Finite element investigation on the post-fire behavior of reinforced composite NSC-HPC slabs

被引:0
|
作者
Zalhaf, Nagat M. [1 ]
Ghazy, Mariam F.
Abd Elaty, Metwali A.
Zakaria, Mohamed Hamed [2 ]
机构
[1] Tanta Univ, Dept Struct Engn, Tanta, Egypt
[2] Kafrelsheikh Univ, Dept Civil Engn, Kafrelsheikh, Egypt
关键词
Elevated temperature; Composite slabs; 3D finite element models; HPC slabs; Residual flexural behavior; HIGH-STRENGTH CONCRETE; FLEXURAL BEHAVIOR; BOND STRENGTH; FIRE RESISTANCE; NUMERICAL-MODEL; PERFORMANCE; BEAMS; REPAIR; STEEL; TEMPERATURES;
D O I
10.1108/WJE-08-2023-0320
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
PurposeEven though it is widely used, reinforced concrete (RC) is susceptible to damage from various environmental factors. The hazard of a fire attack is particularly severe because it may cause the whole structure to collapse. Furthermore, repairing and strengthening existing structures with high-performance concrete (HPC) has become essential from both technical and financial points of view. In particular, studying the postfire behavior of HPC with normal strength concrete substrate requires experimental and numerical investigations. Accordingly, this study aims to numerically investigate the post-fire behavior of reinforced composite RC slabs.Design/methodology/approachConsequently, in this study, a numerical analysis was carried out to ascertain the flexural behavior of simply supported RC slabs strengthened with HPC and exposed to a particularly high temperature of 600 degrees C for 2 h. This behavior was investigated and analyzed in the presence of a number of parameters, such as HPC types (fiber-reinforced, 0.5% steel, polypropylene fibers [PPF], hybrid fibers), strengthening side (tension or compression), strengthening layer thickness, slab thickness, boundary conditions, reinforcement ratio and yield strength of reinforcement.FindingsThe results showed that traction-separation and full-bond models can achieve accuracy compared with experimental results. Also, the fiber type significantly affects the postfire performance of RC slab strengthened with HPC, where the inclusion of hybrid fiber recorded the highest ultimate load. While adding PPF to HPC showed a rapid decrease in the load-deflection curve after reaching the ultimate load.Originality/valueThe proposed model accurately predicted the thermomechanical behavior of RC slabs strengthened with HPC after being exposed to the fire regarding load-deflection response, crack pattern and failure mode. Moreover, the considered independent parametric variables significantly affect the composite slabs' behavior.
引用
收藏
页码:61 / 80
页数:20
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