Abstract:
Composite columns of steel and concrete have been used and studied world wide, but filled tubular columns need more attention. This paper presents an experimental study o...Show MoreMetadata
Abstract:
Composite columns of steel and concrete have been used and studied world wide, but filled tubular columns need more attention. This paper presents an experimental study on the behavior of short concrete filled steel tubular columns (CFT) axially loaded in compression to failure. A total of 28 specimens (16 were filled with concrete and 12 were kept hollow) with different cross-sections were tested to investigate the load capacity. The length-to-diameter ratios of these columns were between 4 and 9. Parameters for the tests were tube shape and diameter-to-thickness ratio. Some of the concrete filled columns had internal bracing of #3 deformed bars. The test results are compared with the theoretical results and previous studies. The results show that the confinement effect on concrete does play a role in increasing the compressive strengths to almost 60% in some cases. Based on the test results, an equation to estimate the ultimate axial compressive loading capacities is also proposed for square CFT columns.
Published in: Tsinghua Science and Technology ( Volume: 11, Issue: 6, December 2006)
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- IEEE Keywords
- Index Terms
- Concrete Strength ,
- Tubular Columns ,
- Compressive Strength ,
- Confinement Effect ,
- Axial Load ,
- Greater Than Or Equal ,
- Ultimate Strength ,
- Failure Modes ,
- Safety Factor ,
- Strain Hardening ,
- Deformation Behavior ,
- Cross-sectional Shape ,
- Circular Section ,
- Steel Tube ,
- Ductile Behavior ,
- Steel Pipe ,
- Slenderness Ratio ,
- Capacity Of Columns ,
- Local Buckling
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Concrete Strength ,
- Tubular Columns ,
- Compressive Strength ,
- Confinement Effect ,
- Axial Load ,
- Greater Than Or Equal ,
- Ultimate Strength ,
- Failure Modes ,
- Safety Factor ,
- Strain Hardening ,
- Deformation Behavior ,
- Cross-sectional Shape ,
- Circular Section ,
- Steel Tube ,
- Ductile Behavior ,
- Steel Pipe ,
- Slenderness Ratio ,
- Capacity Of Columns ,
- Local Buckling
- Author Keywords