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Torsional Behaviour of Concrete Filled Circular Steel Tube Column Considering Confinement Effect  

Yun, Bok Hee (마이다스아이티 건축구조팀)
Lee, Eun Taik (중앙대학교 건축학부)
Park, Ji Young (대한주택공사)
Jang, Kyong Ho (중앙대학교 건설환경공학과)
Publication Information
Journal of Korean Society of Steel Construction / v.16, no.5, 2004 , pp. 529-541 More about this Journal
Abstract
Concrete filled steel tube structures were recently used in constructing high-rise buildings due to their effectiveness. Studies on concrete filled steel tubes have been focused on the experiments of uni-axial compression and bending and eccentric compression. There were also a few studies that investigated CFT member behavior under combined compression and torsion. The behavior of a circular CFT column under combined torsion and compression was theoretically investigated, considering the confinement of steel tubes on the concrete, the softening of the concrete, and the spiral effect, which were the dominant factors that influenced compression and torsion strength. The biaxial stress effects due to diagonal cracking were also taken into account. By applying those factors to compatibility and equilibrium conditions, the basic equation was derived, and the equation could be used to incorporate the torsional behavior of the entire loading history of the CFT member.
Keywords
concrete filled steel tube column; torsion; confined concrete; spiral effect; space truss; torsional strength; constitutive equation; diagonal crack;
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