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반복하중하에서 강섬유보강 철근콘크리트 연속보의 피로거동

Fatigue Behavior of Steel Fiber Reinforced Concrete Continuous Beams under Cyclic Loading

  • 발행 : 2004.01.01

초록

As concrete structures are getting larger, higher, longer and more 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 of 0%, 0.75%, 1.00%, 1.25% by experimental study of fatigue behavior of the steel fiber reinforced concrete continuous beams under cyclic loading. The ultimate load and initial load of flexural cracking were measured by static test. In addition, the load versus strain relation, load versus deflection relation, crack pattern and fracture mode by increasing weight were observed. On the other hand, the crack propagation and the modes of fracture according to cycle number and the relation of cyclic loading to deflection relation and strain relation were investigated by fatigue test. As the result of fatigue test, continuous beam without steel fiber was failed at 60 ~ 70% of The static ultimate strength and it could be concluded that fatigue strength to two million cyclic loading was arround 67.2% by S-N curve. On the other hand, that with steel fiber was failed at 65 ~ 85% of the static ultimate strength and it could be concluded fatigue strength to two million cyclic loading around 71.7%.

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참고문헌

  1. 건설교통부, "콘크리트 표준시방서", 한국콘크리트학회, 1999
  2. ACI Committee 215, Hanson, J.M., "Considerations for Design of Concrete Structures Subjected to Fatigue Loading", ACI Journal, March 1974, pp.97-121
  3. ACI Committee 544, "State of the Art Report on Fiber Reinforced Concrete", Journal of ACI, Vol. 70, No. 65, November 1973, pp.729-744
  4. ACI Committee 318, 1995, Builed Code Requirements for Reinforced Concrete (ACI 318-95) and Commentary (ACI 318R-95), American Concrete Institue
  5. Bazant, Z.P. and Xu, K., "Size Effect in Fatigue Fracture of Concrete", ACI Materials Journal. Vol. 88, No. 4, July-August 1991, pp.390-399
  6. Hsu, T.T.C., "Fatigue of Plain Concrete", ACI Journal, Vol. 78, No. 3, July-August 1981, pp.292-305
  7. Kormeling, H.A., Reinhardt, H.W. and Shah, S.P., "Static and Fatigue Properties of Concrete Beams Reinforced with Continuous Bars and with Fibers", Journal of ACI, Vol. 77, No. 6, January-February 1980, pp.36-43
  8. Kwak, K.H., Suh, J. and Hsu, C.T.T. "Shear-Fatigue Behavior of Steel Fiber Reinforced Concrete Beams", ACI Structural Journal. Vol. 88, No. 2, March-April 1991, pp.155-160
  9. Romualdi and Batson., "Behavior Concrete Beams with Cloely Spaced Reinforcement" ACI Journal, Vol 60, 1963. pp.775-790
  10. Sharma, A.K. "Shear Strength of steel Fiber Reinforced Concrete Beams", ACI Journal, Proceeding Vol.83, July-August 1986, pp.624-628 https://doi.org/10.1073/pnas.83.3.624