Deng Mingke, Sun Hongzhe, Liang Xingwen, Jing Wubin. EXPERIMENTAL STUDY OF FLEXURAL BEHAVIOR OF DUCTILE FIBER REINFORCED CONCRETE[J]. INDUSTRIAL CONSTRUCTION, 2014, 44(05): 94-98.
Citation:
Deng Mingke, Sun Hongzhe, Liang Xingwen, Jing Wubin. EXPERIMENTAL STUDY OF FLEXURAL BEHAVIOR OF DUCTILE FIBER REINFORCED CONCRETE[J]. INDUSTRIAL CONSTRUCTION, 2014, 44(05): 94-98.
Deng Mingke, Sun Hongzhe, Liang Xingwen, Jing Wubin. EXPERIMENTAL STUDY OF FLEXURAL BEHAVIOR OF DUCTILE FIBER REINFORCED CONCRETE[J]. INDUSTRIAL CONSTRUCTION, 2014, 44(05): 94-98.
Citation:
Deng Mingke, Sun Hongzhe, Liang Xingwen, Jing Wubin. EXPERIMENTAL STUDY OF FLEXURAL BEHAVIOR OF DUCTILE FIBER REINFORCED CONCRETE[J]. INDUSTRIAL CONSTRUCTION, 2014, 44(05): 94-98.
To study the effects of fiber content,water-binder ratio,sand-binder ratio,and fly-ash content,16 groups
of ductile high performance concrete specimens were designed for the orthogonal test,whose flexural performance was
tested through the four-point bending test. The analysis of first-crack strength,ultimate flexural strength,equivalent
flexural strength,and toughness indexes of 16 groups specimens indicated that the fiber content changed the concrete
failure mode and greatly improved the concrete bending strength and flexural toughness. The fiber content greatly
influenced the flexural behavior,the more fiber content,the higher the bending strength,and toughness. The effects
of water-binder ratio,sand-binder ratio,and fly-ash content on the flexural performance were smaller,and the effect
of fly-ash content on them was the smallest. When the water-binder ratio was higher than 0. 29,sand-binder ratio was
less than 0. 36,the ductile fiber reinforced concrete in the experiment showed a high flexural toughness.