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http://dx.doi.org/10.4334/JKCI.2003.15.2.163

A Study on Fatigue Behavior of Two-Span Fiber Reinforced Concrete Beam  

Kwak, Kae-Hwan (Dept. of Civil & Environmental Engineering, Wonkwang University)
Cho, Seon-Jeong (Dept. of Civil & Environmental Engineering, Wonkwang University)
Seok, In-Soo (Wonkwang University, Iksan(N. Jeolla Province, Bureau Construction & Transportation))
Publication Information
Journal of the Korea Concrete Institute / v.15, no.2, 2003 , pp. 163-172 More about this Journal
Abstract
As concrete structures are getting larger, higher, longer, and specialized, it is more required to develop steel fiber concrete and apply to the real world. In this research, it is aimed to have fatigue strength examined, varying the steel fiber content by 0%, 0.75%, 1.00%, 1.25%, by experimental study of Two-spans Beam with Steel Fibrous with repeated loads. The ultimate load and the initial load of flexural cracking were measured by static test. In addition, the load versus strain relation, load versus strain relation, load versus deflection relation, crack pattern and fracture mode by increasing weight was observed. On the other hand, the crack propagation and the modes of fracture according to cycle number and the relation of cycle loading to deflection relation and strain relation was observed by fatigue test. As the result of fatigue test, Two-spans Beam without Steel Fibrous was failed at 60~70% of the static ultimate strength and it could be concluded that fatigue strength to two million cycle was around 67.2% by S-N curve. On the other hand, that with Steel Fibrous was failed at 65~85% of the static ultimate strength and it could be concluded fatigue strength to two million cycle around 71.7%.
Keywords
the sleel fibrous concrete; two-spans beam; V$_{f}$ f/-the steel fibrous content varying; S-N curve;
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  • Reference
1 ACI Committee 215, 'Considerations for Design of Concrete Structures Subjected to Fatigue Loading,' ACI Journal, ACI 215R-74, Vol.71, No.3, March 1974. pp.97-121
2 ACI Committee 544, 'Design Constructions for Steel Fiber Reinforced Concrete,' ACI StructumI Journal, Vo1.35, No.5, Sep. 1998, pp.536-580
3 ASTM committee, 'Standard Specification for Fiber-Reinforced Concrete and Shotcrete,' C1116-91 pp.578-582
4 Holmen, J.O., 'Fatigue of Concrete by Constant and Amplitude Loading,' Fatigue of Concrete, SP-41, ACI, 1982, 401pp
5 K H. Kwak, J. Suh, and C.T.T. Hsu, 'FatigueStrength of Steel Fiber Reinforced ConcreteBeams,' Second CANMET/ACI International Con-crete on Durability of Concrete, Montreal Canada, 1991, pp.369-384
6 Williamson, G.R, 'Effect of Steel Fibers on fhe Compressive Strength of Concrete,' Fiber Reinforced Concrete, ACI SP-44, 1974, pp.195-208
7 곽계환, '강섬유를 혼입한 고강도 콘크리트보의 거동및 보수에 관한 연구',1998년 건설교통부