De-bonding problems stand as a critical barrier against a wide range of usages of FRP composites in structural strengthening and repairing applications. Results of an experimental campaign on FRP-concrete debonding are presented in this study. Specimens with different types of FRP sheets bonded to concrete prism using flexible adhesive were conducted to determine the effective bonding length and ultimate bond capacity of FRPconcrete interface. The experimental results from double lap shear specimens indicated that the flexible adhesive has increased both of the effective bonding length and the ultimate bond capacity of FRP-concrete interface. Increase of fracture energy of FRP-concrete interface has been clearly observed due to flexible adhesive for all different types of FRP sheets. Analytical models available in the literature were adopted to evaluate the bond strength and the effective bond length of the experiment results in this study. Consequently, the existing models need to be modified to consider the type of adhesive layer. A unique feature of the present study is that a simple modification done to the most popular bond strength model, Chen and Teng model (2001), to predict both bond strength and effective bonding length considering the type of adhesive layer. The validation of bond strength model is supported via experiment test results
Other ID | JA56NE69FJ |
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Journal Section | Articles |
Authors | |
Publication Date | July 23, 2016 |
Published in Issue | Year 2013 Volume: 3 Issue: 2 |