Fluid densitometer with temperature sensor to provide temperature correction
US-10041870-B2 · Aug 7, 2018 · US
US11577994B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11577994-B2 |
| Application number | US-201916982499-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 20, 2019 |
| Priority date | Mar 22, 2018 |
| Publication date | Feb 14, 2023 |
| Grant date | Feb 14, 2023 |
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The present invention is a method for manufacturing an optical fiber which includes a resin coating step in which a resin is supplied to a resin coating section via piping, and a glass fiber is passed through the resin coating section such that the resin is coated on the outer circumference of the glass fiber. In the resin coating step, the temperature of the resin inside the piping is measured, and a heating unit provided on the outer circumference of at least some of the piping is controlled such that the temperature of the resin inside the piping reaches a set target temperature; and a viscometer is disposed in between the resin coating section and the piping on which the heating unit is provided, and the set value of the target temperature is adjusted such that the viscosity of the resin measured by the viscometer reaches a target viscosity.
Opening claim text (preview).
The invention claimed is: 1. A method for manufacturing an optical fiber, the method comprising: a resin coating step, comprising: supplying resin to a resin coating portion via a pipe; causing a glass fiber to pass through the resin coating portion; coating an outer periphery of the glass fiber with the resin; controlling a heating portion provided around an outer periphery of at least a part of the pipe so that a resin temperature in the pipe becomes a set target temperature with measuring the resin temperature in the pipe; and adjusting a set value of the target temperature so that a resin viscosity measured by a viscometer becomes a target viscosity, the viscometer being disposed between the resin coating portion and the heating portion, wherein the viscometer includes a vibration type viscometer configured to measure viscosity of fluid by contact of a rod-shaped vibration sensor inserted into the pipe with the fluid, and wherein the set value of the target temperature is changed at an interval. 2. The method for manufacturing the optical fiber according to claim 1 , further comprising: keeping the resin coating portion at a predetermined temperature by allowing a fluid having a predetermined temperature set value to flow around a periphery of the resin coating portion; and adjusting the temperature set value of the fluid based upon the resin viscosity measured by the viscometer. 3. The method for manufacturing the optical fiber according to claim 1 , wherein the resin coating portion is configured by integrally assembling a first coating portion coating an outside of the glass fiber with first resin and a second coating portion coating an outside of the first resin with second resin, and wherein in the resin coating step, the method further comprises: measuring a resin temperature in a first pipe supplying the first resin to the first coating portion; measuring a resin temperature in a second pipe supplying the second resin to the second coating portion; controlling each heating portion so that the resin temperature in the first pipe and the resin temperature in the second pipe become the set target temperature; adjusting a set value of the target temperature in the first pipe so that a viscosity of the first resin measured by a first viscometer becomes a first target viscosity, the first viscometer being disposed between the first coating portion and the first pipe; and adjusting a set value of the target temperature in the second pipe so that a viscosity of the second resin measured by a second viscometer becomes a second target viscosity, the second viscometer being disposed between the second coating portion and the second pipe. 4. The method for manufacturing the optical fiber according to claim 3 , wherein the resin coating step comprises: causing the first target viscosity and the second target viscosity to match each other; and adjusting the set value of the target temperature in the first pipe and the set value of the target temperature in the second pipe. 5. An apparatus of manufacturing an optical fiber, comprising: a resin coating portion coating an outer periphery of a glass fiber with a resin by supplying the resin via a pipe and passing the glass fiber through the resin coating portion; a heating portion heating an outer periphery of at least a part of the pipe; a temperature measuring portion measuring a resin temperature in the pipe; a controller connected to the heating portion and configured to control the heating portion so that the resin temperature in the pipe becomes a target temperature; a viscometer disposed between the resin coating portion and the heating portion; and an adjusting portion configured to adjust a set value of the target temperature so that a resin viscosity measured by the viscometer becomes a target viscosity, wherein the viscometer includes a vibration type viscometer configured to measure viscosity of fluid by contact of a rod-shaped vibration sensor inserted into the pipe with the fluid, and wherein the set value of the target temperature is changed at an interval. 6. The apparatus of manufacturing the optical fiber according to claim 5 , further comprising: a temperature adjusting portion configured to keep a temperature of the resin coating portion at a predetermined temperature by allowing a fluid having a predetermined temperature set value to flow around a periphery of the resin coating portion, wherein the temperature adjusting portion is further configured to adjust the temperature set value of the fluid based on the resin viscosity measured by the viscometer.
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