Jeroen Peeters
Papers
4
Total Citations
40
H-Index
4
About
Jeroen Peeters is a researcher at the forefront of non-destructive evaluation (NDE), specializing in active thermography and robotic inspection systems for advanced industrial components. His work bridges the gap between numerical simulation and real-world defect detection, with a particular focus on optimizing automated inspection processes. Peeters’ most cited paper, "Impact Modelling and A Posteriori Non-destructive Evaluation of Homogeneous Particleboards of Sugarcane Bagasse" (2018, 20 citations), demonstrates his versatility in applying NDE techniques to sustainable materials. He has made significant contributions to the field of thermographic inspection by developing methodologies that use numerical simulations to automatically determine optimal experimental parameters for defect detection, as detailed in his 2019 work on optimized dynamic line scanning thermography for aircraft structures (9 citations). Peeters has also pioneered the integration of robotics into thermography, creating a 4D active and passive measurement system using a KUKA KR16 robot and time-of-flight imaging (2016, 7 citations). His research on automated robotic setups with advanced path planning and visibility studies (2018, 4 citations) addresses the persistent industrial challenge of in-line inspection of complex components. Through his innovative combination of simulation, robotics, and thermal imaging, Peeters is advancing the capabilities of automated quality control in manufacturing.
Research Focus
Key Achievements
Top Papers
- 1
- 2Optimized dynamic line scanning thermography for aircraft structures9 citations · 2019
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