Claims
- 1. A method of processing a biomaterial composite, the method comprising the steps of:
providing a source of pulsed ultraviolet (UV) radiation; and directing the UV radiation at the food product so as to photo-ablate the food product.
- 2. The method of statement 1, further comprising selecting a combination of parameters associated with the radiation.
- 3. The method of statement 2, wherein the parameters include at least one of a group including radiation focus spot size, radiation pulse repetition rate and source power.
- 4. The method of statement 3, wherein said selecting step includes increasing the pulse rate so as to increase processing efficiency.
- 5. The method of statement 2, further comprising adjusting the parameters to alter a performance characteristic of the method.
- 6. The method of statement 5, wherein the performance characteristic is processing speed.
- 7. The method of statement 1, wherein the UV radiation has a wavelength in a range equal to about 150 nm to 375 nm.
- 8. The method of statement 7, wherein the UV radiation has a wavelength equal to about 266 nm.
- 9. An apparatus for processing a biomaterial composite, the apparatus comprising:
a laser emitting radiation having a wavelength in the ultraviolet range; and wherein a combination of parameters associated with the radiation is selected so that said laser photo-ablates the food product.
- 10. The apparatus of statement 9, wherein the parameters include at least one of a group including radiation focus spot size, radiation pulse repetition rate and source power.
- 11. The apparatus of statement 10, wherein the combination is based on a characteristic of the food product.
- 12. The apparatus of statement 10, wherein the combination is based on a profile defined by ablation depth versus laser intensity.
- 13. The apparatus of statement 10, wherein the combination is adjusted according to a performance characteristic.
- 14. The apparatus of statement 13, wherein the performance characteristic is cutting depth.
- 15. The apparatus of statement 9, wherein the UV radiation has a wavelength in a range of about 150 nm to 375 nm.
- 16. The apparatus of statement 15, wherein the UV radiation has a wavelength equal to about 266 nm.
- 17. An apparatus for processing a food product, the apparatus comprising:
a laser emitting radiation having a wavelength in the ultraviolet range, wherein the radiation is directed towards the food product so as to photo-ablate the food product.
- 18. The apparatus of statement 17, wherein the radiation is defined by a combination of parameters.
- 19. The apparatus of statement 18, wherein the combination includes focus spot size, radiation pulse repetition rate, and laser power.
- 20. The apparatus of statement 17, wherein the combination corresponds to at least one of a group including a processing performance characteristic and a characteristic of the food product.
- 21. The apparatus of statement 17, wherein the wavelength is about 200 nm.
- 22. A method of processing a biomaterial composite, the method comprising the steps of:
providing a laser that generates ultraviolet (UV) radiation; selecting operation parameters associated with the laser, wherein the parameters include radiation focus spot size, radiation pulse repetition rate and source power; and directing the UV radiation towards the biomaterial composite so as to photo-ablate the food product.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a non-provisional application based on a provisional application filed under 35 U.S.C. §119(e) on Oct. 22, 2002, which application is expressly incorporated by reference herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60422763 |
Oct 2002 |
US |