Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/116589
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Title: Interfacial debonding detection of strengthened steel structures by using smart CFRP-FBG composites
Authors: Wang, HP 
Ni, YQ 
Dai, JG 
Yuan, MD
Issue Date: Nov-2019
Source: Smart materials and structures, Nov. 2019, v. 28, no. 11, 115001
Abstract: The interfacial debonding detection of multi-layered strengthened structures (i.e. carbon fiber reinforced polymer (CFRP) strengthened steel/concrete beams) has always been an important problem urgent to be solved. Fiber Bragg grating (FBG) sensor is limited to directly perceive the shear strain. How to monitor the interfacial bonding state based on optical fiber sensing technology thus attracts high attention. A smart CFRP-FBG composite has then been developed in this paper. The structural integrity of the composites has been non-destructively checked by ultrasonic testing technique. Theoretical study on the strengthened steel beam has been conducted to establish a relationship between the interfacial shear stress and the normal stress of the CFRP-FBG composites. Loading tests have been performed to check the measurement accuracy of the FBGs in series and the effectiveness of the composites to perceive the interfacial debonding failure. Results indicate that the proposed smart CFRP-FBG composites can accurately identify the interfacial debonding of the multi-layered structures. The degradation process of the interfacial bonding state can be favorably reflected by the variations of strain profiles measured by the FBGs in series in the composites. The proposed method can be used to instruct the concept design of damage detection. The developed CFRP-FBG composites can be adopted to identify the damage and make in-time maintenance in practical engineering.
Keywords: Interfacial debonding
Shear stress
Smart CFRP-FBG composites
Strengthened steel structures
Structural health monitoring
Publisher: Institute of Physics Publishing Ltd.
Journal: Smart materials and structures 
ISBN:  
ISSN: 0964-1726
EISSN: 1361-665X
DOI: 10.1088/1361-665X/ab3add
Rights: © 2019 IOP Publishing Ltd
This is the Accepted Manuscript version of an article accepted for publication in Smart Materials and Structures. IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it. The Version of Record is available online at https://doi.org/10.1088/1361-665X/ab3add.
This manuscript version is made available under the CC-BY-NC-ND 4.0 license (https://creativecommons.org/licenses/by-nc-nd/4.0/)
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