Single-mode step type polymer optical fiber and preparation method thereof
A polymer and step-type technology, applied in cladding optical fiber, optical components, optical waveguide and light guide, etc., can solve the problems of increasing propagation loss and unsatisfactory dispersion effect, so as to reduce propagation loss, ensure the quality of interface bonding, and avoid The effect of loss increase
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Embodiment 1
[0031] The invention provides a method for preparing a single-mode step-type polymer optical fiber, which comprises the following steps:
[0032] (1) Melt and extrude Zeonex E48R granules into a round rod through a precision extruder, and cool to room temperature 25°C. The diameter of the made round rod is 4.9mm; the melting temperature is controlled at 140-180°C.
[0033] (2) Melt and extrude Zeonex 480R granules into a cylinder through a precision extruder, and cool it to room temperature 25°C. The outer diameter of the produced cylinder is 125.5mm, and the inner diameter is 4.7mm; the melting temperature is controlled at 140-180 ℃.
[0034] (3) Grinding and polishing the outer surface of the round rod made in step (1) and the inner and outer surfaces of the cylinder made in step (2) respectively, so that the inner surface of the cylinder and the outer surface of the round rod have a size between Interference fit H7 / s6.
[0035] (4) drawing one end of the round rod obtaine...
Embodiment 2
[0041] The invention provides a method for preparing a single-mode step-type polymer optical fiber, which comprises the following steps:
[0042] (1) Melt and extrude Zeonex E48R granules into a round rod through a precision extruder, and cool to room temperature 25°C. The diameter of the made round rod is 4.5mm; the melting temperature is controlled at 140-180°C.
[0043] (2) Melt and extrude Zeonex 480R granules into a cylinder through a precision extruder, and cool to room temperature 25°C. The outer diameter of the produced cylinder is 125.6mm, and the inner diameter is 4.3mm; the melting temperature is controlled at 140-180 ℃.
[0044] The contents of steps (3) to (7) are the same as the contents of steps (3) to (7) in Embodiment 1, and will not be repeated here.
[0045] (8) The optical fiber preform obtained in step (7) is finally drawn by an optical fiber drawing machine, and finally drawn into a single-mode optical fiber. The outer diameter of the single-mode optical...
Embodiment 3
[0047] The invention provides a method for preparing a single-mode step-type polymer optical fiber, which comprises the following steps:
[0048] (1) Melt and extrude Zeonex E48R granules into a round rod through a precision extruder, and cool to room temperature 25°C. The diameter of the made round rod is 4.6mm; the melting temperature is controlled at 140-180°C.
[0049] (2) Melt and extrude Zeonex 480R particles into a cylinder through a precision extruder, and cool to room temperature 25°C. The outer diameter of the produced cylinder is 125.8mm, and the inner diameter is 4.4mm; the melting temperature is controlled at 140-180 ℃.
[0050] The contents of steps (3) to (7) are the same as the contents of steps (3) to (7) in Embodiment 1, and will not be repeated here.
[0051] (8) The optical fiber preform obtained in step (7) is finally drawn by an optical fiber drawing machine, and finally drawn into a single-mode optical fiber. The outer diameter of the single-mode optica...
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