Laser surface cleaning of simulated radioactive contaminants in various technological environments

Special methods for cleaning surfaces of stainless steel with a coating simulating radioactive contamination have been developed and studied. The removal of simulated surface contamination was performed using lasers in the micron spectral range with pulse durations of 8 ns and 270 fs. Optimal cleani...

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Veröffentlicht in:Nuclear engineering and technology 2024, 56(7), , pp.2775-2780
Hauptverfasser: Cheban, Maxim, Filatova, Serafima, Kravchenko, Yaroslav, Scherbakov, Konstantin, Mamonov, Dmitry, Klimentov, Sergey, Savinov, Maxim, Chichkov, Maxim
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Sprache:eng
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Zusammenfassung:Special methods for cleaning surfaces of stainless steel with a coating simulating radioactive contamination have been developed and studied. The removal of simulated surface contamination was performed using lasers in the micron spectral range with pulse durations of 8 ns and 270 fs. Optimal cleaning modes were determined for gas and liquid environments, achieving surface cleaning coefficient of over 90% in a single pass. A correlation between the degree of cleaning in liquids and the viscosity of the environment was discovered.
ISSN:1738-5733
2234-358X
DOI:10.1016/j.net.2024.02.039