IP Library › Granted Patent US 11,256,052
Granted Patent B2
US 11,256,052 · App. 16/919,418 · Granted Feb 22, 2022

Flame retardant fiber optic cable with halogen free sheath for blowing applications

Inventors: Michael Alexander Heinz (Berlin, DE); Ravinder Kumar Kinnera (Berlin, DE)
Assignee: CORNING RESEARCH & DEVELOPMENT CORPORATION
G02B6/4436G02B6/4432
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Quick Facts
Patent No.
US 11,256,052
App. No.
16/919,418
Granted
Feb 22, 2022
Kind
B2
Abstract

Embodiments of the disclosure relate to an optical fiber cable. The optical fiber cable includes a subunit having a first interior surface and a first exterior surface. The first interior surface defines a central bore along a longitudinal axis of the optical fiber cable. At least one optical fiber is disposed within the central bore of the subunit, and a plurality of strengthening yarns is disposed around the subunit. A cable sheath disposed around the plurality of strengthening yarns. The cable sheath has a second interior surface and a second exterior surface. The second exterior surface defines an outermost surface of the optical fiber cable. The cable sheath includes from 55% to 68% by weight of a mineral-based flame retardant additive and from 35% to 45% by weight of a polymer blend. The polymer blend includes a co-polyester or co-polyether and a polyolefin or a polyolefin elastomer.

Claims (27)

1. An optical fiber cable, comprising:

a subunit having a first interior surface and a first exterior surface, wherein the first interior surface defines a central bore along a longitudinal axis of the optical fiber cable;

at least one optical fiber disposed within the central bore of the subunit;

a plurality of strengthening yarns disposed around the subunit;

a cable sheath disposed around the plurality of strengthening yarns, the cable sheath having a second interior surface and a second exterior surface, wherein the second exterior surface defines an outermost surface of the optical fiber cable, wherein the cable sheath comprises from 55% to 68% by weight of a mineral-based flame retardant additive and from 35% to 45% by weight of a polymer blend, and wherein the polymer blend comprises a co-polyester or co-polyether and a polyolefin or a polyolefin elastomer; and

a bedding layer disposed between the second interior surface of the cable sheath and the plurality of strengthening yarns, wherein the bedding layer comprises a greater amount of mineral-based flame retardant additive than the cable sheath.

2. The optical fiber cable of claim 1 , wherein optical fiber cable achieves a B2 ca -s1a, a1, d0 rating according to EN13501-6.

3. The optical fiber cable of claim 1 , wherein the subunit has a thickness between the first interior surface and the first exterior surface of from 0.05 mm to 0.2 mm.

4. The optical fiber cable of claim 1 , wherein the cable sheath has a density of greater than 1.6 g/m 3 .

5. The optical fiber cable of claim 1 , wherein the plurality of strengthening yarns comprises aramid fibers, glass fibers, basalt fibers, or combinations of two or more thereof.

6. The optical fiber cable of claim 1 , wherein the second exterior surface of the cable sheath defines an outer diameter of the optical fiber cable and wherein the outer diameter is 3 mm or less.

7. The optical fiber cable of claim 6 , wherein the optical fiber cable is configured to be blown a distance of at least 150 m through a duct having an inner diameter in a range of 3.5 mm to 4 mm.

8. The optical fiber cable of claim 1 , wherein the mineral-based flame retardant additive comprises at least one of aluminum trihydrate or magnesium hydroxide.

9. The optical fiber cable of claim 1 , wherein the bedding layer comprises from 10% to 30% by weight of a polyolefin or a polyolefin elastomer and from 70% to 85% by weight of the mineral-based flame retardant additive.

10. The optical fiber cable of claim 9 , wherein the mineral-based flame retardant additive comprises at least one of aluminum trihydrate or magnesium hydroxide.

11. The optical fiber cable of claim 9 , wherein the polyolefin or polyolefin elastomer comprises at least one of ethylene-vinyl acetate, ethylene butyl acrylate, ethylene methacrylate, ethylene propylene rubber, ethylene propylene diene monomer rubber, styrene-ethylene/butylene-styrene, low density polyethylene, linear low density polyethylene, or polypropylene.

12. The optical fiber cable of claim 1 , wherein the cable sheath has a first thickness and the bedding layer has a second thickness and wherein the first thickness and the second thickness are substantially equal.

13. The optical fiber cable of claim 1 , wherein the bedding layer has a density of at least 1.7 g/cm 3 .

14. The optical fiber cable of claim 1 , comprising at least one further subunit having a further central bore with at least one optical fiber disposed therein, wherein the plurality of strengthening yarns is disposed around the subunit and the at least one further subunit.

15. An indoor optical fiber cable, comprising:

at least one subunit, each subunit comprising a first interior surface and a first exterior surface, wherein the first interior surface of each subunit defines a central bore along a longitudinal axis of the indoor optical fiber cable;

at least one optical fiber disposed within the central bore of each subunit;

at least one strengthening yarn wrapped around the at least one subunit;

a cable sheath disposed around the at least one strengthening yarn, the cable sheath having a second interior surface and a second exterior surface, wherein the second exterior surface defines an outermost surface of the indoor optical fiber cable, wherein the cable sheath comprises a low smoke, zero halogen (LSZH) material having a limiting oxygen index of at least 40% as measured according to ASTM D 2863 A, wherein the LSZH material has a density of at least 1.6 g/cm 3 ; and wherein the cable sheath comprises from 55% to 68% by weight of a mineral-based flame retardant additive and from 35% to 45% by weight of a polymer blend; and wherein the polymer blend comprises a co-polyester or co-polyether and a polyolefin or a polyolefin elastomer; and

a bedding layer disposed between the second interior surface of the cable sheath and the at least one strengthening yarn, wherein the bedding layer comprises from 10% to 30% by weight of a polyolefin or a polyolefin elastomer and from 70% to 85% by weight of the mineral-based flame retardant additive.

16. The indoor optical fiber cable of claim 15 , wherein optical fiber cable achieves a B2 ca -s1a, a1, d0 rating according to EN13501-6.

17. The indoor optical fiber cable of claim 15 , wherein each subunit has a thickness between the first interior surface and the first exterior surface of from 0.05 mm to 0.5 mm and wherein each subunit comprises a flame retardant compound comprising a thermoplastic elastomer and a mineral-based flame retardant.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2020
From: HEINZ, MICHAEL ALEXANDER; KINNERA, RAVINDER KUMAR
To: CORNING RESEARCH & DEVELOPMENT CORPORATION
Reel/Frame 054774/0846 →
Continuity (2)
Provisional Application 62871805 · Jul 9, 2019
Related Publication 20210011238A1 · Jan 14, 2021