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Abstract:
Fourteen specimens were tested under axial compression to investigate the behavior of concrete-filled stiffened square steel tubular stub columns. The stiffening effect was achieved by welding longitudinal stiffeners on the inside surfaces of the steel tubes. The main parameters varied in the test were width-thickness ratio of the steel tube and depth-thickness ratio of the stiffener. The load-deformation relationship curves of concrete-filled stiffened square steel tubular stub columns subjected to axial compression were analyzed using the finite element software ABAQUS. The analysis results were in good agreement with test results. On the basis of the experimentally verified reliability of the finite element model, mechanical behavior of the concrete-filled square steel tubular stub columns without reinforcing rib, with one reinforcing rib and with two reinforcing ribs were analyzed respectively and compared in terms of stress versus strain relationship curves, longitudinal stress distributions of steel tube and core concrete, and their interaction. The analysis results show that using stiffeners can result in the increas of maximum axial stress of core concrete and the tensile stress areas of steel tubes are decreased as a result of the welding stiffeners. The stability of steel tube is also improved. The confinement effect of concrete-filled stiffened square steel tubular stub columns is mainly developed at steel tube corners and the places where stiffeners were welded. And the confinement effect on steel tube corners can be enhanced with increased number of stiffeners.
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Source :
Journal of Building Structures
ISSN: 1000-6869
Year: 2011
Issue: 2
Volume: 32
Page: 75-82
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ESI Highly Cited Papers on the List: 0 Unfold All
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30 Days PV: 9
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