Punching shear behavior of fiber reinforced polymers reinforced concrete flat slabs: Experimental study

被引:95
作者
El-Ghandour, AW [1 ]
Pilakoutas, K [1 ]
Waldron, P [1 ]
机构
[1] Univ Sheffield, Dept Civil & Struct Engn, Ctr Cement & Concrete, Sheffield S1 3JD, S Yorkshire, England
关键词
punching; fiber reinforced polymers; slabs; shear strength;
D O I
10.1061/(ASCE)1090-0268(2003)7:3(258)
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper presents the results of a two-phase experimental program investigating the punching shear behavior of fiber reinforced polymer reinforced concrete (FRP RC) flat slabs with and without carbon fiber reinforced polymer (CFRP) shear reinforcement. In the first phase, problems of bond slip and crack localization were identified. Decreasing the flexural bar spacing in the second phase successfully eliminated those problems and resulted in punching shear failure of the slabs. However, CFRP shear reinforcement was found to be inefficient in enhancing significantly the slab capacity due to its brittleness. A model, which accurately predicts the punching shear capacity of FRP RC slabs without shear reinforcement, is proposed and verified. For slabs with FRP shear reinforcement, it is proposed that the concrete shear resistance is reduced, but a strain limit of 0.0045 is recommended as maximum strain for the reinforcement. Comparisons of the slab capacities with ACI 318-95, ACI 440-98, and BS 8110 punching shear code equations, modified to incorporate FRP reinforcement, show either overestimated or conservative results.
引用
收藏
页码:258 / 265
页数:8
相关论文
共 17 条
[1]  
Achillides Z., 1997, P 3 INT S NONM FRP R, V2, P341
[2]  
*ACI, 1998, 440R98 ACI
[3]  
*ACI, 1995, 31895ACI
[4]  
*BRIT STAND I, 1985, 8110 BS BRIT STAND 1
[5]  
CLARKE JL, 1996, 1 SIR W HALCR PARTN
[6]  
ELGHANDOUR AW, 1997, P 3 INT S NONM FRP R, V2, P567
[7]  
ELGHANDOUR AW, 1998, P 8 EUR C COMP MAT E, V2, P399
[8]  
ELGHANDOUR AW, 1999, TMR EUR RES NETW CON
[9]  
ELGHANDOUR AW, 1999, THESIS U SHEFFIELD U
[10]  
ELGHANDOUR AW, 1999, P 2 MIDDL E S STRUCT, P200