Fire resistance of eccentrically loaded slender concrete-filled steel tubular columns

Yao Yao, Hao Li, Hongcun Guo, Kanghai Tan

Research output: Contribution to journalArticlepeer-review

32 Scopus citations

Abstract

Computational analysis was performed to study the behavior of concrete filled steel tubular (CFST) slender columns subjected to eccentric load under fire conditions. To simulate the destruction process of the CFST slender columns under ISO-834 standard fire, a sequentially nonlinear thermal-stress finite element analysis was performed. Concrete tensile strength and stirrup ratio were incorporated in the numerical model. Compared with the experimental results, it shows that the developed model can predict the fire resistance of CFST slender columns subjected to eccentric load with reasonable accuracy. Based on the developed model, parametric study was performed to investigate the effect of load eccentricity ratio, yield strength of steel, compressive strength of concrete and the reinforcement ratio on fire resistance of CFST columns. Based on the computational study, the conventional Rankine approach was extended to predict fire resistance of the CFST slender columns subjected to eccentric load. The theoretical predictions show good agreement compared with experimental results.

Original languageEnglish
Pages (from-to)102-112
Number of pages11
JournalThin-Walled Structures
Volume106
DOIs
StatePublished - 1 Sep 2016

Keywords

  • Concrete-filled steel tubular
  • Eccentrically loaded
  • Finite element
  • Fire resistance
  • Rankine approach
  • Slender columns

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