4.5 Article

Analysis and calculation method for concrete-encased CFST columns under eccentric compression

Journal

JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH
Volume 206, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jcsr.2023.107927

Keywords

Concrete-encased CFST columns; Finite element analysis; N-M interaction curve; Bearing capacity

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This paper presents a computational method for analyzing concrete-encased concrete-filled steel tube (CFST) columns under eccentric compression. The method considers the confinement effect provided by stirrups and incorporates it into the constitutive law of encased concrete. The accuracy of the method is verified through numerous tests and a created database of 207 models with various parameters. The results show that the method is applicable to a wide range of structures and has sufficient precision, although it may underestimate the N-M interaction curves due to the ignorance of exact integration about irregular section shapes.
This paper presents a computational method for concrete-encased concrete-filled steel tube (CFST) columns under eccentric compression, which adopts the form of equivalent rectangular stress integrated by material constitutive curve. When establishing finite element model via ABAQUS, confinement provided by stirrup was considered to modify the constitutive law of encased concrete, so that the numerical modeling was in good agreement with tests. By analyzing the simulation results, the applicability of basic assumptions, such as plane section assumption, was discussed, and a database of 207 models with various parameters was created. The developed method took into account the influences of geometric nonlinearities of section shape, and its accuracy was verified against various collected tests and the database. It turned out that the formula presented was applicable to a wide range and had sufficient precision, while the predictions of N -M interaction curves of concrete-encased CFST columns in EC4, AISC and CECS were conservative due to the ignorance of the exact integration about irregular section-shape.

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