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- W1986088939 abstract "Fiber reinforced polymer (FRP) materials are currently used for strengthening civil engineering infrastructures. Thestrengthening system is dependant on the bond characteristics of the FRP to the external surface of the structure to beeffective in resisting the applied loads. This paper presents an innovative self-monitoring FRP strengthening system. Thesystem consists of two components which can be embedded in FRP materials to monitor the global and local behavior ofthe strengthened structure respectively. The first component of the system is designed to evaluate the applied load actingon a structure based on elongation of the FRP layer along the entire span of the structure. Success of the global systemhas been demonstrated using a full-scale prestressed concrete bridge girder which was loaded up to failure. The testresults indicate that this type of sensor can be used to accurately determine the load prior to failure within 15 percent ofthe measured value. The second sensor component consists of fiber Bragg grating sensors. The sensors were used tomonitor the behavior of steel double-lap shear splices tested under tensile loading up to failure. The measurements wereused to identify abnormal structural behavior such as epoxy cracking and FRP debonding. Test results were alsocompared to numerical values obtained from a three dimensional shear-lag model which was developed to predict thesensor response." @default.
- W1986088939 created "2016-06-24" @default.
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- W1986088939 date "2008-03-27" @default.
- W1986088939 modified "2023-09-23" @default.
- W1986088939 title "Self-monitoring fiber reinforced polymer strengthening system for civil engineering infrastructures" @default.
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- W1986088939 doi "https://doi.org/10.1117/12.776568" @default.
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