Dynamic punching shear tests of flat slab-column joints with 5D steel fibers

被引:3
作者
Alvarado, Yezid A. [1 ]
Torres, Benjamin [2 ]
Buitrago, Manuel [3 ]
Ruiz, Daniel M. [1 ]
Torres, Sergio Y. [1 ]
Alvarez, Ramon A. [1 ]
机构
[1] Pontificia Univ Javeriana, Calle 40 5-50 Ed Jose Gabriel Maldonado, Bogota, Colombia
[2] Univ Alicante, Dept Civil Engn, Ap 99, San Vicente Del Raspeig 03080, Spain
[3] Univ Politecn Valencia, ICITECH, Camino Vera S-N, Valencia 46022, Spain
关键词
5D steel fiber; cyclic load; double hooked end steel fiber; dynamic punching; slab-column joint; steel fiber reinforced concrete; SEISMIC BEHAVIOR; FLEXURAL MEMBERS; CYCLIC BEHAVIOR; CONCRETE; PERFORMANCE; STRENGTH; BUILDINGS; CONNECTIONS;
D O I
10.12989/sem.2022.81.3.281
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This study aimed to analyze the dynamic punching shear performance of slab-column joints under cyclic loads with the use of double-hooked end (5D) steel fibers. Structural systems such as slab-column joints are widely found in infrastructures. The susceptibility to collapse of such structures when submitted to seismic loads is highly dependent on the structural performance of the slab-column connections. For this reason, the punching capacity of reinforced concrete (RC) structures has been the subject of a great number of studies. Steel fibers are used to achieve a certain degree of ductility under seismic loads. In this context, 5D steel hooked fibers provide high levels of fiber anchoring, tensile strength and ductility. However, only limited research has been carried out on the performance under cyclic loads of concrete structural members containing steel fibers. This study covers this gap with experimental testing of five different full-scale subassemblies of RC slab-column joints: one without punching reinforcement, one with conventional punching reinforcement and three with 5D steel fibers. The subassemblies were tested under cyclic loading, which consisted of applying increasing lateral displacement cycles, such as in seismic situations, with a constant axial load on the column. This set of cycles was repeated for increasing axial loads on the column until failure. The results showed that 5D steel fiber subassemblies: i) had a greater capacity to dissipate energy, ii) improved punching shear strength and stiffness degradation under cyclic loads; and iii) increased cyclic loading capacity.
引用
收藏
页码:281 / 292
页数:12
相关论文
共 48 条
[11]  
Au FTK, 2005, P I CIVIL ENG-STR B, V158, P21, DOI 10.1680/stbu.2005.158.1.21
[12]   Seismic behavior of interior connections in existing waffle-flat-plate structures [J].
Benavent-Climent, A. ;
Cahis, X. ;
Catalan, A. .
ENGINEERING STRUCTURES, 2008, 30 (09) :2510-2516
[13]  
Calavera J, 2005, PATOLOGIA ESTRUCTURA
[14]  
Canbolat BA, 2005, ACI STRUCT J, V102, P159
[15]  
Canovas MF, 1982, INF CONSTR, V34, P5
[16]   A review of research on seismic behaviour of irregular building structures since 2002 [J].
De Stefano, Mario ;
Pintucchi, Barbara .
BULLETIN OF EARTHQUAKE ENGINEERING, 2008, 6 (02) :285-308
[17]   Development and evaluation of punching shear database for flat slab-column connections without shear reinforcement [J].
Derogar, Shahram ;
Ince, Ceren ;
Mandal, Parthasarathi .
STRUCTURAL ENGINEERING AND MECHANICS, 2018, 66 (02) :203-215
[18]   Japanese seismic rehabilitation of concrete buildings after the Hyogoken-Nanbu Earthquake [J].
Fukuyama, H ;
Sugano, S .
CEMENT & CONCRETE COMPOSITES, 2000, 22 (01) :59-79
[19]   The impact of the 26 December 2004 earthquake and tsunami on structures and infrastructure [J].
Ghobarah, A ;
Saatcioglu, M ;
Nistor, I .
ENGINEERING STRUCTURES, 2006, 28 (02) :312-326
[20]   Neuro-fuzzy optimisation to model the phenomenon of failure by punching of a slab-column connection without shear reinforcement [J].
Hafidi, Mariam ;
Kharchi, Fattoum ;
Lefkir, Abdelouhab .
STRUCTURAL ENGINEERING AND MECHANICS, 2013, 47 (05) :679-700