Seismic performance of reinforced concrete beam-column joint strengthening by frp sheets

被引:69
作者
Attari, Nassereddine [1 ]
Youcef, Youcef Si [1 ]
Amziane, Sofiane [2 ]
机构
[1] EPAU, LVAP, BP177, Algiers, Algeria
[2] Univ Blaise Pascal, Polytech Clermont Ferrand, Dept Genie Civil, F-63174 Aubiere, France
关键词
Beam column-joint; Strengthening; Seismic performance; Hybrid FRP; Fibre reinforced polymer; CYCLIC PERFORMANCE; CFRP; REHABILITATION; SUBASSEMBLIES; CONNECTIONS; GFRP;
D O I
10.1016/j.istruc.2019.04.007
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Reinforced concrete beam-column joints are generally recognised as critical regions in frame structures which experience severe inelastic deformations during earthquakes. This paper presents the results of an experimental campaign to investigate the optimal seismic performance of a method of strengthening reinforced concrete beam-column joints. Ten reinforced concrete beam-column joints, at a scale of one to three (1/3), were subjected to reverse cyclic loading under constant axial load to simulate an earthquake, and tested with the deflection being monitored. The joints were strengthened with fibre-reinforced polymer (FRP) systems, made up of a combination of carbon and fibreglass fabric, and a hybrid braided FRP fabric. Of these, four samples were strengthened with different FRP systems, while two were used as benchmarks. Once damaged, four specimens were repaired with FRP and re-tested. Strain and cracking fields were monitored using an Aramis digital video camera. The test results provided useful information on the strengthening configurations adopted, in relation to strength, ductility and energy dissipation capacity. The results establish the efficiency of glass fibre GFRP in upgrading deficient beam-column joints in an equivalent proportion than carbon fibre CFRP. It was observed that using of a hybrid sheet (Glass-Carbon) improves the ductility and dissipation energy of the RC joints to a great extent, with a highly competitive cost.
引用
收藏
页码:353 / 364
页数:12
相关论文
共 36 条
[1]   Strengthening of precast RC beam-column connections for progressive collapse mitigation using bolted steel plates [J].
Al-Salloum, Yousef A. ;
Alrubaidi, Mohammed A. ;
Elsanadedy, Hussein M. ;
Almusallam, Tarek H. ;
Iqbal, Rizwan A. .
ENGINEERING STRUCTURES, 2018, 161 :146-160
[2]  
[Anonymous], 1992, 199211 EN, P135
[3]  
Antonopoulos CP, 2003, J COMPOSITES CONSTRU, V7
[4]   Flexural strengthening of concrete beams using CFRP, GFRP and hybrid FRP sheets [J].
Attari, N. ;
Amziane, S. ;
Chemrouk, M. .
CONSTRUCTION AND BUILDING MATERIALS, 2012, 37 :746-757
[5]   Efficiency of Beam-Column Joint Strengthened by FRP Laminates [J].
Attari, N. ;
Amziane, S. ;
Chemrouk, M. .
ADVANCED COMPOSITE MATERIALS, 2010, 19 (02) :171-183
[6]  
Baraka M, 1995, P 7 CAN C EARTHQ ENG, P871
[7]  
Bracci JM, 1995, ACI STRUCT J, V92, P711
[8]   Flexural response of external RC beam-column joints externally strengthened with steel cages [J].
Campione, G. ;
Cavaleri, L. ;
Papia, M. .
ENGINEERING STRUCTURES, 2015, 104 :51-64
[9]   A review on the bond behavior of FRP NSM systems in concrete [J].
Coelho, Mario R. F. ;
Sena-Cruz, Jose M. ;
Neves, Luis A. C. .
CONSTRUCTION AND BUILDING MATERIALS, 2015, 93 :1157-1169
[10]   Seismic rehabilitation of beam-column joint using GFRP sheets [J].
El-Amoury, T ;
Ghobarah, A .
ENGINEERING STRUCTURES, 2002, 24 (11) :1397-1407