4.5 Article

Resistance of special-shaped concrete-filled steel tube columns under compression and bending

Journal

JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH
Volume 169, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jcsr.2020.106038

Keywords

Special-shaped column; CFST column; Resistance; Bending; Eccentric compression

Funding

  1. Foundation of Key Laboratory of Structures Dynamic Behavior and Control (Ministry of Education) in Harbin Institute of Technology [30620180333]
  2. National Natural Science Foundation of China [51878098]
  3. National Key Research and Development Program of China [2016YFC0701201, 2017YFC0703805]
  4. Natural Science Foundation Project of CQ CSTC [cstc2019jcyj-msxmX0580]

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Design procedures for L-shaped and T-shaped concrete-filled steel tube (CFST) columns subjected to bending and compression loading scenarios were developed through parametric study using finite element (FE) models verified by existing experimental results. The finite element study on this special-shaped CFST column subjected to pure bending considered parameters of steel-to-concrete ratio alpha, steel yield strength f(y), concrete strength f(ck), and column limb width-to-thickness ratio B/t(w) (H/t(w)). For their behavior under eccentric compression, additional parameters of section stiffening pattern, loading angel theta, eccentricity, and axial compression ratio were included. Parametric analysis results show that steel-to-concrete ratio alpha, steel yield strength f(y) and column limb width-tothickness ratio B/t(w) (H/t(w)) have obvious influences on the flexural resistances of the special-shaped CFST columns, while concrete strength f(ck) has a small effect and can be ignored. The column limb width-to-thickness ratio B/t(w), steel to concrete ratio alpha, steel yield strength f(y), concrete compressive strength f(ck), loading angle theta, eccentricity e and section stiffening type have significant effects on the N-M correlation curves, and the convex portion of the N-M curves has a certain symmetry. The column limb width-to-thickness ratio B/t(w) and axial com- pression ration have significant effects on the shape of M-x-M-y correlation curves. Based on the FE analysis results, design formulae for calculating sectional flexural resistances were proposed for special-shaped CFST columns. Besides, simplified formulae were provided to conservatively predict the resistances of special-shaped CFST section and column under eccentric compression based on extensive analysis results of FE models. (C) 2020 Elsevier Ltd. All rights reserved.

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