Load-bearing capacity of axially loaded circular concrete-filled steel tubular columns

Author:

Jegadesh Sankar1,Jayalekshmi Selvan2

Affiliation:

1. Department of Civil Engineering, National Institute of Technology, Tiruchirappalli, Tamil Nadu, India (corresponding author: )

2. Department of Civil Engineering, National Institute of Technology, Tiruchirappalli, Tamil Nadu, India

Abstract

Concrete-filled steel tube structures have experienced rapid development in recent decades. Simplified methods have been proposed in design codes, such as BS EN 1994-1-1:2004 (Eurocode 4), Mander and co-workers, as well as Lu and Zhao, have proposed a simplified model to determine the load-bearing capacity of concrete-filled steel tubular columns. This paper presents an analysis of the test results of 311 specimens of axially loaded, concrete-filled steel tube circular columns available from the literature with length/diameter (L) ratio greater than 4. The test results are compared with international design codes and equations. A comparative study of the variable parameters such as concrete compressive strength, yield strength of steel and diameter/thickness (D) ratio is also presented. Their influence on the estimation of ultimate load capacity of concrete-filled steel tube columns and their impact on the proposed design codes and theoretical equations are analysed.

Publisher

Thomas Telford Ltd.

Subject

Building and Construction,Civil and Structural Engineering

Reference27 articles.

1. Behavior of CFSTs and CCFSTs under quasi-static axial compression

2. Capilla AE (2012) Numerical Analysis of the Fire Resistance of Circular and Elliptical Slender Concrete Filled Tubular Columns. PhD thesis, Department of Construction Engineering and Civil Engineering Projects, University Politecnica De Valencia, Valencia, Spain.

3. Behaviour of normal and high strength concrete-filled compact steel tube circular stub columns

4. Behavior and strength of circular concrete-filled tube columns

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