Method of glazing an optical fiber preform with a plasma of reduced power
A method of fabricating an optical fiber preform includes an operation of glazing the outside surface of the preform using inductive heating, of the plasma torch type, for localized heating of the preform. A flow of gas between the plasma and the preform in the area of the outside face of the preform on which the plasma impinges reduces the power of the plasma in this outside surface area.
1. A method of fabricating an optical fiber preform including an operation of glazing the outside surface of said preform using a plasma torch for localized heating of the perform during a time when the plasma is substantially free of injected silica particles, wherein said plasma torch includes means for injecting a gas which is substantially free of silica particles between the plasma torch and said preform in the area of said preform to be heated so as to reduce the power of said plasma in said area, said method including the step of injecting said gas between the plasma torch and said preform during said glazing operation in the area of an outside surface of said preform on which said plasma impinges during said glazing operation, to thereby reduce the power of said plasma in said area during said glazing operation.
2. The method claimed in claim 1 wherein the flowrate of said gas is from 3 l/min to 6 l/min.
3. The method claimed in claim 1 wherein said gas is air.
4. The method claimed in claim 1 wherein said gas is a neutral gas.
5. The method claimed in claim 1 wherein the flowrate of said gas is 4 l/min.
6. A method of fabricating an optical fiber preform including an operation of glazing the outside surface of said preform using a plasma torch for localized heating of the perform during a time when the plasma is substantially free of injected silica particles, said method including the step of injecting a gas which is substantially free of silica particles between the plasma torch and said preform during said glazing operation in the area of an outside surface of said preform on which said plasma impinges during said glazing operation, to thereby reduce the power of said plasma in said area during said glazing operation.
7. The method claimed in claim 6 wherein the flowrate of said gas is from 3 l/min to 6 l/min.
8. The method claimed in claim 6 wherein said gas is air.
9. The method claimed in claim 6 wherein said gas is a neutral gas.
10. The method claimed in claim 6 wherein the flowrate of said gas is 4 l/min