Claims
- 1. A functional urethane resin film formed from a water based urethane dispersion (A), or a mixture prepared by adding a water based epoxy resin to the water based urethane resin dispersion (A), showing practically no stickiness per se, and having a tensile elongation at breakage in the range of 50 to 1000% as a value measured by the use of a sample of 30 mm in length, 10 mm in width and 0.05 mm in thickness under the conditions of a temperature of −10° C. and a stress rate of 200 mm/min.
- 2. A functional urethane resin film as claimed in claim 1, wherein the water based urethane resin dispersion (A) is prepared by a method which comprises reacting a polyisocyanate compound with an active hydrogen-containing compound reactable with isocyanate group of the polyisocyanate compound to obtain a hydrophilic group-containing isocyanate-terminating prepolymer, followed by dispersing the prepolymer into water, and by chain-lengthening by use of amines.
- 3. A method of preparing a functional urethane resin film, which method comprises coating the water based urethane resin dispersion (A), or a mixture prepared by adding a water based epoxy resin to the water based urethane resin dispersion (A), as claimed in claim 1 onto the surface of a release film to form a functional urethane resin film, followed by optionally separating a release film.
- 4. A laminated film comprising a multi-layer functional film formed by successively laminating an optionally provided release layer (I), a cementing material layer (II) formed from a pressure-sensitive adhesive or a bonding adhesive and an urethane resin dispersion (A), or a mixture of the water based urethane resin dispersion (A) and a water based epoxy resin, showing practically no stickiness per se, and having a tensile elongation at breakage in the range of 50 to 1000% as a value measured by the use of a sample of 30 mm in length, 10 mm in width and 0.05 mm in thickness under the conditions of a temperature of −10° C. and a stress rate of 200 mm/min.
- 5. A laminated film comprising a multi-layer functional film formed by successively laminating the release layer (I) and the urethane resin layer (Ill) as claimed in claim 4.
- 6. A laminated film as claimed in claim 4, wherein said laminated film comprises a functional film formed from the water based urethane resin dispersion (A) prepared by a method which comprises reacting a polyisocyanate compound with an active hydrogen-containing compound reactable with isocyanate group of the polyisocyanate compound to obtain a hydrophilic group-containing isocyanate-terminating prepolymer, followed by dispersing the prepolymer into water, and by chain-lengthening by use of amines.
- 7. A method of preparing a laminated film, which method comprises coating the water based urethane resin dispersion (A), or a mixture prepared by adding a water based epoxy resin to the water based urethane resin dispersion (A), as claimed in claim 4 onto the surface of a cementing material layer of a cementing film having an optionally provided release layer (I) and a cementing material layer (II) formed from a pressure-sensitive adhesive or bonding adhesive to form an urethane resin layer, resulting in obtaining a functional film.
- 8. A laminated film comprising a multi-layer application film formed by laminating at least three resin films and essentially containing a top layer film (IV) formed from a crosslinkable resin coating composition (B), a cementing material layer (VI) formed from a pressure-sensitive adhesive or a bonding adhesive as an under layer, and a film (V) formed from a thermoplastic resin (C) comprising a water based urethane resin dispersion (A), or a mixture of the water based urethane resin dispersion (A) and a water based epoxy resin, between the layer (IV) and the layer (VI), showing practically no sitckiness per se, and having a tensile elongation at breakage in the range of 50 to 1000% as a value measure by the use of a sample of 30 mm in length, 10 mm in width and 0.05 mm in thickness under the conditions of a temperature of −10° C. and a stress rate of 200 mm/min.
- 9. A laminated film comprising a transferable multi-layer application film formed by successively laminating an application film layer (D) formed by laminating a pressure sensitive adhesive onto a plastic film, the top layer film (IV), the film (V), the bonding material layer (VI) and a release film layer (E), the top layer (IV), the film (V) and the bonding material layer (IV) being as claimed in claim 8.
- 10. A laminated film as claimed in claim 8, wherein the water based urethane resin dispersion (A) is prepared by a method which comprises reacting a polyisocyanate compound with an active hydrogen-containing compound reactable with isocyanate group of the polyisocyanate compound to obtain a hydrophilic group-containing isocyanate-terminating prepolymer, followed by dispersing the prepolymer into water, and by chain-lengthening by use of amines.
- 11. A method of applying a laminated film which comprises cementing the multi-layer application film as claimed in claim 8 onto the surface of a coating substrate so that the cementing material layer (VI) of the multi-layer application film may face on the surface of the coating substrate by heating or pressurizing.
- 12. A method of applying a laminated film, which comprises cementing the multi-layer application film as claimed in claim 8 onto the surface of a coating substrate having a three dimensional surface while molding by heating.
- 13. A method of applying a laminated film which comprises cementing the multi-layer application film as claimed in claim 9 onto a coating substrate so that the cementing material layer (VI) of the multi-layer application film may face on the surface of the coating substrate by pressurizing, followed by separating an application film (D).
