Analysis of Shear Failure in Reinforced Concrete Beams without Stirrups
Analysis of Shear Failure in Reinforced Concrete Beams without Stirrups
摘要
This paper deals with flexural concrete members reinforced longitudinally but without transverse reinforcement. The conducted experimental investigations have shown that beams without web reinforcement may fail without attaining their full flexural capacity and then shear governs their failure. In the paper, there are presented recent results of the author's own experiments, which aimed at disclosing some aspects of the propagation of cracks in longitudinally reinforced concrete beams without stirrups. The experimental program has been designed especially to investigate the influence of the shear span-to-depth ratio on diagonal crack propagation and load carrying capacity of tested beams.
参考文献11
-
1G. N. J. Kani, Basic facts concerning shear failure, Journal of ACI 63 (6) (1966) 675-692.
-
2G. N. J. Kani, The riddle of shear failure and its solution, Journal of ACI 61 (4) (1964) 441-468.
-
3O. J. Gastebled and I. M. May, Fracture mechanics model applied to shear failure of reinforced concrete beams without stirrups, ACI Structural Journal 98 (2) (2001) (184-190).
-
4K. H. Reineck, D. A. Kuchma, K. S. Kim and S. Marx, Shear database for reinforced concrete members without shear reinforcement, ACI Structural Journal 100 (2) (2003) 240-249.
-
5Kim Woo and R. N. White, Initiation of shear cracking in reinforced concrete beams with no web reinforcement,ACI Structural Journal 88 (3) ( 1991) 301-314.
-
6S. Desai, Influence of constituents of concrete on its tensile strength and shear carrying capacity, Magazine of Concrete Research 55 (1) (2003) 77-84.
-
7S. T. Mau and T. T. C. Hsu, Shear strength prediction for deep beams with web reinforcement, ACI Structural Journal 84 (6) (1987) 513-523.
-
8M. Stowik, The Discussion of the shear failure mechanism proposed By G. N. J. Kani for longitudinally reinforced concrete beams, Architecture and Agriculture Building,Lvov University of Agriculture Publishers, No 8, Lvov, 2007.
-
9M. Slowik, Load carrying capacity of flexural concrete members reinforced longitudinally, In~nieria i Budownictwo 10 (2008). (in Polish).
-
10ENV 206, Concrete, performance, production, placing and compliance criteria, 1990.
-
1李凤兰,李芳,杨杰兰.集中荷载钢筋混凝土无腹筋梁的受剪承载力[J].华北水利水电学院学报,1997,18(3):23-27. 被引量:9
-
2刘昶宏,梁兴文.集中荷载作用下钢筋混凝土无腹筋梁的受剪承载力分析[J].工业建筑,2008,38(8):89-91. 被引量:4
-
3刘凡,陈忠汉,孙敏.钢筋混凝土圆形截面无腹筋梁抗剪承载力的试验研究[J].工业建筑,2000,30(11):34-37. 被引量:4
-
4张兵.无腹筋梁抗剪计算方法讨论[J].平顶山工学院学报,2005,14(3):59-61. 被引量:1
-
5赵广田.三角形荷载下钢筋混凝土无腹筋梁抗剪性能试验研究[J].武汉水利电力大学学报,1998,31(3):35-39. 被引量:1
-
6何龙军,车轶.钢筋混凝土无腹筋梁受剪承载力尺寸效应研究[J].水利与建筑工程学报,2013,11(6):171-175. 被引量:2
-
7Hasan Nikopour,M. Nehdi,P. Broumand.Experimental and Computational Investigation of Hybrid FRP Bonded-Reinforced Concrete Beams under Cyclic Loading[J].Journal of Civil Engineering and Architecture,2012,6(3):322-333. 被引量:1
-
8李平先,韩菊红,丁自强,宋新伟.三角形分布荷载下钢筋混凝土无腹筋梁受剪性能研究[J].四川建筑科学研究,2006,32(1):10-12.
-
9刘凡,孙敏,劳裕华.圆形截面无腹筋梁斜截面破坏形态分析[J].苏州城建环保学院学报,2000,13(3):69-73.
-
10张翔.中欧规范无腹筋梁抗剪承载力比较[J].工程建设与设计,2010(2):53-55.