Lateral torsional buckling of ultra-high-performance fibre-reinforced concrete girders

  • Lee, Keesei
  • Andrawes, Bassem
  • Lee, Jeonghwa
  • Kang, Young Jong
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초록

Ultra-high-performance fibre-reinforced concrete (UHPFRC) is a relatively newly developed construction material that not only has high compressive strength (greater than 150 MPa), but also high tensile strength (10-20 MPa). The use of UHPFRC enables the design of slender structural members; hence, instability could become a major governing failure mode. However, the estimation of buckling strength for a concrete structure is not easy, owing to its material characteristics. In this paper, the lateral torsional bucking behaviour and strength of ultra-high-performance concrete I-beams are discussed. A methodology is introduced to obtain the effective moment of inertia of UHPFRC I-beams, considering tensile cracks. By using the effective moment of inertia, the linear elastic buckling strength can be calculated. In addition, the inelastic lateral torsional buckling behaviour is investigated through finite-element analysis. A generalised buckling strength curve with a slenderness parameter is discussed. As a result, the limitations for classification of compact and non-compact members are defined, and lateral torsional buckling strength equations are suggested for a simply supported UHPFRC I-girder subjected to centre point loading. Several experimental studies were also conducted, and the results are applied to verify the final results.

키워드

beams & girdersfailurestructural analysisBEAMSSTRENGTHBEHAVIOR
제목
Lateral torsional buckling of ultra-high-performance fibre-reinforced concrete girders
저자
Lee, KeeseiAndrawes, BassemLee, JeonghwaKang, Young Jong
DOI
10.1680/jmacr.18.00180
발행일
2020-08
유형
Article
저널명
Magazine of Concrete Research
72
16
페이지
820 ~ 836