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  4. Real-time analysis of inline sensor data during USP-laser machining
 
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September 5, 2024
Journal Article
Title

Real-time analysis of inline sensor data during USP-laser machining

Abstract
The challenge of monitoring ultrashort-pulse laser microstructuring lies in the stringent requirements for both spatial and temporal accuracy. Additionally, the monitoring system must not interfere with the processing. This challenge is addressed by employing high-speed off-axis collection of secondary optical emissions. The spatial information is derived from the current processing position, which is recorded synchronously with the emission intensities. A field programmable gate array-based system is used for real-time data collection, synchronization, analysis, and feedback generation. Defects that arise during machining are located as they appear on the workpiece surface, triggering a correction procedure, such as a laser-polishing pass. Furthermore, we compare this method with a data-driven approach using a model that analyzes heatmaps created from photodiode time series and scan positions. A neural network, trained with labels generated by the analytical algorithm and human assistance, detects defects even when the analytical method fails.
Author(s)
Zuric, Milena  
Fraunhofer-Institut für Lasertechnik ILT  
Sukhbold, Goomaral
Fraunhofer-Institut für Lasertechnik ILT  
Journal
Journal of laser applications : JLA  
Conference
International Congress of Applications of Lasers & Electro-Optics 2024  
DOI
10.2351/7.0001544
Language
English
Fraunhofer-Institut für Lasertechnik ILT  
Keyword(s)
  • Photodiodes

  • Sensors

  • Deep learning

  • Artificial neural networks

  • Graphical user interface

  • Optical imaging

  • Microfabrication

  • Machining

  • Lasers

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