Method for manufacturing optical fibre preforms
View Patent ↗Multi-flame burner wherein each flame is separated with respect to the neighboring flame by at least one separating tube made of a heat resistant material, for example, quartz glass or ceramic material. The burner also has a plurality of co-axial pipes, preferably made of a metallic material. The cross section of the upper end of the separating tube can be modified in order to increase the deposition rate of the burner. Methods for manufacturing optical fibre preforms by vapour deposition using the multi-flame deposition burners.
1. A method for manufacturing an optical preform by directing a flow of fine glass particles from a deposition burner onto a rotating elongated target preform, said method comprising the steps of:
(a) feeding said burner with a flow of a glass precursor material via a first plurality of ducts and directing said flow of glass precursor material toward said target preform;
(b) feeding said burner with a first flow of combustible gas and a first flow of combustion sustaining gas via said first plurality of ducts in order to generate an inner flame surrounding said flow of glass precursor material;
(c) feeding said burner with a second flow of combustible gas and a second flow of combustion sustaining gas via a second plurality of ducts in order to generate an outer flame surrounding said inner flame;
(d) reacting said glass precursor material in the presence of said flames, thus forming a flow of fine glass particles directed toward said target preform; and
(e) confining and separating said inner flame from said outer flame with an elongated hollow separating element made of a heat resistant material that surrounds said inner flame and that does not form a part of a duct for the passage of any gas or glass precursor material.
2. A method according to claim 1 , wherein said elongated hollow separating element has a length greater than the length of said first plurality of ducts.
3. A method according to claim 1 , wherein said elongated hollow separating element has a length greater than the length of said second plurality of ducts.
4. A method according to claim 1 , further comprising the step of confining said outer flame with a second elongated hollow separating element made of a heat resistant material that surrounds said outer flame and does not form a part of said second plurality of ducts.
5. A method according to claim 1 , further comprising the step of assembling said first plurality of ducts and said second plurality of ducts so as to leave a clearance to receive said elongated hollow separating element.