CONSTITUTIVE MODEL OF STEEL FIBRE REINFORCED CONCRETE SUBJECTED TO HIGH TEMPERATURES

被引:16
作者
Blesak, Lukas [1 ]
Goremikins, Vadims [2 ]
Wald, Frantisek [1 ]
Sajdlova, Tereza [3 ]
机构
[1] Czech Tech Univ, Dept Steel & Timber Struct, Thakurova 7, Prague, Czech Republic
[2] Riga Tech Univ, Inst Struct Engn & Reconstruct, Azenes 16, Riga, Latvia
[3] Czech Tech Univ, Dept Mech, Thakurova 7, Prague, Czech Republic
关键词
SFRC material behaviour; four-point bending test; finite element modelling;
D O I
10.14311/AP.2016.56.0417
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Research on structural load- bearing systems exposed to elevated temperatures is an active topic in civil engineering. Carrying out a full-size experiment of a specimen exposed to fire is a challenging task considering not only the preparation labour but also the necessary costs. Therefore, such experiments are simulated using various software and computational models in order to predict the structural behaviour as exactly as possible. In this paper such a procedure, focusing on software simulation, is described in detail. The proposed constitutive model is based on the stress-strain curve and allows predicting SFRC material behaviour in bending at ambient and elevated temperature. SFRC material is represented by the initial linear behaviour, an instantaneous drop of stress after the initial crack occurs and its consequent specific ductility, which influences the overall modelled specimen behaviour under subjected loading. The model is calibrated with ATENA FEM software using experimental results.
引用
收藏
页码:417 / 424
页数:8
相关论文
共 23 条
[1]  
[Anonymous], 2004, 199212 EN EUR COMM S
[2]   Fracture energy of steel fiber-reinforced concrete [J].
Barros, JAO ;
Cruz, JS .
MECHANICS OF COMPOSITE MATERIALS AND STRUCTURES, 2001, 8 (01) :29-45
[3]   Experiments on membrane action of composite floors with steel fibre reinforced concrete slab exposed to fire [J].
Bednar, Jan ;
Wald, Frantisek ;
Vodicka, Jan ;
Kohoutkova, Alena .
FIRE SAFETY JOURNAL, 2013, 59 :111-121
[4]   Fracture behavior of concrete beams reinforced with mixed long/short steel fibers [J].
Caggiano, Antonio ;
Cremona, Marco ;
Faella, Ciro ;
Lima, Carmine ;
Martinelli, Enzo .
CONSTRUCTION AND BUILDING MATERIALS, 2012, 37 :832-840
[5]   Zero-thickness interface model formulation for failure behavior of fiber-reinforced cementitious composites [J].
Caggiano, Antonio ;
Etse, Guillermo ;
Martinelli, Enzo .
COMPUTERS & STRUCTURES, 2012, 98-99 :23-32
[6]   Timber Steel Fiber-Reinforced Concrete Floor Slabs in Fire: Experimental and Numerical Modeling [J].
Caldova, Eva ;
Vymlatil, Petr ;
Wald, Frantisek ;
Kuklikova, Anna .
JOURNAL OF STRUCTURAL ENGINEERING, 2015, 141 (09)
[7]  
Cervenka V., 2014, ATENA PROGRAM DOCU 8
[8]  
Cervenka V., 2014, ATENA PROGRAM DOCU 1
[9]  
Elsaigh W.A, 2001, THESIS
[10]   Enhancing the fire resistance of composite floor assemblies through the use of steel fiber reinforced concrete [J].
Fike, Rustin ;
Kodur, Venkatesh .
ENGINEERING STRUCTURES, 2011, 33 (10) :2870-2878