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Preliminary experimental investigation of the fatigue bond behavior of CFRP confined RC beams
Affiliation:1. School of Civil and Environmental Engineering, The University of Adelaide, Australia;2. School of Engineering and Electronics, Institute for Intrastructure and Environment, Edinburgh University, Alexander Graham Bell Building, The King’s Buildings, Edinburgh EH9 3JN, UK;3. School of Engineering – Civil Engineering, Surrey University, UK
Abstract:This paper presents the results of the first phase of a study on the effect of the confinement provided by transverse carbon fiber reinforced polymer (CFRP) sheets on the fatigue bond strength of steel reinforcing bars in concrete beams. Reinforced concrete bond-beams 150 × 250 × 2000 mm were tested. The variables examined were the area of the CFRP sheets (none or one U-wrap CFRP sheet), the reinforcing bar diameter (20 or 25 mm) and the load range applied to the specimens. The results showed that increasing the bar diameter increased the fatigue bond strength for the unwrapped beams. The CFRP sheets increased the bond strength of the bond-beams with 20 mm bars. However, for the beams with 25 mm steel bars the failure mode changed from a bond splitting failure for the unwrapped beams to a diagonal shear failure for the CFRP wrapped beams, and there was little increase in fatigue strength. Finally, the bond failure mechanism for repeated loading is described.
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