Claims
- 1. A method for producing fused silica comprising:
providing a furnace including a plurality of burners disposed above a collection surface, and a refractory surface surrounding at least a portion of the collection surface; collecting soot particles on the collection surface to form a fused silica boule in a generally planar shape having a major surface and sidewalls; and maintaining an essentially constant distance between soot particles on the collection surface and the burner during formation of the boule.
- 2. The method of claim 1, wherein the collection surface is generally planar and does not include lateral walls.
- 3. The method of claim 3, wherein the furnace further includes exhaust ports positioned at the same level or below the collection surface.
- 4. The method of claim 4, further comprising the step of maintaining the temperature of the refractory surface at least 300° C. below the temperature of the collection surface.
- 5. A fused silica member produced in accordance with the method of claim 1 having a refractive index gradient in a direction substantially perpendicular to the use axis of less than 3 parts per million up to a thickness of 100 mm.
- 6. The fused silica element of claim 5, wherein the fused silica member has an internal transmission of at least 99.75%/cm at 193 nm.
- 7. A method for producing fused silica comprising:
providing a furnace including a plurality of burners disposed above a collection surface, and a refractory surface surrounding at least a portion of the collection surface; collecting soot particles on the collection surface to form a fused silica boule in a generally planar shape having an upper major surface and sidewalls; and maintaining the temperature of the refractory surface at least 300° C. cooler than the temperature of the deposition surface such that metal volatilization from the refractories is minimized.
- 8. The method of claim 7, further comprising the step of maintaining an essentially constant distance between the upper major surface of the boule and the burner during formation of the boule.
- 9. The method of claim 8, wherein the collection surface is generally planar and does not include lateral walls.
- 10. The method of claim 9, wherein the furnace further includes exhaust ports positioned at the same level or below the collection surface.
- 11. The method of claim 7, further comprising the step of maintaining the hydrogen concentration in the fused silica below 3×1017 molecules/cm3.
- 12. The method of claim 7, wherein the deposition surface temperature is maintained to at least 1800° C. and the refractory surface temperature is maintained to at least 1350° C. during the step of collecting the soot particles on the collection surface.
- 11. A furnace for manufacturing fused silica boules comprising:
a plurality of burners for depositing fused silica particles; and a generally planar collection surface disposed below the burners for collecting the fused silica particles and supporting a boule having an upper major surface and sidewalls during the deposition process, the collection surface lacking lateral walls.
- 12. The furnace of claim 11, wherein the furnace further includes means for maintaining a constant distance between the burners and the upper major surface of the boule during formation of the boule.
- 13. The furnace of claim 12, wherein the furnace further includes vents disposed at the same level or below the collection surface.
- 14. The furnace of claim 13, further including refractories surrounding the fused silica boule, and wherein the furnace further includes means for maintaining the temperature of the refractories at least 300° C. cooler than the temperature of the collection surface.
- 15. The furnace of claim 14, wherein the refractories surface includes zircon.
- 16. The furnace of claim 15, wherein the crown refractories include zircon.
- 17. A fused silica member produced by the apparatus of claim 11, wherein the member has a refractive index gradient in a direction substantially perpendicular to the use axis of less than 3 parts per million up to a thickness of 100 mm.
- 18. The fused silica member of claim 11, wherein the fused silica member has an internal transmission of at least 99.75%/cm at 193 nm.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application, Serial No. 60/325,929 filed Sep. 27, 2001 entitled Improved Methods and Furnaces For Fused Silica Production.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60325929 |
Sep 2001 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
10247917 |
Sep 2002 |
US |
Child |
10339927 |
Jan 2003 |
US |