Chinese Journal of Lasers, Volume. 47, Issue 11, 1111003(2020)
Online Monitoring of Laser Cleaning Effect of Carbon Fiber Composite Materials Based on Laser-Induced Breakdown Spectroscopy Technology
Fig. 2. Morphological characteristics of material matrix carbon fiber and film epoxy resin
Fig. 3. Spectrometer collects reference LIBS of different materials. (a) Carbon fiber matrix; (b) film layer
Fig. 4. Movement track and diameter of laser spot. (a) Movement track; (b) diameter
Fig. 5. LIBS spectra of different single pulse energy densities. (a) 3.057 J/cm2; (b) 3.567 J/cm2; (c) 4.076 J/cm2; (d) 4.586 J/cm2
Fig. 7. Spectra after mean smoothing and removing background under different times. (a) 1 time; (b) 2 times; (c) 3 times; (d) 4 times; (e) 5 times; (f) 6 times
Fig. 8. Peak values of Na atom changes under different ablation times at same location
Fig. 9. Correlation analysis results of matrix reference spectrum and 3rd ablation spectrum collected
Fig. 10. Clustering results of DBSCAN algorithm. (a) Noise area division; (b) information-rich spectral data isolated point extraction
Fig. 11. Pearson correlation analysis results under different ablation times. (a) 1 time and 2 times; (b) 3 times and 4 times; (c) 5 times and 6 times
Fig. 12. Changing trend of Pearson coefficient under different laser ablation times
Fig. 13. Surface morphology of carbon fiber material after different times of ablation. (a) 1 time; (b) 2 times; (c) 3 times
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Sun Lanxiang, Wang Wenju, Qi Lifeng, Lu Ying, Qiao Hongchao, Wang Wei. Online Monitoring of Laser Cleaning Effect of Carbon Fiber Composite Materials Based on Laser-Induced Breakdown Spectroscopy Technology[J]. Chinese Journal of Lasers, 2020, 47(11): 1111003
Category: spectroscopy
Received: May. 22, 2020
Accepted: --
Published Online: Nov. 9, 2020
The Author Email: Sun Lanxiang (sunlanxiang@sia.cn)