Laser decontamination method

6056827
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Inventors

Fukui, Yasutaka
Nemoto, Masanobu
Shimizu, Kouki
Sato, Shun-ichi

Application #

800283

Filed

Feb-13-1997

Published

May-2-2000

Current US Class

134/1
134/2
134/21
134/32
219/121.68
219/121.69

International Classes

B08B 007/00

Field of Search

134/1 134/2 134/21 134/32 134/42 219/121.6 219/121.68 219/121.69

Assignee

Japan Nuclear Cycle Development Institute (Ibaraki-ken, JP)

Examiners

Soderquist; Arlen

Attorney, Agent or Firm

Weneroth, Lind & Ponack, L.L.P.

US Patent References

4347785   Engraving printing...
4368080   Method of removin...
4720621   Method and appar...
4839181   Method of removin...
4871897   Nozzle for laser pr...
4987286   Method and appar...
5256848   Apparatus for work...
5537206   Method for analyzi...
5538764   Method of treating...

Referenced by:

View Backward References

Other References

H.K. Tonshoff et al. Laser Inst. Am 1994, 79, 333-342. Y. Ori et al. Reza Kenkyu 1995, 23, 264-272. K.C.A. Crane et al. J. Appl. Phys. 1980, 51, 5954-5961. M.C. Edelson et al. Laser Inst. Am. 1995, 768-777.

Citation

Cite This Patent

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Abstract
A laser decontamination method includes the steps of incorporation of a condenser lens in a gas supply nozzle, supplying a gas toward a contaminated member while moving the gas supply nozzle relatively to and along a surface of the contaminated member with a laser beam which is condensed by the condenser lens applied thereto, and thereby continuously melting or evaporating a contaminated surface layer so as to remove the same to clean the contaminated member. The gas is supplied asymmetrically with respect to the axis of the laser beam. For example, the gas supply nozzle maybe formed so that the axis of the laser beam agrees with that of the nozzle, with a plane of an opening of the nozzle inclined with respect to the axis of the laser beam; the nozzle maybe disposed so that the axis of the nozzle agrees with the direction of a normal line of the contaminated member with the plane of the opening of the nozzle inclined upwardly respect to the surface of the contaminated member in the advancing direction of the nozzle; and the gas maybe supplied in a diagonal direction with respect to the axis of the laser beam.
 
Claims
What is claimed is:

1. A method for decontaminating a contaminated member, said method comprising:

moving in an advancing direction relative to and along a surface of said contaminated member a gas supply nozzle having an axis and an outlet opening defined along a plane, while supplying a gas from said nozzle toward said contaminated member, and while applying to said contaminated member a laser beam condensed by a condenser lens incorporated in said nozzle, thereby continuously melting or evaporating and removing a contaminated surface layer of said member, whereby said contaminated member is cleaned;

said axis of said nozzle coinciding with an axis of said laser beam;



Description
BACKGROUND OF THE INVENTION

The present invention relates to a method of removing a contaminated surface layer by melting or evaporating the same with a laser beam applied to a contaminated member (an object to be decontaminated). Although the range of application of the techniques concerning this method is not specifically limited, they are effective, for example, in removing a radioactive contaminant from a surface of a member placed in such a radiation environment as in a nuclear reactor, and thereby cleaning (decontaminating) the contaminated member.

In various kinds of nuclear facilities, there are equipment, machines and tools exposed to radiation and coated at the outer surfaces thereof with a thin layer of a radioactive contaminant. The presence of such a layer of a radioactive contaminant places restrictions on workers, who make inspections of and carry out maintenance and repair of such equipment, machines and tools, with respect to various matters including operation time. In order that such operations can be carried out safely, a method of removing a radioactive contaminant from the surfaces of the equipment, machines and tools has been developed. One example of such a method is a laser decontamination method in which a contaminated surface layer is removed by melting or evaporating the same with a laser beam applied thereto.
 
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