- 14. A laminated film comprising a multi-layer colored film formed by successively laminating an optionally provided release layer, a bonding material layer (VII) formed from a pressure-sensitive adhesive or a bonding adhesive, a clear layer or a complete hiding power-having colored layer (VIII) formed from a water based urethane resin dispersion (A), a mixture of the water based urethane resin dispersion (A) and a water based epoxy resin, or a mixture of the water based urethane resin dispersion (A), the water based epoxy resin and a complete hiding power-having colorant, showing practically no stickiness per se, and having a tensile elongation at breakage in the range of 50 to 1000% as a value measured by the use of a sample of 30 mm in length, 10 mm in width and 0.05 mm in thickness under the conditions of a temperature of −10° C. and a stress rate of 200 mm/min., a colored layer (IX) formed from the water based urethane resin dispersion (A) and a colorant (D), or the water based urethane resin dispersion (A), a water based epoxy resin and the colorant (D), showing practically no stickiness per se, and having a tensile elongation at breakage in the range of 50 to 1000% as a value measured by the use of a sample of 30 mm in length, 10 mm in width and 0.05 mm in thickness under the conditions of a temperature of −10° C. and a stress rate of 200 mm/min., and a clear layer (X) formed from a crosslinkable resin coating composition (B).
- 15. A laminated film as claimed in claim 14, wherein the water based urethane resin dispersion (A) is prepared by a method which comprises reacting a polyisocyanate compound with an active hydrogen-containing compound reactable with isocyanate group of the polyisocyanate compound to obtain a hydrophilic group-containing isocyanate-terminating prepolymer, followed by dispersing the prepolymer into water and by chain-lengthening by use of amines.
- 16. A method of applying a laminated film, which comprises cementing the colored film as claimed in claim 14 onto a coating substrate so that the cementing material layer (VIII) of the colored film faces on the surface of the coating substrate by heating or pressurizing.
- 17. A method of preparing a laminated film, which comprises coating the water based urethane resin dispersion (A), a mixture prepared by adding a water based epoxy resin to the water based urethane resin dispersion (A), or a mixture prepared by adding a water based epoxy resin and a complete hiding power-having colorant to the water based urethane resin dispersion (A), as claimed in claim 14 onto the surface of the cementing material layer of the cementing film having an optionally provided release layer and a cementing material layer (VIII) formed from a pressure-sensitive adhesive or bonding additive to form a clear layer or a complete hiding power-having colored layer (VIII), followed by coating a water based colorant containing the water based urethane resin dispersion (A) and a colorant (D), or the water based urethane resin dispersion (A), a water based epoxy resin and the colorant (D), to form a colored layer (IX), coating a crosslinkable resin coating composition (B) to form a clear layer (X), resulting in obtaining a colored film.
- 18. A method of preparing a functional urethane resin film, which method comprises coating the water based urethane resin dispersion (A), or a mixture prepared by adding a water based epoxy resin to the water based urethane resin dispersion (A), as claimed in claim 2 onto the surface of a release film to form a functional urethane resin film, followed by optionally separating a release film.
- 19. A laminated film as claimed in claim 5, wherein said laminated film comprises a functional film formed from the water based urethane resin dispersion (A) prepared by a method which comprises reacting a polyisocyanate compound with an active hydrogen-containing compound reactable with isocyanate group of the polyisocyanate-terminating prepolymer, followed by dispersing the prepolymer into water, and by chain-lengthening by use of amines.
- 20. A laminated film as claimed in claim 9, wherein the water based urethane resin dispersion (A) is prepared by a method which comprises reacting a polyisocyanate compound with an active hydrogen-containing compound reactable with isocyanate group of the polyisocyanate compound to obtain a hydrophilic group-containing isocyanate-terminating prepolymer, followed by dispersing the prepolymer into water, and by chain-lengthening by use of amines.
- 21. A method of applying a laminated film which comprises cementing the multi-layer application film as claimed in claim 10 onto the surface of a coating substrate so that the cementing material layer (VI) of the multi-layer application film may face on the surface of the coating substrate by heating or pressurizing.
- 22. A method of applying a laminated film, which comprises cementing the multi-layer application film as claimed in claim 10 onto the surface of a coating substrate having a three dimensional surface while molding by heating.
- 23. A method of applying a laminate film, which comprises cementing the colored film as claimed in claim 15 onto a coating substrate so that the cementing material layer (VIII) of the colored film faces on the surface of the coating substrate by heating or pressurizing.
Priority Claims (4)
Number |
Date |
Country |
Kind |
00/220235 |
Jul 2000 |
JP |
|
00/236175 |
Aug 2000 |
JP |
|
00/236176 |
Aug 2000 |
JP |
|
00/259666 |
Aug 2000 |
JP |
|
FIELD OF THE INVENTION
[0001] This is a Continuation-in-Part (CIP) of the 371 National Stage application of International Patent Application No. PCT/JP01/06290, filed on Jan. 17, 2003, that has priority benefit of International Patent Application NO. PCT/JP01/06290, filed on Jul. 19, 2001, that has priority benefit of Japanese Patent Application No. 00/220,235, filed on Jul. 21, 2000, Japanese Patent Application No. 00/236,175, filed on Aug. 3, 2000, Japanese Patent Application No. 00/236,176, filed on Aug. 3, 2000, and Japanese Patent Application No. 00/259,666, filed on Aug. 29, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10333254 |
Jan 2003 |
US |
Child |
10347314 |
Jan 2003 |
US |