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Seismic Performance Test of a Steel Frame with Multi-action Hybrid Dampers

다중거동 복합형 감쇠장치를 적용한 철골골조의 내진성능실험

  • Roh, Ji Eun (Seismic Retrofit and Remodeling Research Center Dankook University) ;
  • Heo, Seok Jae (Seismic Retrofit and Remodeling Research Center Dankook University) ;
  • Lee, Sang Hyun (Department of Architectural Engineering, Dankook University)
  • 노지은 (단국대학교 리모델링연구소) ;
  • 허석재 (단국대학교 리모델링연구소) ;
  • 이상현 (단국대학교 건축공학과)
  • Received : 2018.03.27
  • Accepted : 2018.11.06
  • Published : 2019.01.01

Abstract

In this study, the effectiveness of a multi-action hybrid damper (MHD) composed of lead rubber bearing (LRB) and friction pad was verified in terms of seismic performance improvement of a frame structure. The LRB and the friction elements are connected in series, so the LRB governs the intial small deformation and the friction determines large deformation behavior. Cyclic loading tests were conducted by using a half scale steel frame structure with the MHD, and the results indicated that the structure became to have the stable trilinear hysteresis with large initial stiffness and first yielding due to the LRB, and the second yielding due to the friction. The MHD could significantly increase the energy dissipation capacity of the structure and the hysteresis curves obtained by tests were almost identical to the analytically estimated ones.

Keywords

References

  1. Kim DH. Experimental study on the seismic performance of hybrid buckling-restrained braces. Journal of KOSHAM. 2013 Aug;13(4):23-29.
  2. Kim JY, Jung IY, Kim HG, Kim DH. Evaluation on the structural performance of hybrid damper using high-damping lubber and steel. Jounal of Korean Association for Spatial Structures. 2016 Sep;16(3):99-106. https://doi.org/10.9712/KASS.2016.16.3.099
  3. Marshall JD, Charney FA. A hybrid passive control device for steel structures, I: Development and analysis. Journal of Constructional Steel Research. 2010;66(10):1278-1286. https://doi.org/10.1016/j.jcsr.2010.04.005
  4. Christopoulos C, Montgomery M. Viscoelastic coupling dampers (VCDs) for enhanced wind and seismic performance of high-rise buildings. Earthquake Engineering & Structural Dynamics. 2013;42(15):2217-2233. https://doi.org/10.1002/eqe.2321
  5. Roh JE, Lee SH. Experimental Evaluation of a Multi-action Hybrid Damper under Cyclic Loading. Journal of the Architectural Institute of Korea Structure & Construction). 2016;32(11):3-9. https://doi.org/10.5659/JAIK_SC.2016.32.11.3
  6. Lee SH, Min KW, Park JH, Lee RJ. Optimal design of friction dampers based on the story shear force distribution of a building structure. Journal of the Earthquake Engineering Society of Korea. 2005;9(6):21-30.
  7. Ahn TS, Kim YJ, Park JH, Kim HG, Jang DW, Oh SH. Experimental study on a cantilever type metallic damper for seismic retrofit of building structures. Journal of Korean Society of Steel Construction. 2012;24(2):149-161. https://doi.org/10.7781/kjoss.2012.24.2.149
  8. Moon KH, Han SH, Jo HC, Lee KS. Seismic retrofit design procedure using a friction damper. Journal of the Earthquake Engineering Society of Korea. 2011;15(6):45-53. https://doi.org/10.5000/EESK.2011.15.6.045
  9. MIN KW, Kim JK, Lee SH. Vibration tests of 5-storey steel frame with viscoelastic dampers. Engineering Structures. 2004;26(6): 831-839. https://doi.org/10.1016/j.engstruct.2004.02.004