Claims
- 1. A coating method for forming a polyvinyl alcohol film comprising the steps of:
(a) applying a liquid polyvinyl alcohol/solvent mixture onto a moving, discontinuous carrier substrate; and (b) drying the liquid polyvinyl alcohol/solvent mixture to substantially remove the solvent yielding a composite of a polyvinyl alcohol film adhered to the discontinuous carrier substrate, the polyvinyl alcohol film being releasably adhered to the discontinuous carrier substrate thereby allowing the polyvinyl alcohol film to be peeled from the discontinuous carrier substrate.
- 2. A coating method as recited in claim 1 wherein:
the liquid polyvinyl alcohol/solvent mixture is applied using slide bead coating die with a multi-layer composite being formed on a slide surface thereof.
- 3. A coating method as recited in claim 2 wherein:
the viscosity of each liquid layer of the multi-layer composite is less than 5000 cp.
- 4. A coating method as recited in claim 1 wherein:
the carrier substrate is polyethylene phthalate.
- 5. A coating method as recited in claim 1 wherein:
the carrier substrate has a subbing layer applied to the coated surface.
- 6. A coating method as recited in claim 2 wherein:
an uppermost layer of the multi-layer composite contains a surfactant.
- 7. A coating method as recited in claim 1 wherein:
the first drying section is operated at a temperature of less than 50° C.
- 8. A coating method as recited in claim 1 further comprising the step of:
winding the composite into at least one roll before the polyvinyl alcohol sheet is peeled from the discontinuous carrier substrate.
- 9. A coating method as recited in claim 1 further comprising the steps of:
(a) separating the polyvinyl alcohol film from the carrier substrate immediately after the drying step; and (b) winding the polyvinyl alcohol film into at least one roll.
- 10. A coating method as recited in claim 8 further comprising the step of:
(a) unwinding at least a portion of the at least one roll of the composite; and (b) separating the polyvinyl alcohol film from the carrier substrate.
- 11. A coating method as recited in claim 1 wherein:
the polyvinyl alcohol film is adhered to the carrier substrate with an adhesive strength of less than about 250 N/m.
- 12. A coating method as recited in claim 9 further comprising the step of:
reducing residual solvent in the polyvinyl alcohol film to less than 10% by weight prior to the separating step.
- 13. A coating method as recited in claim 10 further comprising the step of:
reducing residual solvent in the polyvinyl alcohol film to less than 10% by weight prior to the separating step.
- 14. A coating method as recited in claim 8 further comprising the step of:
delivering the composite to a user of the polyvinyl alcohol film, the carrier substrate acting as a protective support for the polyvinyl alcohol film prior to the polyvinyl alcohol film being separated from the substrate carrier.
- 15. A coating method as recited in claim 1 further comprising the step of:
including a plasticizer in the liquid polyvinyl alcohol/solvent mixture.
- 16. A coating method as recited in claim 1 wherein:
the polyvinyl alcohol film has an in-plane retardation of less than 35 nm.
- 17. A coating method as recited in claim 1 wherein:
the polyvinyl alcohol film has an in-plane retardation of less than 10 nm.
- 18. A coating method as recited in claim 1 wherein:
the polyvinyl alcohol film has an in-plane retardation of less than 1.0 nm.
- 19. A coating method as recited in claim 1 further comprising the step of:
applying at least one additional polyvinyl alcohol layer to the composite after the drying step.
- 20. A coating method as recited in claim 1 wherein:
the polyvinyl alcohol film has a thickness in the range of 1 to 500 μm.
- 21. A composite film comprising:
a PVA film coated on a discontinuous carrier substrate, the PVA film having a thickness in the range of from about 1 to about 500 μm, the PVA film having an in-plane retardation that is less than 35 nm, the polyvinyl alcohol film being adhered to the carrier substrate with an adhesive strength of less than about 250 N/m.
- 22. A composite film as recited in claim 21 wherein:
the PVA film has an in-plane retardation that is less than 10 nm.
- 23. A composite film as recited in claim 21 wherein:
the PVA film has an in-plane retardation that is less than 1.0 nm.
- 24. A composite film as recited in claim 21 wherein:
the polyvinyl alcohol film is adhered to the carrier substrate with an adhesive strength of at least about 0.3 N/m.
