Claims
- 1. A method of preparing a preform for an optical fiber, said method comprising the steps of:
heating a preform having a central duct at a first collapsing temperature to reduce the size of said central duct; etching the surface of said central duct at a temperature lower than a minimum collapsing temperature of said preform; and heating said preform at a second collapsing temperature to collapse said central duct of said preform.
- 2. The method of preparing a preform for an optical fiber according to claim 1, wherein said first collapsing temperature is lower than said second collapsing temperature.
- 3. The method of preparing a preform for an optical fiber according to claim 1, wherein said first heating step is performed with one end of said preform plugged with a device.
- 4. The method of preparing a preform for an optical fiber according to claim 1, wherein said etching step is performed by flowing an etchant gas through said central duct.
- 5. The method of preparing a preform for an optical fiber according to claim 4, wherein said etchant gas comprises a mixture of oxygen and SF6.
- 6. The method of preparing a preform for an optical fiber according to claim 5, wherein said oxygen and SF6 have flow rates of 50-1500 sccm and 3.0-60.0 sccm respectively.
- 7. The method of preparing a preform for an optical fiber according to claim 1, wherein said etching step has an etching rate of 0.003-0.08 m3/min.
- 8. The method of preparing a preform for an optical fiber according to claim 1, wherein said etching step is performed at a temperature about 200-400° C. lower than said minimum collapsing temperature.
- 9. The method of preparing a preform for an optical fiber according to claim 1, wherein said etching step is performed at a temperature between 1600° C. and 2000° C.
- 10. The method of preparing a preform for an optical fiber according to claim 1, wherein said etching step is performed by traversing a heating source external to said preform at a traverse speed of 1.2 cm/min.-21.0 cm/min.
- 11. The method of preparing a preform for an optical fiber according to claim 1, wherein said second heating step is performed with one end of said preform closed.
- 12. A method of preparing a preform for an optical fiber, said method comprising the steps of:
heating a preform having a central duct at a first collapsing temperature to reduce the size of said central duct; flowing an etchant gas comprising SF6 through said central duct to etch the surface of said central duct at a temperature lower than a minimum collapsing temperature of said preform; and heating said preform at a second collapsing temperature to collapse said central duct of said preform.
- 13. The method of preparing a preform for an optical fiber according to claim 12, wherein said first collapsing temperature is lower than said second collapsing temperature.
- 14. The method of preparing a preform for an optical fiber according to claim 12, wherein said heating step is performed with one end of said preform plugged with a device.
- 15. The method of preparing a preform for an optical fiber according to claim 12, wherein said etchant gas comprises a mixture of oxygen and SF6.
- 16. The method of preparing a preform for an optical fiber according to claim 12, wherein said etchant gas comprises a mixture of oxygen and SF6 at a flow rate of 50-1500 sccm and 3.0-60.0 sccm respectively.
- 17. The method of preparing a preform for an optical fiber according to claim 12, wherein said etching step has an etching rate of 0.003-0.08 cm3/min.
- 18. The method of preparing a preform for an optical fiber according to claim 12, wherein said etching step is performed at a temperature about 200-400° C. lower than said minimum collapsing temperature.
- 19. The method of preparing a preform for an optical fiber according to claim 12, wherein said etching step is performed at a temperature between 1600° C. and 2000° C.
- 20. The method of preparing a preform for an optical fiber according to claim 12, wherein said etching step is performed by traversing a heating source external to said preform at a traverse speed of 1.2 cm/min.-21.0 cm/min.
- 21. The method of preparing a preform for an optical fiber according to claim 12, wherein said second heating step is performed with one end of said preform closed.
RELATED APPLICATIONS
[0001] The present application claims the priority of U.S. provisional patent application No. 60/123,136, entitled “Method to Manufacture Optical Fibers,” filed on Mar. 8, 1999.
Provisional Applications (1)
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Number |
Date |
Country |
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60123136 |
Mar 1999 |
US |