Method for tapering optical fiber preform
A technology for processing optical fiber preforms and cones, which is applied in manufacturing tools, glass fiber drawing devices, and glass manufacturing equipment, etc. It can solve the problems of excessive glass loss in optical fiber preforms, low processing efficiency, and consumption of glass rods, etc., so as to save processing Auxiliary materials, improve production efficiency, and facilitate the effect of wire drawing processing
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Embodiment 1
[0018] Embodiment 1 is a biconical drawing of a solid optical fiber preform with an outer diameter of 180mm.
[0019] Clamp the two optical fiber preforms to the two ends of the glass fusion lathe respectively, so that the axes of the two optical fiber preforms coincide, the two optical fiber preforms rotate synchronously, and ignite the furnace to heat the heat source;
[0020] Move the front sections of the two optical fiber preforms to the furnace 2 for preheating, and the temperature at the front end of the optical fiber preforms reaches about 500°C after preheating for about 15 minutes;
[0021] Move the two optical fiber preforms so that the front ends are close to the heat source 1 in the furnace, and use the heat source to heat the front end faces of the optical fiber preforms;
[0022] After the heat source heats the heating area at the front end of the optical fiber preform to the softening point, the end faces of the two optical fiber preforms are welded together; ...
Embodiment 2
[0026] Embodiment 2 is a biconical drawing of an optical fiber preform sleeve with an outer diameter of 80 mm.
[0027] Clamp the two optical fiber preform sleeves to the two ends of the glass fusion lathe respectively, so that the axes of the two optical fiber preform sleeves coincide, the two optical fiber preform sleeves rotate synchronously, and ignite the furnace to heat the heat source;
[0028] Move the front end of the two optical fiber preform sleeves to the furnace for preheating, and the temperature at the front end of the optical fiber preform sleeve reaches 450°C after preheating for about 5 minutes;
[0029] Move the two optical fiber preform sleeves so that the front ends are close to the heat source in the furnace, and use the heat source to heat the front end faces of the optical fiber preform sleeves;
[0030] After the heat source heats the heating area of the optical fiber preform sleeve to the softening point, the end faces of the two optical fiber sleev...
Embodiment 3
[0034] Embodiment 3 is a biconical drawing of an optical fiber prefabricated core rod with an outer diameter of 40 mm.
[0035] Clamp the two optical fiber prefabricated core rods to the two ends of the glass fusion lathe respectively, so that the axes of the two optical fiber prefabricated rods coincide, the two optical fiber core rods rotate synchronously, and ignite the furnace heating heat source;
[0036] Move the front sections of the two optical fiber core rods to the furnace for preheating, and the temperature at the front end of the optical fiber core rods reaches 500°C after preheating for about 5 minutes;
[0037] Move the front ends of the two optical fiber preform core rods close to the heat source in the furnace, and use the heat source to heat the front end faces of the optical fiber preform core rods;
[0038] After the heat source heats the heating area of the optical fiber preform core rod to the softening point, the two optical fiber preform core rods are ...
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Abstract
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Application Information
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