Method and device for preparing uranium surface anti-corrosion protecting layer through atmospheric laser passivation
An anti-corrosion and protective layer technology, which is applied in coating, solid-state diffusion coating, metal material coating technology, etc., can solve problems such as difficult to meet industrial production applications, corrosion of uranium nitride film, and limited workpiece size. The effect of simplifying equipment and procedures, reducing procedures and reducing production costs
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Embodiment 1
[0048] The steps of preparing the passivation protection layer are as follows:
[0049] 1) Open the quartz glass cover 1, place the uranium workpiece 3 on the workbench 2, and close the quartz glass cover 1;
[0050] 2) Turn on the pulse laser scanning system 4 to scan the laser on the surface of the workpiece, and the laser energy density is 20J / cm 2 , the laser overlap rate is 95%;
[0051] 3) After the laser scans the entire surface of the workpiece, turn off the laser scanner, open the glass cover, and take out the workpiece to obtain a passivation protective layer on the surface of the workpiece.
[0052] As determined by XRD: the passivation protection layer prepared in this embodiment is mainly composed of uranium dioxide and UN, and the content of uranium dioxide is much higher than that of UN, that is, the passivation protection layer is a uranium nitrogen oxide passivation film.
Embodiment 2
[0054] 1) Open the quartz glass cover 1, place the uranium workpiece 3 on the workbench 2, and close the quartz glass cover 1;
[0055] 2) Turn on the pulse laser scanning system 4 to scan the laser on the surface of the workpiece, and the laser energy density is 50J / cm 2 , the laser overlap rate is 90%;
[0056] 3) After the laser scans the entire surface of the workpiece, turn off the laser scanner, open the glass cover, and take out the workpiece to obtain a passivation protective layer on the surface of the workpiece.
[0057] As determined by XRD: the passivation protection layer prepared in this embodiment is mainly composed of uranium dioxide and UN, and the content of uranium dioxide is much higher than that of UN, that is, the passivation protection layer is a uranium nitrogen oxide passivation film.
Embodiment 3
[0059] 1) Open the quartz glass cover 1, place the uranium workpiece 3 on the workbench 2, and close the quartz glass cover 1;
[0060] 2) Turn on the pulse laser scanning system 4 to scan the laser on the surface of the workpiece, and the laser energy density is 70J / cm 2 , the laser overlap rate is 80%;
[0061] 3) After the laser scans the entire surface of the workpiece, turn off the laser scanner, open the glass cover, and take out the workpiece to obtain a passivation protective layer on the surface of the workpiece.
[0062] As determined by XRD: the passivation protection layer prepared in this embodiment is mainly composed of uranium dioxide and UN, and the content of uranium dioxide is much higher than that of UN, that is, the passivation protection layer is a uranium nitrogen oxide passivation film.
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