结构工程
材料科学
参数统计
平方(代数)
延展性(地球科学)
防火性能
耐火性
有限元法
复合材料
蠕动
工程类
几何学
数学
统计
作者
Hongjie Zhu,Mizan Ahmed,Chenliu Li,Xiao Kong,Shicai Chen,Qingtian Yang,Habibah Ghazali,Qing Quan Liang
标识
DOI:10.1016/j.engstruct.2024.118882
摘要
Square double-skin concrete-filled steel tubular (DSCFST) columns and concrete-filled double steel (CFDST) columns possess excellent load-carrying capacity and ductility. However, there has been limited research on the responses of DSCFST and square CFDST columns exposed to fire. This paper presents a series of tests on such columns loaded concentrically to determine the effects of the steel tube thickness, the strength of materials, load ratio, and boundary conditions on their fire resistance. Additionally, finite element (FE) models are established using ABAQUS, in which the concrete's transient creep strain is considered through the development of the user-subroutine UEXPAN. A parametric study is undertaken by simulating 156 FE models to further study the behavior of DSCFST and CFDST columns under fire exposure. The fire test and numerical results suggest that both the load ratio and strengths of the internal tube and concrete core play significant roles in determining the fire resistance of DSCFST and CFDST columns. The developed FE models are demonstrated to capture well the fire behavior of loaded DSCFST and CFDST columns. The proposed design model predicts the ultimate loads of DSCFST columns with good accuracy; therefore, it can be employed in the practical design of DSCFST columns. • Fire tests on the responses of square DSCFST and CFDST columns are described. • The effects of important design parameters on the fire resistance are investigated. • FE model is developed to simulate the fire performance of square CFDST columns. • FE and design models predict well the fire performance of square CFDST columns.
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