Claims
- 1. An optical part comprising:
a polarizing film covered by a polyurethanic material comprising a photochromic compound therein.
- 2. The optical part according to claim 1, wherein the polarizing film comprises a PVA film.
- 3. The optical part according to claim 1, wherein the polarizing film comprises a PET film.
- 4. The optical part according to claim 1, further comprising a transparent plastic film laminated on at least one side of the polarizing film.
- 5. The optical part according to claim 4, wherein the total thickness of the polarizing film and the transparent plastic film is about 0.2 to 0.8 mm thick.
- 6. The optical part according to claim 5, wherein the transparent plastic film is a cellulose acetate, an acetobutyrrate or a polycarbonate.
- 7. The optical part according to claim 1, wherein the polarizing film has a degree of polarization of about 90% by European Standard EN 1863.
- 8. The optical part according to claim 1, wherein the polarizing film is positioned at the center of the part.
- 9. The optical part according to claim 1, wherein the photochromic compound is selected from the group consisting of naphthopyrans, benzopyrans, indenonaphthopyrans, phenanthorpyrans, spiro(benzindoline)naphthopyrans, spiro(indoline)benzopyrans, spiro(indoline)naphthopyrans, spiro(indoline)quinopyrans, spiro(indoline) pyrans, spiro(indoline)naphthoxazines, spiro(indoline)pyridobenzoxazines, spiro(benzindoline)pyridobenzoxazines, spiro(benzindoline)naphthoxazines, spiro(indoline)benzoxazines, mercury dithizonates, fulgides, fulgimides and mixtures thereof.
- 10. The optical part according to claim 1, wherein the photochromic compound is an organic photochromic compound having at least one activated absorption maxima within the range of between about 400 and 700 nanometers.
- 11. The optical part according to claim 1, wherein the polyurethanic material comprises a photochromic amount of the photochromic compound.
- 12. The optical part according to claim 1, wherein the polyurethanic material comprises about 0.05 to 2.0 percent by weight of photochromic compound.
- 13. The optical part according to claim 1, further comprising a hard coating layer on at least one side of the part.
- 14. The optical part according to claim 13, wherein the hard coating layer comprises silica, titania or zirconia, or mixtures thereof.
- 15. The optical part according to claim 13, wherein the hard coating layer is an organic hard coating material.
- 16. The optical part according to claim 1, further comprising a tintable coating, an antireflective surface or a hydrophobic coating, or any combination thereof, on at least one side of the optical part.
- 17. The optical part according to claim 1, further comprising a monolayer or multilayer of metal oxides or metal fluorides deposited on at least one side of the optical part.
- 18. The optical part according to claim 1, wherein the polyurethanic material is an elastomer resin obtained by the prepolymer method.
- 19. The optical part according to claim 1, wherein the polyurethanic material additionally comprises one or more of a light stabilizer, heat stabilizers, antioxidant, ultraviolet light absorber, mold release agent, static (non-photochromic) dye, pigment, or a flexibilizing additive.
- 20. The optical part according to claim 1, wherein the polyurethanic material additionally comprises one or more of an alkoxylated phenol benzoate or a poly(alkylene glycol) dibenzoate.
- 21. The optical part according to claim 1, wherein the polyurethanic material additionally comprises an antiyellowing additive.
- 22. The optical part according to claim 21, wherein the antiyellowing additive is 3-methyl-2-butenol, organo pyrocarbonates or triphenyl phosphite.
- 23. The optical part according to claim 21, wherein the antiyellowing additive is present in an amount totaling about 10% or less by weight.
- 24. A method of making a photochromic, polarized optical part comprising:
inserting a polarizing film into a mold, introducing a polyurethanic material comprising a photochromic compound therein into the mold so that the polyurethanic material covers both sides of the polarizing film, curing the optical part at an appropriate cycle time and temperature, and removing the optical part from the mold for additional curing.
- 25. The method according to claim 24, wherein the polyurethanic material is prepared by rapidly mixing a prepolymer with about 0.05 to 2.0% by weight of a photochromic compound, and degassing the mixture to form the polyurethanic material.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application No. 60/364,449 filed on Mar. 14, 2002, and U.S. Provisional Patent Application No. 60/393,506 filed on Jul. 3, 2002, the contents of which are each hereby incorporated by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60364449 |
Mar 2002 |
US |
|
60393506 |
Jul 2002 |
US |