Optical and mechanical excitation thermography for impact response in basalt-carbon hybrid fiber-reinforced composite laminates

Citation

Zhang H, Sfarra S, Sarasini F, Perilli S, Duan Y, Fernandes H, Peeters J, Avdelidis NP, Ibarra-Castanedo C, Maldague XPV, Optical and mechanical excitation thermography for impact response in basalt-carbon hybrid fiber-reinforced composite laminates, IEEE Transactions on Industrial Informatics, 2017, Volume 14, Issue 2, pp514-522

Abstract

In this paper, optical and mechanical excitation thermography were used to investigate basalt fiber reinforced polymer (BFRP), carbon fiber reinforced polymer (CFRP) and basalt-carbon fiber hybrid specimens subjected to impact loading. Interestingly, two different hybrid structures including sandwich-like and intercalated stacking sequence were used. Pulsed phase thermography (PPT), principal component thermography (PCT) and partial least squares thermography (PLST) were used to process the thermographic data. X-ray computed tomography (CT) was used for validation. In addition, signal-to-noise ratio (SNR) analysis was used as a means of quantitatively comparing the thermographic results. Of particular interest, the depth information linked to Loadings in PLST was estimated for the first time. Finally, a reference was provided for taking advantage of different hybrids in view of special industrial applications.

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Keywords

Infrared thermography, Nondestructive testing, Hybrid composite, SNR analysis

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Attribution-NonCommercial 4.0 International

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