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Cyclic Test of Shear Wall Damping Systems

전단벽 제진시스템의 반복가력실험

  • Received : 2012.08.14
  • Accepted : 2013.01.30
  • Published : 2013.02.27

Abstract

The objective of conventional seismic design is to ensure an acceptable safety level while avoiding catastrophic failures of structures and loss of life. Over the last many years, a large amount of research has been devoted into developing effective earthquake resistant systems in order to raise the seismic performance level of structures. The purpose of this study is to propose a new damping system, which realize not only increasing seismic performance but also easy repairing after an earthquake. The proposed damping system is slit in the bottom of wall with damping devices installed in the slit horizontally aiming to dissipate energy during earthquakes. Cyclic loading tests were conducted to investigate hysteretic behavior and energy dissipation capacity. Test results show that the proposed systems exhibit a stable hysteretic response and the energy dissipation in this system is concentrated on the damping devices.

기존 내진설계의 목적은 구조물의 갑작스런 피해로 인한 인명손실을 방지하는 것이다. 지난 수십년간 구조물의 내진성능을 향상시키기 위해서 효과적인 지진저항시스템을 개발하는 수많은 연구들이 진행되었다. 본 연구의 목적은 내진성능을 향상시킴과 동시에 지진 이후 보수가 편리하도록 하는 새로운 제진시스템을 제안하는데 있다. 제안된 제진시스템은 벽의 하부에 슬릿을 두고 제진장치가 수평으로 작동하도록 하여 지진에너지를 소산하도록 계획되었다. 제안된 시스템의 이력거동과 에너지소산능력을 조사하기 위해서 반복가력실험을 실시하였다. 실험결과는 제안된 시스템이 안정된 이력응답을 나타내며, 에너지의 소산은 제진장치에 집중되는 것을 보여준다.

Keywords

References

  1. Christopoulos, C. and Filiatrault, A. (2006) Principles of Passive Supplemental Damping and Seismic Isolation, IUSS Press.
  2. ASCE STANDARD (2007) Seismic Rehabilitation of Existing Buildings(ASCE 41-06), ASCE.
  3. ASCE STANDARD (2010) Minimum Design Loads for Buildings and Other Structures (ASCE 7-10), ASCE.
  4. Soong, T.T. and Dargush, G.F. (1997) Passive energy dissipation systems in structural engineering, John Wiley & Sons.
  5. 김현수, 강주원 (2012) 중약진지역에 대한 MR감쇠기가 구성된 스마트 면진시스템의 특성연구, 한국강구조학회 논문집, 한국강구조학회, 제24권, 제3호, pp.325-337. Kim, H.S. and Kang, J.W. (2012) Characteristics of smart base isolation system with MR damper for regions of low-to-moderate seismicity, Journal of Korean Society of Steel Construction, KSSC, Vol. 24, No. 3, pp.325-337 (in Korean). https://doi.org/10.7781/kjoss.2012.24.3.325
  6. Kim, H.J., Christopoulos, C., and Tremblay, R. (2004) Experimental characterization of bolt-stressed nonasbestos organic (NAO) material-to-steel interfaces, Report No. UT2004-3, Department of Civil Engineering, University of Toronto, Canada.
  7. 김현수, 최재혁(2009) 전단형 마찰댐퍼의 이력특성에 관한 실험적 연구, 2009년도 학술대회 발표집, 한국강구조학회, pp.155-156. Kim, H.S. and Choi, J.H. (2009) An Experimental Study on Hysteretic Characteristics of Shear-type Friction Damper, Proceedings of Annual Conference Korean Society of Steel Construction, KSSC, pp. 155-156 (in Korean).
  8. Bergman, D.M. and Goel, S.C. (1987) Evaluation of cyclic testing of steel plate devices for added damping and stiffness, Report UMCE87-10, University of Michigan, Ann Arbor, MI.
  9. Tsai, K., Chen, H., Hong, C., and Su, Y. (1993) Design of steel triangular plate energy absorbers for seismic-resistant construction, Earthquake Spectra, Vol. 9, No. 3, pp.505-528. https://doi.org/10.1193/1.1585727
  10. 오상훈, 김영주, 유홍식, 강창훈(2006) 보의 하부플랜지에 에너지 흡수요소를 가지는 기둥-보 접합부의 이력특성, 대한건축학회구조계논문집, 대한건축학회, 제22권, 제8호, pp.29-36. Oh, S.H., Kim, Y.J., Ryu, H.S., and Kang, C.H. (2006) Hysteretic Characteristics of Beam-to-Column Connections with Energy Absorption Elements at Beam Bottom Flanges, Journal of Architectural Institute of Korea, AIK, Vol. 22, No. 8, pp.29-36 (in Korean).
  11. 오상훈, 최광용, 유홍식(2012) 고층 전단벽시스템 적용을 위한 직렬연결형 강재이력댐퍼의 구조성능평가, 한국강구조학회 논문집, 한국강구조학회, 제24권, 제4호, pp.371-383. Oh, S.H., Choi, K.Y., and Ryu, H.S. (2012) Performance Evaluations of Steel Hysteretic Damper in Series for High-Rise Shear Wall System, Journal of Korean Society of Steel Construction, KSSC, Vol. 24, No. 4, pp.371-383 (in Korean). https://doi.org/10.7781/kjoss.2012.24.4.371
  12. 안태상, 김영주, 박진화, 김형근, 장동운, 오상훈(2012) 건물의 내진보강을 위한 캔틸레버타입 강재댐퍼의 실험, 한국강구조학회 논문집, 한국강구조학회, 제24권, 제2호, pp.149-161. Ahn, T.S., Kim, Y.J. Park, J.W., Kim, H.G., Jang, D.W., and Oh, S.H. (2012) Experimental study on a Cantilever Type Metallic Damper for Seismic Retrofit of Building Structures, Journal of Korean Society of Steel Construction, KSSC, Vol. 24, No. 2, pp.149-161 (in Korean). https://doi.org/10.7781/kjoss.2012.24.2.149
  13. 안태상, 김영주, 김형근, 장동운, 오상훈, 김종락(2012) 본진의 크기와 여진을 고려한 전단벽 제진시스템에 관한 실험적 연구, 대한건축학회구조계논문집, 대한건축학회, 제28권, 제8호, pp.33-40. Ahn, T.S., Kim, Y.J. Kim, H.G., Jang, D.W., Oh, S.H., and Kim, J.R. (2012) Experimental Investigation of a Damping Shear Wall System Considering Aftershocks and the Size of the Main Shocks, Journal of Architectural Institute of Korea, AIK, Vol. 28, No. 8, pp.33-40 (in Korean).
  14. SH공사(2011) 공동주택 리모델링을 위한 지진제어시스템 개발, SH공사 도시연구소 연구보고서. SH Corporation (2011) Development of vibration control system for remodeling of apartment building, Research Center of SH.
  15. Benavent-Climent, A., Oh, S.H., and Akiyama, H. (1998), Ultimate energy absorption capacity of slit-type steel plates subjected to shear deformations, Journal of Structural and Construction Engineering, Vol. 503, pp.139-147.