.3.058
  9. Ko, S. H. (2015), Seismic Performance of Octagonal Flared RC Columns using Oblong Hoops. Journal of Korea Institute for Structural Maintenance Inspection, KSMI, 19(6), 1-9 (in Koean). https://doi.org/10.11112/jksmi.2015.19.6.001
  10. Ministry of Construction & Transportation (2012), Korea Bridge Design Specifications(Limited state design), Korea (in Koean).
  11. Transit New Zealand (1994), Bridge Manual, plus amendment No. 1, Wellington, New Zealand.