Experimental Study on the Seismic Performance of L-Shaped CFST Columns in Different Combinations

Author:

Han Dongji12,Tao Zhong23,Abdul Ghafar Wahab23ORCID,Hasan Md Mehedi2ORCID,Xiao Weichao1,Wang Tao1,Zhou Kun1,Dai Hongye1

Affiliation:

1. 3rd Construction Co., Ltd. of China Construction 5th Engineering Bureau, Changsha 410000, China

2. Faculty of Civil Engineering and Mechanics, Kunming University of Science and Technology, Kunming 650500, China

3. Yunnan Earthquake Engineering Research Institute, Kunming 650000, China

Abstract

L-shaped concrete-filled steel tubular (CFST) columns represent a valuable structural element with an L-shaped cross-section, primarily employed in the corner columns of framed structures. These columns offer several advantages, including space efficiency by avoiding column protrusion, robust mechanical properties, high load-bearing capacity, ductility, and efficient utilization of internal building space. This article presents the outcomes of an experimental investigation into the seismic behavior of L-shaped CFST columns. The experimental study investigated the seismic performance of nine L-shaped CFST columns while considering different cross-sectional dimensions, their combinations, and varying levels of confinement. The results obtained from this study indicate that L-shaped CFST columns possess favorable seismic performance characteristics. However, there exists the potential for significant improvement by modifying certain parameters. Enhancements in seismic performance were observed when increasing the cross-sectional dimensions of the column and the length of its legs. The use of steel tubes and the provision of adequate confinement also demonstrated notable benefits. Moreover, the better arrangement of steel tubes within the column positively influenced seismic performance. These findings can potentially inform and enhance the design of L-shaped CFST columns, rendering them more resilient to seismic forces.

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

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