- 25. A composite film as recited in claim 21 wherein:
the PVA film is peelable from the carrier substrate.
- 26. A composite film as recited in claim 21 wherein:
the PVA film is a multi-layer composite.
- 27. A composite film as recited in claim 26 wherein:
at least a top layer of the multi-layer composite includes a surfactant therein.
- 28. A composite film as recited in claim 21 wherein:
a plasticizer is incorporated in the polyvinyl alcohol film.
- 29. A polyvinyl alcohol film made by the method of claim 1 wherein:
the in-plane retardation is less than 35 nm.
- 30. A polyvinyl alcohol film comprising:
a layer of polyvinyl alcohol formed by a coating operation, the polyvinyl alcohol film having a thickness in the range of from about 1 to about 500 μm, the polyvinyl alcohol film having an in-plane retardation that is less than 35 nm.
- 31. A polyvinyl alcohol film as recited in claim 30 further comprising:
a plasticizer incorporated in the polyvinyl alcohol film.
- 32. A polyvinyl alcohol film as recited in claim 30 wherein:
the polyvinyl alcohol film having an in-plane retardation that is less than 10 nm.
- 33. A polyvinyl alcohol film as recited in claim 30 wherein:
the polyvinyl alcohol film having an in-plane retardation that is less than 1.0 nm.
- 34. A coating method as recited in claim 1 further comprising the step of:
using the polyvinyl alcohol film to form a light polarizer.
- 35. A display device including a polyvinyl alcohol film therein made by the method of claim 1.
- 36. A polyvinyl alcohol film comprising:
a layer of polyvinyl alcohol formed by a coating operation, the polyvinyl alcohol film having an in-plane retardation that is less than about 35 nm.
- 37. A polyvinyl alcohol film as recited in claim 36 wherein:
the polyvinyl alcohol film having an in-plane retardation that is less than 10 nm.
- 38. A polyvinyl alcohol film as recited in claim 36 wherein:
the polyvinyl alcohol film having an in-plane retardation that is less than 1.0 nm.
- 39. A composite film as recited in claim 26 wherein:
only a top layer of the multi-layer composite includes a surfactant therein.
- 40. A composite film as recited in claim 26 wherein:
at least a top layer of the multi-layer composite includes a fluorinated surfactant therein.
- 41. An electronic display device having view screen comprising:
a polarizing film or compensation film prepared from a polyvinyl alcohol film having an in-plane retardation that is less than about 10 nm.
- 42. An electronic display device as recited in claim 41 wherein:
the polyvinyl alcohol film has an in-plane retardation that is less than about 5 nm.
- 43. A polyvinyl alcohol film comprising:
a coated layer of polyvinyl alcohol having an in-plane retardation that is less than about 10 nm.
- 44. A coating method as recited in claim 7 wherein:
the drying step is initially performed at a temperature in the range of from about 5° C. to less than 50° C.
- 45. A coating method as recited in claim 7 wherein:
the drying step is initially performed at a temperature in the range of from about 10° C. to about 40° C.
- 46. An electronic display device as recited in claim 42 wherein:
the polyvinyl alcohol film has a light transmittance of at least about 85 percent and a haze value of less than about 1.0 percent.
- 47. A polyvinyl alcohol film as recited in claim 43 wherein:
the coated layer of polyvinyl alcohol has a light transmittance of at least about 85 percent and a haze value of less than about 1.0 percent.
- 48. A coating method as recited in claim 1 wherein:
the optical resin film has a light transmittance of at least about 85 percent and a haze value of less than about 1.0 percent.
- 49. A coating method as recited in claim 1 wherein:
the optical resin film has an average surface roughness of less than about 100 nm.
- 50. A coating method as recited in claim 1 wherein:
the optical resin film has an average surface roughness of less than about 50 nm.
- 51. A coating method as recited in claim 1 wherein:
the optical resin film has an average surface roughness of not more than about 1 nm.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a 111A Application of Provisional Application Serial No. 60/381,931, filed on May 20, 2002
Provisional Applications (1)
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Number |
Date |
Country |
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60381931 |
May 2002 |
US |