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  4. Experiments on the flexural behavior of full-scale PC box girders with service damage strengthened by prestressed CFRP plates
 
research article

Experiments on the flexural behavior of full-scale PC box girders with service damage strengthened by prestressed CFRP plates

Duan, Lan
•
Wang, Chunsheng
•
Bruehwiler, Eugen  
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March 6, 2023
Composite Structures

Two full-scale PC box girders with typical damage were derived from an in-situ bridge that was in service about 20 years, to understand the strengthening effects of prestressed CFRP plates for the entire bottom slab, casting of a RC layer in composite action with the entire top slab and steel plates anchored on the webs of the shear span. The flexural tests were conducted on the two full-scale PC box girders with and without strengthening measures, and comparative analysis was conducted regarding flexural capacity, failure mechanism, rigidity, ductility and overall structural behavior. The test results showed that the strengthening measures improved the girder rigidity by 40 % before reaching cracking state and increased the yielding and ultimate capacity by 39 % and 28% respectively. The theoretical analysis was conducted to discuss failure modes for PC box girder strengthened by prestressed CFRP plates. Theoretical equations are derived to calculate the flexural capacity of strengthened PC box girder according to typical failure modes. Good agreement with tested results was obtained. The strengthening design of the prestressing CFRP plate was verified by application in a PC box girder bridge.

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Type
research article
DOI
10.1016/j.compstruct.2023.116864
Web of Science ID

WOS:000952187300001

Author(s)
Duan, Lan
Wang, Chunsheng
Bruehwiler, Eugen  
Wang, Qian
Date Issued

2023-03-06

Published in
Composite Structures
Volume

312

Article Number

116864

Subjects

Mechanics

•

Materials Science, Composites

•

Mechanics

•

Materials Science

•

full-scale pc box girder

•

prestressed cfrp plate

•

composite rc layer

•

flexural behavior

•

hybrid strengthening measures

•

reinforced polymer composites

•

rc beams

•

concrete

•

GIS-publi

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
MCS  
Available on Infoscience
April 24, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/197053
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