Article ID Journal Published Year Pages File Type
308452 Thin-Walled Structures 2016 14 Pages PDF
Abstract

•The column is a track-shaped rebar stiffened CFRT stub column.•A 3D FE model is developed to analyze the mechanical properties of SCFRT columns.•A practical calculation formula for the SCFRT stub columns is proposed.

This paper presents a combined experimental, numerical, and theoretical study on the mechanical behaviors of track-shaped concrete-filled steel tubular (SCFRT) stub columns stiffened by rebars under compressive load. A total of 18 track-shaped concrete-filled steel tubular specimens including 12 specimens stiffened by rebars and 6 non-stiffened counterparts are tested, with consideration of parameters including flakiness ratio, concrete strength, and stiffeners. Failure pattern, bearing capacity, and ductility are all analyzed and discussed based on the experimental results. The numerical simulation by finite element (FE) software ABAQUS is also conducted. Based on both experimental and numerical results, theoretical formula to predict the load-bearing capacity of SCFRT stub columns subjected to axial compression loading is established according to the superposition principle of ultimate load-bearing capacity with rational simplification. The proposed theoretical method provides accurate predictions on the load bearing capacity by comparing with experimental results from 18 groups of specimens.

Related Topics
Physical Sciences and Engineering Engineering Civil and Structural Engineering
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