Method for making bent tip fibers
US-10386578-B2 · Aug 20, 2019 · US
US10527800B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10527800-B2 |
| Application number | US-201816226746-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 20, 2018 |
| Priority date | Jul 15, 2016 |
| Publication date | Jan 7, 2020 |
| Grant date | Jan 7, 2020 |
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The present embodiment makes it possible to reduce the height of an optical connection component including a bent optical fiber having a bent-shape part and a fiber fixing component in a safer and more stable manner compared to a conventional technique. Before the fiber fixing component is fixed to the bent optical fiber, formation of a bent portion using the fiber fixing component obliquely disposed and heating of the bent portion are repeated a plurality of times for the optical fiber to which the fiber fixing component is movably fitted. At that time, movement of the optical fiber and the heating of the bent portion are alternately repeated. Thus, a plurality of bent portions where stress is released is formed in the optical fiber along the longitudinal direction thereof.
Opening claim text (preview).
The invention claimed is: 1. A method for manufacturing an optical connection component including a bent optical fiber having a bent-shape part and a fiber fixing component attached to the bent optical fiber, the method comprising: a pre-step of preparing an optical fiber comprised of silica-based glass and the fiber fixing component, the fiber fixing component having a structure for limiting movement of the optical fiber in a direction orthogonal to a longitudinal direction of the optical fiber; a fitting step of fitting the fiber fixing component on one end part of the optical fiber in a state movable in the longitudinal direction, fixing the fiber fixing component to a rotating component rotatable about a predetermined rotary shaft, and fixing the other end part of the optical fiber to a fiber feeding mechanism, a bent optical fiber manufacturing step of, to form the bent-shape part in the optical fiber, forming a plurality of bent portions in the optical fiber, the plurality of bent portions being separated from each other along the longitudinal direction; a step of adjusting, after the bent optical fiber manufacturing step, relative positions of the bent-shape part and the fiber fixing component while fitting the fiber fixing component on the one end part of the bent optical fiber; and a fixing step of fixing, after the adjusting, the fiber fixing component to the bent optical fiber, wherein the bent optical fiber manufacturing step includes: an elastic bending step of, to form a bent portion in the optical fiber, inclining a posture of the fiber fixing component by a predetermined angle with respect to a feeding direction of the optical fiber while feeding the optical fiber toward the fiber fixing component by the fiber feeding mechanism; and a heating step of heating and softening the bent portion to release stress in the bent portion, and wherein a pair of the elastic bending step and the heating step is repeated a plurality of times to form the plurality of bent portions separated from each other along the longitudinal direction in the optical fiber, while changing an inclination angle of the fiber fixing component with respect to the feeding direction of the optical fiber in the elastic bending step so that the inclination angle becomes greater stepwise every time the elastic bending step is performed. 2. The method for manufacturing the optical connection component according to claim 1 , wherein in the fixing step, an end part of the fiber fixing component and a start end of the bent-shape part of the bent optical fiber match with each other. 3. The method for manufacturing the optical connection component according to claim 2 , wherein the heating step includes emitting a laser beam to heat the bent portion. 4. The method for manufacturing the optical connection component according to claim 3 , wherein the fitting step includes fixing the fiber fixing component to a rotating component rotatable about a predetermined rotary shaft, and the elastic bending step includes rotating the rotating component about the rotary shaft in a state where the fiber fixing component is fixed to change the posture of the fiber fixing component with respect to the feeding direction of the optical fiber. 5. The method for manufacturing the optical connection component according to claim 1 , wherein the heating step includes emitting a laser beam to heat the bent portion. 6. The method for manufacturing the optical connection component according to claim 5 , wherein the elastic bending step includes rotating the rotating component about the rotary shaft in a state where the fiber fixing component is fixed to change the posture of the fiber fixing component with respect to the feeding direction of the optical fiber. 7. The method for manufacturing the optical connection component according to claim 1 , wherein the pre-step includes preparing a plurality of optical fibers including the optical fiber, the fitting step includes fitting the fiber fixing component to one end part of each of the plurality of optical fibers arranged in parallel in a predetermined direction in a state movable in a longitudinal direction of the plurality of optical fibers, and fixing the other end of each of the plurality of optical fibers to the fiber feeding mechanism, and for each of the plurality of optical fibers to which the fiber fixing component is movably fitted, the bent optical fiber manufacturing step and the fixing step are carried out.
Details of mounting fibres in ferrules; Assembly methods; Manufacture · CPC title
Laser heating · CPC title
Bend · CPC title
Bent or angled connectors (G02B6/3827 takes precedence) · CPC title
with heat application, e.g. for making optical fibres (fusion-splicing of light guides G02B6/255; treatment of light guides to shape optical elements {G02B6/2835, G02B6/2856}) · CPC title
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