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Examination of Seismic Performance for Structure with Seismic Members made by High Strength Steel

고강도강 내진성능 향상부재를 적용한 건물 성능 비교

  • Received : 2014.08.19
  • Accepted : 2015.03.26
  • Published : 2015.06.27

Abstract

Seismic members like damper do not have any treatment of preventing story stiffness reduction after elastic yielding of stories causing story collapse. This paper suggests a method able to prevent story stiffness reduction using high-strength steel. This paper suggests these also : (1) High-strength steel stud column reinforcing story stiffness reduction until story drift 0.02rad can be designed in small area without adjusting layout. (2) Suggested seismic member installing at lowest level shows effects to preventing deformation concentration under huge seismic waves.

댐퍼를 비롯한 대부분의 내진성능 향상 부재는 골조를 구성하는 주요구조부재가 소성상태에 진입한 다음 나타나는 층 강성 저하에 대한 대처가 없어 대지진 시 건물의 층 파괴를 방지하지 못할 가능성이 높다. 이에 본 논문은 건물의 주요부재가 탄성항복한 뒤에도 건물의 층 강성을 일정기간 유지시킬 수 있는 고강도강 내진성능 향상부재를 제안한다. 본 논문에서는 다음과 같은 사실을 알 수 있다. (1) 골조의 소성화 항복 후 저감된 수평내력을 보강하는 탄성 부재를 제안방식으로 설계 시 기존 면적을 방해하지 않는 작은 단면으로 최대 층간변형각 0.02rad 까지 내력 저감 보강 가능 (2) 제안 내진성능 향상부재의 최저 적용으로도 설계 레벨을 상회하는 거대 지진에서 과다변형집중방지에 상당한 효과를 발휘하는 것을 확인.

Keywords

References

  1. Architecturak Institute of Japan (2011) Website about Higashi Nihon Huge Earthquake in AIJ, available in , retrieved January 1, 2014 (in Japanese).
  2. Uetani, K. and Tagawa, H. (1996) Deformation Concentration Phenomena in the Process of Dynamic Collapse of Weak-beam-type Frame, AIJ Journal of Structural and Construction Engineering, Vol.483, pp.51-60.
  3. Tagawa, H., Uetani, K., Tachibana, A., and Yoshidam N. (1998) Experimental Study on Collapse Behavior of Weakbeam Planner Frame Subjected to Repeated Horizontal Loading, AIJ Journal of Structural and Construction Engineering, Vol.513, pp.89-96.
  4. Araki, Y., Kim, M.J., Hamada, Y., and Kimura, H. (2010) Prevention of Excessive Residual Deformation by Controlling Post-yield Story Stiffness Using High-strength Steel Stud Column, Steel Construction Engineering, Vol.17, No.65 (in Japanese).
  5. Hamada, Y., Kimura, H., Kim, M.J., Araki, Y., and Uetani, K. (2008) A Method for Suppressing Deformation Concentration Phenomena in a Steel Tall Frame Using High Strength Steel Column, Proceedings of Annual Meeting of Architectural Institute of Japan (in Japanese).
  6. Japanese Industrial Property (2004) Registration Number JP,3807360,B.
  7. Korean Intellectual Property office (2014) Registration Number 10-1403660.
  8. Perform 3D : Computer and Structures, Inc. (2006) Perform-3D Nonlinear Analysis and Performance Assessment for 3D Structures, Version 4, CSI, Berkeley.
  9. Building Center of Japan(1992), BCJ L2 wave, available in , retrieved January 1, 2014 (in Japanese).
  10. Prestandard and Commentary for the Seismic Rehabilitation of Buildings (2000), FEMA 356, available in , retrieved January 1, 2014 (in Japanese).

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