Method of applying coating liquid to an optical fiber
US-2021395143-A1 · Dec 23, 2021 · US
US11518709B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11518709-B2 |
| Application number | US-201916380603-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 10, 2019 |
| Priority date | Apr 20, 2018 |
| Publication date | Dec 6, 2022 |
| Grant date | Dec 6, 2022 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
An optical fiber coating die assembly is provided. The optical fiber coating die assembly includes a housing defining a guide chamber having an inlet for receiving optical fiber and an outlet, a guide die located at the outlet of the guide chamber, and a sizing die. The optical fiber coating die assembly also includes a coating applicator disposed between the guide die and the sizing die, and a tube operatively coupled to the inlet of the guide chamber and axially aligned with the chamber to receive the optical fiber fed into the guide chamber and provide a barrier to air flow.
Opening claim text (preview).
What is claimed is: 1. An optical fiber coating die assembly comprising: a housing defining a guide chamber having: an inlet for receiving optical fiber and an outlet; a guide die located at the outlet of the guide chamber; a sizing die; a coating applicator disposed between the guide die and the sizing die; and a tube operatively coupled to the inlet of the guide chamber and axially aligned with the guide chamber structured to receive the optical fiber fed into the guide chamber and provide a barrier to air flow, wherein the tube has a length of at least 5 centimeters wherein the tube extends above a top surface of the housing, wherein the housing receives a purge gas that flows into the guide chamber to the tube and exits at the tube inlet. 2. The coating die assembly of claim 1 , wherein the guide chamber has a cylindrical cross section with a diameter of 0.2 cm to 0.3 cm. 3. The coating die assembly of claim 1 , wherein the tube is integrally formed with the housing and the guide chamber. 4. The coating die assembly of claim 1 , wherein the tube has a length in the range of 5-25 centimeters. 5. The coating die assembly of claim 4 , wherein the tube has a length in the range of 5-12 centimeters. 6. The coating die assembly of claim 1 , wherein the tube has an internal cylindrical bore with an internal diameter in the range of 0.7 millimeters to 5.0 millimeters. 7. The coating die assembly of claim 6 , wherein the internal diameter is in the range of 1-3 millimeters. 8. The coating die assembly of claim 1 , wherein the tube has an internal taper angle at an inlet end in the range of 3-20 degrees and the taper has a length of more than 1 centimeter. 9. The coating die assembly of claim 8 , wherein the internal taper angle is in the range of 3-10 degrees. 10. An optical fiber coating die assembly comprising: a housing defining at least a portion of a guide chamber for receiving optical fiber at an inlet, wherein the guide chamber has a length greater than 10 centimeters; a guide die located at an exit of the guide chamber, wherein the guide chamber comprises a first cylindrical bore formed in the housing and a second cylindrical bore defined by an extension tube coaxially aligned with the first cylindrical bore and wherein the tube extends above a top surface of the housing, wherein the housing is structured to receive a purge gas that flows into the exit of the guide chamber and exits the inlet and wherein the extension tube is structured to receive the purge gas from the housing and exits toward an inlet of the extension tube; a sizing die; and a coating applicator disposed between the guide die and the sizing die. 11. The coating die assembly of claim 10 , wherein the extension tube has a length in the range of 5-12 centimeters. 12. The coating die assembly of claim 10 , wherein the extension tube has a length in the range of 5-25 centimeters. 13. The coating die assembly of claim 11 , wherein the extension tube has an internal taper angle at an inlet end in the range of 3-20 degrees and the taper has a length of more than 1 centimeter. 14. The coating die assembly of claim 13 , wherein the internal taper angle is in the range of 3-10 degrees. 15. The coating die assembly of claim 10 , wherein the tube is integrally formed with the housing and the guide chamber. 16. The coating die assembly of claim 11 , wherein the extension tube has a cylindrical bore with an internal diameter in the range of 0.7 millimeters to 5.0 millimeters.
from reheated softened tubes, rods, fibres or filaments {, e.g. drawing fibres from preforms (draw-down of tubes, rods or preforms to reduced diameter preforms C03B37/0124)} · CPC title
Extrusion · CPC title
General methods of coating; Devices therefor · CPC title
Multiple coatings · CPC title
Coatings specially designed to be durable, e.g. scratch-resistant · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.