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Abstract:
In order to figure out flexural performance of reinforced concrete girders strengthened with prestressed CFRP plates, test and nonlinear finite element analysis on six reinforced concrete (RC) girders and four partially prestressed concrete (PPC) girders strengthened with prestressed CFRP plates were carried out under static load. The influences of the damage degrees, initial prestresses of CFRP plates and effective prestresses of girders on the flexural performance of these strengthened girders were investigated. The results show that the formation and development of cracks can be restrained effectively using prestressed CFRP strengthening methodology, the crack width and deflection of components can be reduced, and the flexural capacities of the strengthened RC&PPC girders can be improved significantly. The greater the pre-strengthening damage degree, the earlier the concrete stripping, the larger the decrease of ultimate flexural capacity as well. At the failure stage, the stripping of the CFRP plates always occurs firstly and then the rupture. The flexural performance of strengthened RC&PPC girders can be predicted by the nonlinear finite element (FE) model before the stripping of CFRP plates, and the calculated results show good agreement with experimental results. In practical engineering, the reasonable initial prestressing degree in CFRP plates should be about 0.5.
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China Journal of Highway and Transport
ISSN: 1001-7372
CN: 61-1313/U
Year: 2013
Issue: 4
Volume: 26
Page: 109-118
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WoS CC Cited Count: 0
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ESI Highly Cited Papers on the List: 0 Unfold All
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30 Days PV: 2
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