Behavior of hybrid double skin concrete filled circular steel tube columns

Jin Kook Kim, Hyo Gyoung Kwak, Ji Hyun Kwak

Research output: Contribution to journalArticlepeer-review

25 Scopus citations

Abstract

A hybrid double skin concrete filled (HDSCF) circular steel tube column is proposed in this study. The yield strength of the outer steel tube is larger than 690MPa and the inner tube has less strength. In order to achieve efficiency with the high strength outer tube, a feasibility study on reducing the thickness of the tube below the specified design codes for CFTs was conducted based on an experimental approach. The experiment also took variables such as thickness of the inner tube, hollow ratio, and strength of concrete into consideration to investigate the behavior of the HDSCF column. In order to estimate the applicability of design equations for CFTs to the HDSCF column, test results from CFT and HDSCF columns with design codes were compared. It was found that the axial compressive performance of the proposed HDSCF column is equivalent to that of the conventional CFT member irrespective of design variables. Furthermore, the design equation for a circular CFT given by EC4 is applicable to estimate the ultimate strength of the HDSCF circular steel tube column.

Original languageEnglish
Pages (from-to)191-204
Number of pages14
JournalSteel and Composite Structures
Volume14
Issue number2
DOIs
StatePublished - Feb 2013

Keywords

  • 690mpa
  • CFT
  • Confinement
  • Double skin
  • Hybrid

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