Claims
- 1. A cladding composition for plastic clad silica optical fibers comprising
- a highly fluorinated monofunctional acrylate with a refractive index below 1.38 and constituting more than 50% by weight of the composition,
- a polyfunctional acrylate being trifunctional or higher serving as a crosslinking agent,
- a mono or polyfunctional thiol that functions as a synergist, and
- a photoinitiator.
- 2. The composition according to claim 1 wherein said highly fluorinated monofunctional acrylate comprises 50 to 90% by weight, said polyfunctional acrylate comprises 2.0 to 35% by weight, said thiol synergist comprises 0.5 to 20% by weight, and said photoinitiator comprises 0.5 to 20% by weight.
- 3. The composition according to claim 1 wherein said highly fluorinated monofunctional acrylate comprises 60 to 90% by weight, said polyfunctional acrylate comprises 5 to 25% by weight, said thiol synergist comprises 1 to 10% by weight, and said photoinitiator comprises 0.9 to 10% by weight.
- 4. The composition according to claims 1, 2 or 3 wherein said highly fluorinated monofunctional acrylate has the general formula:
- R.sub.F (CH.sub.2).sub.n O.sub.2 CC.sub.2 H.sub.3
- where R.sub.F =X--(CF.sub.2).sub.m,m=3-12, X=H or F, and n=1, 2 . . . 3m.
- 5. The composition according to claims 1, 2 or 3 wherein said highly fluorinated monofunctional acrylate is trihydroperfluoroundecylacrylate, said polyfunctional acrylate is trimethylolpropanetriacrylate, and said thiol synergist is .gamma.-mercaptopropyltrimethoxysilane.
- 6. The composition according to claims 1, 2 or 3 wherein said highly fluorinated monofunctional acrylate is trihydroperfluoroheptylacrylate, said polyfunctional acrylate is trimethylolpropanetriacrylate, and said thiol synergist is trimethylolpropanetris 3-mercaptoproprionate.
- 7. A plastic clad silica optical fiber comprising
- a fused silica core, and
- an ultraviolet cured cladding composition which includes a mixture of a highly fluorinated monofunctional acrylate with a refractive index below 1.38 and constituting more than 50% by weight of the composition, a trifunctional or higher acrylate serving as a crosslinking agent, mono or polyfunctional thiol that functions as a synergist, and an ultraviolet initiator.
- 8. A composition having improved optical qualities, said composition comprising
- (a) a highly fluorinated monofunctional acrylate constituting more than 50% by weight of the composition;
- (b) a polyfunctional acrylate being trifunctional or higher serving as a crosslinking agent;
- (c) a mono or polyfunctional thiol that functions as a synergist; and
- (d) an photoinitiator.
- 9. The composition according to claim 8 wherein said highly fluorinated monofunctional acrylate comprises 50 to 90% by weight, said polyfunctional acrylate comprises 2.0 to 35% by weight, said thiol synergist comprises 0.5 to 20% by weight, and said photoinitiator comprises 0.5 to 20% by weight.
- 10. The composition according to claim 8 wherein said highly fluorinated monofunctional acrylate comprises 60 to 90% by weight, said polyfunctional acrylate comprises 5 to 25% by weight, said thiol synergist comprises 1 to 10% by weight, and said photoinitiator comprises 0.9 to 10% by weight.
- 11. The composition of claim 8, 9 or 10 wherein said highly fluorinated monofunctional acrylate has a refractive index below 1.38.
- 12. The composition according to claims 8, 9 or 10 wherein said highly fluorinated monofunctional acrylate has the general formula:
- R.sub.F (CH.sub.2).sub.n O.sub.2 CC.sub.2 H.sub.3
- where R.sub.F =X--(CF.sub.2).sub.m, m=3-12, X=H or F, and n=1, 2 . . . 3m.
- 13. The composition according to claims 8, 9 or 10 wherein said highly fluorinated monofunctional acrylate has the general formula: ##STR2## where R=CH.sub.3, C.sub.2 H.sub.5 . . . C.sub.4 H.sub.9
- R.sub.F =C.sub.N F.sub.2N+1
- X=H or CH.sub.3 ; and
- N=2 or more.
- 14. The composition according to claims 8, 9 or 10 wherein said highly fluorinated monofunctional acrylate is trihydroperfluoroundecylacrylate, said polyfunctional acrylate is trimethylolpropanetriacrylate, and said thiol synergist is .gamma.-mercaptopropyltrimethoxysilane.
- 15. The composition according to claims 8, 9 or 10 wherein said highly fluorinated monofunctional acrylate is trihydroperfluoroheptylacrylate, said polyfunctional acrylate is trimethylolpropanetriacrylate, and said thiol synergist is trimethylolpropanetris 3-mercaptoproprionate.
- 16. An optical fiber comprising:
- (a) a core, and
- (b) an ultraviolet cured composition which includes a mixture of a highly fluorinated monofunctional acrylate and constituting more than 50% by weight of the composition, a trifunctional or higher acrylate serving as a crosslinking agent, a mono or polyfunctional thiol that functions as a synergist, and a photoinitiator.
- 17. The optical fiber of claim 16 wherein said composition includes a highly fluorinated monofunctional acrylate with a refractive index below 1.38.
- 18. The optical fiber of claim 16 wherein said core is a fused silica core.
- 19. An optical article comprising
- (a) a substrate; and
- (b) at least one layer of a cured composition having a variable refractive index and being layered in decreasing refractive index order from said substrate, said compositions includes a mixture of a highly fluorinated mono functional acrylate constituting more than 50% by weight of the composition, a trifunctional or higher acrylate serving as a crosslinking agent, a mono or polyfunctional thiol that functions as a synergist and an ultraviolet photo-initiator.
- 20. The optical article of claim 19 further comprising said substrate being made of said cured composition.
BACKGROUND OF THE INVENTION
This application is a continuation in-part of my earlier filed co-pending application, Ser. No. 352,050 filed Feb. 24, 1982 now abandoned.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
3864229 |
Zapp et al. |
Feb 1975 |
|
4120923 |
Kloker et al. |
Oct 1978 |
|
4161500 |
Schleinitz et al. |
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4167465 |
Zussman et al. |
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|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
352050 |
Feb 1982 |
|