Photochromic polyurethane laminate
A photochromic polyurethane laminate that is constructed to solve certain manufacturing difficulties involved in the production of plastic photochromic lenses is disclosed. The photochromic laminate includes at least two layers of a resinous material and a photochromic polyurethane layer that is interspersed between the two resinous layers and which contains photochromic compounds. The polyurethane layer is formed by curing a mixture of a solid thermoplastic polyurethane, at least one isocyanate prepolymer, at least one photochromic compound, and a stabilizing system.
1. A photochromic polyurethane layer prepared from a mixture comprising a polyurethane, an isocyanate-terminated polyurethane prepolymer, and a photochromic compound;
the polyurethane having a number average molecular weight from 9,000 to 100,000 and prepared from a composition comprising:
an aliphatic diisocyanate comprising 4,4′-dicyclohexylmethanediiso-cyanate;
a polyester polyol; and
a chain extender;
the isocyanate-terminated polyurethane prepolymer prepared from a composition comprising:
an aliphatic diisocyanate comprising 4,4′-dicyclohexylmethanediiso-cyanate; and
a polyester polyol;
wherein a mixing ratio of the polyurethane and the isocyanate-terminated polyurethane prepolymer by weight is in a range from 1:9 to 9:1 and said polyurethane comprises terminal hydroxyl groups, urethane groups and urea groups having active hydrogen atoms to react with said isocyanate-terminated polyurethane prepolymer after lamination to provide further curability of said photochromic polyurethane layer.
2. The photochromic polyurethane layer of claim 1 wherein the polyurethane and the isocyanate-terminated polyurethane prepolymer are prepared from the same aliphatic diisocyanate.
3. The photochromic polyurethane layer of claim 1 wherein the polyurethane and the isocyanate-terminated polyurethane prepolymer are prepared from the same polyester polyol.
4. The photochromic polyurethane layer of claim 1 wherein the polyurethane and the isocyanate-terminated polyurethane prepolymer are prepared from different polyester polyols.
5. The photochromic polyurethane layer of claim 1 wherein the polyurethane is prepared from a composition comprising a polycaprolactone.
6. The photochromic polyurethane layer of claim 1 wherein the polyurethane is prepared from a composition comprising a polycaprolactone having a number average molecular weight of about 1000 grams per mole.
7. The photochromic polyurethane layer of claim 1 wherein the polyurethane is prepared from a composition comprising a diol as a chain extender having a molecular weight in the range of approximately 62 to 499 grams per mole.
8. The photochromic polyurethane layer of claim 1 wherein the polyurethane is prepared from a composition comprising 1,4-butane-diol as the chain extender.
9. The photochromic polyurethane layer of claim 1 wherein the isocyanate-terminated polyurethane prepolymer is prepared from a composition comprising a polycaprolactone.
10. The photochromic polyurethane layer of claim 1 wherein the isocyanate-terminated polyurethane prepolymer is prepared from a composition comprising a polycaprolactone having a number average molecular weight of about 1000 grams per mole.
11. The photochromic polyurethane layer of claim 1 wherein the polyester polyol has an OH number of 112 milligrams KOH per gram to prepare said polyurethane and said isocyanate-terminated polyurethane prepolymer.
12. The photochromic polyurethane layer of claim 1 wherein the photochromic compound is selected from a group consisting of: benzopyrans, naphthopyrans, spirobenzopyrans, spironaphthopyrans, spirobenzoxzines, spironaph-thoxazines, fulgides and fulgim ides.
13. A photochromic laminate for use in eyeglasses comprising:
a first resin sheet;
a second resin sheet;
a photochromic polyurethane film having a first side bonded to the first resin sheet and a second side bonded to the second resin sheet;
the photochromic polyurethane film prepared from a composition comprising:
a polyurethane having a number average molecular weight from 9,000 to 100,000 and prepared from a composition comprising:
an aliphatic diisocyanate comprising 4,4′-dicyclohexylmethane-diisocyanate;
a polyester polyol; and
a chain extender;
an isocyanate-terminated polyurethane prepolymer prepared from a composition comprising:
an aliphatic diisocyanate comprising 4,4′-dicyclohexylmethanediiso-cyanate; and
a polyester polyol; and
a photochromic compound;
wherein a mixing ratio of the polyurethane and the isocyanate-terminated polyurethane prepolymer by weight is in a range from 1:9 to 9:1 and said polyurethane comprises terminal hydroxyl groups, urethane groups, and urea groups having active hydrogen atoms to react with said polyurethane prepolymer after lamination to provide further curability of said photochromic polyurethane film between the first resin sheet and the second resin sheet.
14. The photochromic laminate of claim 13 wherein the first resin sheet and the second resin sheet comprise polycarbonate.
15. The photochromic laminate of claim 13 wherein the polyurethane and the isocyanate-terminated polyurethane prepolymer are prepared from the same polyester polyol.
16. The photochromic laminate of claim 13 wherein the polyurethane is prepared from a composition comprising a polycaprolactone having a number average molecular weight of about 1000 grams per mole.
17. The photochromic laminate of claim 13 wherein the photochromic compound is selected from a group consisting of: benzopyrans, naphthopyrans, spirobenzopyrans, spironaphthopyrans, spirobenzoxzines, spironaph-thoxazines, fulgides and fulgim ides.