Paper
13 September 2024 Study on decontamination process and effect of oxide layer on stainless steel surface
Xueying Ma, Chao Liu, Liansheng Zhang, Jiabei Zhang, Yanlan Pan, Shaochong Wei, Haifeng Lu
Author Affiliations +
Proceedings Volume 13254, Fourth International Conference on Optics and Image Processing (ICOIP 2024); 132540E (2024) https://doi.org/10.1117/12.3039057
Event: Fourth International Conference on Optics and Image Processing (ICOIP 2024), 2024, Chongqing, China
Abstract
Laser decontamination technology is used to remove the oxidized layer on the surface of stainless steel, and the influence of different combinations of process parameters on the decontamination effect is investigated. The experiment adopts orthogonal experimental design, through the scanning electron microscope and energy spectrum analyzer to analyze the surface morphology and composition distribution of the specimen surface before and after laser decontamination; the use of metallurgical microscope to observe the cross-sectional organization of the specimen before and after laser decontamination; the use of BRUKER white-light interferometer to decontaminate the specimen three-dimensional morphology analysis, test its decontamination thickness and surface roughness. The results show that under the optimal process parameters (laser power of 180W, repetition frequency of 500kHz, travel speed of 5mm-s-1, pulse width of 300ns), the oxidized layer on the surface of stainless steel is completely removed, and the thickness of the decontamination reaches 4.1 μm, and the surface roughness is reduced to 0.28 μm, and the surface of the decontaminated surface mainly consists of Fe, Cr, Ni and other matrix elements. Laser decontamination for stainless steel surface oxides have excellent decontamination effect.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Xueying Ma, Chao Liu, Liansheng Zhang, Jiabei Zhang, Yanlan Pan, Shaochong Wei, and Haifeng Lu "Study on decontamination process and effect of oxide layer on stainless steel surface", Proc. SPIE 13254, Fourth International Conference on Optics and Image Processing (ICOIP 2024), 132540E (13 September 2024); https://doi.org/10.1117/12.3039057
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KEYWORDS
Oxides

Stainless steel

Pulsed laser operation

Repetition frequency

Surface roughness

Laser processing

Laser applications

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