EventsThe 18th Advanced Infrared Technology and Applications (AITA2025)
Published
This submission belongs to the session Session 3. Session 3 (Under 35) of the event The 18th Advanced Infrared Technology and Applications (AITA2025)
Published date
29 Aug, 2025
Academic Editor
author-avatarHirotsugu Inoue
Citation
Julien Lecompagnon, Total Focusing In The VirtualWave Domain: 3D Defect Reconstruction Using Spatially Structured Laser Heating, in Proceedings of The 18th Advanced Infrared Technology and Applications (AITA2025), Kobe, Hyogo, 15 September–19 September 2025, MDPI: Basel, Switzerland
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Total Focusing In The VirtualWave Domain: 3D Defect Reconstruction Using Spatially Structured Laser Heating

1. Bundesanstalt für Materialforschung und -prüfung (BAM), Germany
Abstract

Classical active thermographic testing of industrial goods has mostly been limited to generating 2D defect maps. While for surface or near-surface defect detection, this is a desired result, for deeply buried defects, a 3D reconstruction of the defect geometry is coveted. This general trend can also be well observed in widely used NDT methods (radio- graphy, ultrasonic testing), where the progression from 2D to 3D reconstruction methods has already made profound progress (CT, UT phased array transducers). Achieving a fully 3D defect reconstruction in active thermographic testing suffers heavily from the diffusive nature of thermal processes. One possible solution to deal with thermal diffusion is the application of the virtual wave concept, which, by solving an inverse problem, allows to extract the diffusiveness from the thermographic data in the post-processing stage. What is left follows propagating wave physics, enabling the usage of well-known algorithms from ultrasonic testing. In this work, we present our progress in the 3D reconstruction of deeply
buried defects using spatially structured laser heating in conjunction with applying the well-known total focusing method (TFM) in the virtual wave domain.

Keywords
Non-destructive Testing
Virtual Wave Concept
Laser Thermography
Thermal Thomography
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