Simplified approach for evaluating residual strength of fire-exposed reinforced concrete columns

被引:0
作者
V. K. R. Kodur
N. K. Raut
X. Y. Mao
W. Khaliq
机构
[1] Michigan State University,Department of Civil and Environmental Engineering
[2] Bentley System Inc,Offshore Structural Analysis (SACS)
[3] Suzhou University of Science and Technology,Department of Civil Engineering
来源
Materials and Structures | 2013年 / 46卷
关键词
Fire resistance; Fire exposed columns; Reinforced concrete column; HSC column; Residual strength; Analytical procedure;
D O I
暂无
中图分类号
学科分类号
摘要
An approach for evaluating residual strength of reinforced concrete (RC) columns is presented in this paper. The approach is based on the maximum temperature attained in the concrete core and rebars, and associated reduction in strength of steel and concrete. For validating the proposed approach, post-fire residual strength tests were carried out on five high strength concrete columns. The test variables included type of concrete, presence of fibers (polypropylene and/or steel) in concrete and load ratio. The columns were loaded and exposed to a design fire, allowed to cool, and then residual strength tests were carried out. Results from these fire tests indicate that high strength concrete columns retain most of their room-temperature load carrying capacity after exposure to a design fire. A comparison of residual strength predictions with measured values from tests indicates that the proposed approach is capable of predicting the residual strength of fire-exposed RC columns.
引用
收藏
页码:2059 / 2075
页数:16
相关论文
共 52 条
[1]  
Chowdhury EU(2008)Residual behavior of fire-exposed reinforced concrete beams prestrengthened in flexure with fiber-reinforced polymer sheets ASCE J Compos Constr 12 61-68
[2]  
Bisby LA(1996)Study on load-carrying capacity and reliable index of reinforced concrete slab post-fire Fire Saf Sci 5 7-11
[3]  
Green MF(1990)Repairability of fire damaged structures, CIB W14 report Fire Saf J 16 251-336
[4]  
Kodur VK(1986)Strength of grade 60 reinforcing bars after exposure to fire temperatures Concr Int 8 17-19
[5]  
Dong YL(2002)Post-flashover fires for structural design Fire Saf J 37 83-105
[6]  
Fan WC(2009)Residual behavior of steel rebars and R/C sections after a fire Constr Build Mater 23 3546-3555
[7]  
Wang QG(2004)Experimental study of strength of high strength concrete under/after high temperature China Concr Cement Product 1 18-20
[8]  
Yang BR(2007)Nonlinear analysis of load-carrying capacity for bar buckling based on arc-length method Build Sci 23 9-12
[9]  
Drysdale DD(2010)An approach for evaluating the residual strength of fire-exposed RC beams Mag Concr Res 62 479-488
[10]  
Schneider U(2009)Guidelines for improving the standard fire resistance test specifications J ASTM Int 6 16-87