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  4. Laser Line Generation for Optimized Interaction with Hidden Defects in Active Thermography
 
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2019
Conference Paper
Title

Laser Line Generation for Optimized Interaction with Hidden Defects in Active Thermography

Abstract
In this paper, an active thermal imaging technique using a laser as an excitation source is used to detect aluminum specimens containing artificial defects. The presence of defects in the local excitation of the laser can produce better edge effects, using different laser excitation methods to improve edge effects. In the experiment, the laser scanning method is designed according to the characteristics of artificial defects, and the experimental data is analyzed. PPT and Sobel filtering are used to further data processing to obtain clearer defect edges and detect the detailed features of the defects. The study found that the detection effect is the best when the laser power and pulse width are large.
Author(s)
Yu, Shuanglu
School of physical science and technology, southwest jiaotong university, Chengdu, PR China
Sui, Hao
School of physical science and technology, southwest jiaotong university, Chengdu, PR China
Zhu, Hongna
School of physical science and technology, southwest jiaotong university, Chengdu, PR China
Netzelmann, Udo  
Müller, David  
Mainwork
IEEE Far East NDT New Technology & Application Forum, FENDT 2019. Proceedings  
Funder
National Natural Science Foundation of China NSFC  
Conference
Far East NDT New Technology & Application Forum (FENDT) 2019  
DOI
10.1109/FENDT47723.2019.8962578
Language
English
Fraunhofer-Institut für Zerstörungsfreie Prüfverfahren IZFP  
Keyword(s)
  • laser thermography

  • edge effects

  • pulse-phase analysis

  • spatial derivation

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