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- W3194567117 endingPage "102526" @default.
- W3194567117 startingPage "102526" @default.
- W3194567117 abstract "Adhesive bonding is a material joining process in which an adhesive, placed between the surfaces, solidifies to produce a strong bond. In this regard, adhesively bonded joints represent an interesting alternative to mechanical joints and provide many advantages over conventional mechanical fasteners: continuity of the structure, high strength-to-weight ratio, design flexibility, and easiness of fabrication. In the present research, the Thermoelastic Stress Analysis (TSA) technique has been used as a non-destructive tool for evaluating the mechanical behaviour of aeronautical adhesive bonded CFRP T-joints made by automated fibre placement process. Moreover, the thermoelastic signal was used for determining the debonded areas after the pull-off tests. The results in terms of the measured debonded area were compared to the well-established lock-in thermography technique. The capability of the Thermoelastic Stress Analysis to perform an in-depth study of the quality of T-joints has been demonstrated. • Correlation between the thermoelastic signal and the elastic stiffness of bonded T-joints. • Capability of the TSA technique for the continuous monitoring of T-joints. • Quantitative evaluation of debonding with the TSA technique and Lock-in thermography." @default.
- W3194567117 created "2021-08-30" @default.
- W3194567117 creator A5011571956 @default.
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- W3194567117 date "2021-12-01" @default.
- W3194567117 modified "2023-09-29" @default.
- W3194567117 title "Thermoelastic stress analysis as a method for the quantitative non-destructive evaluation of bonded CFRP T-joints" @default.
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- W3194567117 doi "https://doi.org/10.1016/j.ndteint.2021.102526" @default.
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