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Square pulse thermography in frequency domain as adaptation of pulsed phase thermography for qualitative and quantitative applications in cultural heritage and civil engineering
Authors:Ralf W Arndt
Institution:1. Computer Vision and Systems Laboratory, Laval University, Quebec City, Quebec, G1K 7P4, Canada;2. Las.E.R. Laboratory, Dept. of Industrial and Information Engineering and Economics (DIIIE), University of L''Aquila, Monteluco di Roio - L''Aquila (AQ), 67100, Italy;3. Visiooimage Inc, Infrared Vision Systems, 2604 Lapointe, Quebec City, Quebec, G1W 1A8, Canada;1. Sorbonne Universités, UPMC Univ Paris 06, F-75005 Paris, France;2. CNRS, UMR 7587, F-75005, Paris, France;3. Institut Langevin, PSL Research University, ESPCI ParisTech, 1 rue Jussieu, F-75005, Paris, France;4. LPEM, PSL Research University, ESPCI-ParisTech, 10 rue Vauquelin, F-75005 Paris, France;5. CNRS, UMR 8213, F-75005 Paris, France
Abstract:A methodical approach for qualitative and quantitative non-destructive testing of near-surface structures in civil engineering (CE) with active thermography is presented. It adopts the non-destructive testing (NDT) method of pulsed phase thermography (PPT) for the special requirements of CE and cultural heritage. The concept might be understood as a square pulse thermography (SPT) in frequency domain or an amplitude-expanded PPT with square pulse heating.After a discussion of the material spanning concept and qualitative results in cultural heritage a new approach for quantitative non-destructive testing (NDT) of near-surface structures in CE with active thermography is introduced and tested by investigations on concrete specimen with artificial defects. It is based on the thermal diffusivity of the material and the characteristic frequency of the first extrema of phase and amplitude contrast and aims at complementing the established approaches for defect depth calculation for measurements with long heating and observation times. It should be easily extendable to other fields of application.
Keywords:
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