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Seismic Performance Evaluation of Concrete-filled U-shaped Mega Composite Beams

콘크리트 채움 U형 메가 합성보의 내진성능 평가

  • Lee, Cheol Ho (Department of Architecture and Architectural Engineering, Seoul National University) ;
  • Ahn, Jae Kwon (Department of Architecture and Architectural Engineering, Seoul National University) ;
  • Kim, Dae Kyung (SEN Structural Engineers Co., Ltd.) ;
  • Park, Ji-Hun (Division of Architecture and Urban Design, Incheon National University) ;
  • Lee, Seung Hwan (SEN Coretech)
  • Received : 2016.05.22
  • Accepted : 2016.11.03
  • Published : 2017.04.27

Abstract

In this paper, the applicability of a 1900mm-deep concrete-filled U-shaped composite beam to composite ordinary moment frames (C-OMFs) was investigated based on existing test results from smaller-sized specimens and supplemental numerical studies since full-scale seismic testing of such a huge sized beam is practically impossible. The key issue was the web local buckling of concrete-filled U section under negative bending. Based on 13 existing test results compiled, the relationship between web slenderness and story drift capacity was obtained. From this relationship, a 1900mm-deep mega beam, fabricated with 25mm-thick plate was expected to experience the web local buckling at 2% story drift and eventually reach a story drift over 3%, thus much exceeding the requirements of C-OMFs. The limiting width to thickness ratio according to the 2010 AISC Specification was shown to be conservative for U section webs of this study. The test-validated supplemental nonlinear finite element analysis was also conducted to further investigate the effects of the horizontal stiffeners (used to tie two webs of a U section) on web local buckling and flexural strength. First, it is shown that the nominal plastic moment under negative bending can be developed without using the horizontal stiffeners, although the presence of the stiffeners can delay the occurrence of web local buckling and restrain its propagation. Considering all these, it is concluded that the 1900mm-deep concrete-filled U-shaped composite beam investigated can be conservatively applied to C-OMFs. Finally, some useful recommendations for the arrangement and design of the horizontal stiffeners are also recommended based on the numerical results.

본 연구에서는 1900mm급의 춤이 깊은 콘크리트 채움 U형 메가 합성보의 합성보통모멘트골조에 대한 적용성을 검토하였다. 대형 합성보의 실물대 내진성능실험에 대한 현실적 제약으로 인하여 작은 규모의 실험체에 대해 수행된 기존 실험결과의 분석과 수치해석연구의 보완을 통해 연구를 수행하였다. 이러한 형태의 합성보는 부모멘트 작용시의 웨브국부좌굴이 가장 중요하므로 선행 실물대 실험결과로부터 웨브의 판폭두께비와 층간변형능력 사이의 관계를 분석하였다. 그 결과, 25mm 두께의 U형 강재단면을 지닌 1900mm급의 대형 합성보라 하더라도 층간변위각 2% 이후 웨브국부좌굴을 경험하고 3% 이후 최대변형에 도달하는 것으로 확인되었다. 이는 합성보통모멘트골조의 요구조건을 상회하는 것으로 AISC 기준에 따른 웨브 판폭두께비 제한이 본 연구의 U형 단면에는 보수적임을 시사하기도 한다. 유한요소해석을 통해서는 합성보의 휨성능 및 웨브국부좌굴에 대한 수평스티프너의 영향을 분석하였다. 대형 합성보는 스티프너 보강과 관련없이 부모멘트 방향으로 공칭소성모멘트 이상의 휨성능을 발휘하였으며, 스티프너를 보강할 경우에는 웨브국부좌굴이 상당히 지연되는 긍정적인 효과가 있었다. 이상의 실험결과 분석 및 해석연구에 의하면 1900mm급의 춤이 깊은 콘크리트 채움 U형 메가 합성보는 합성보통모멘트골조에 보수적으로 적용가능한 것으로 판단된다.

Keywords

References

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