Claims
- 1. A coated substrate suitable for receiving an image by dye diffusion printing comprising:a flexible first layer having first and second surfaces and selected from the group consisting of films, fibrous materials, and combinations thereof; and a second layer overlaying the first surface of the first layer, which second layer comprises a thermoplastic polymer having a glass transition temperature of at least about 30° C., a powdered plasticizer having a melting point of at least about 80° C., and a release agent; wherein: the first layer has a basis weight of from about 50 to about 200 grams per square meter; the second layer has a basis weight of from about 0.5 to about 10 grams per square meter; the weight ratio of thermoplastic polymer to plasticizer is in a range of from about 80:20 to about 40:60; and the release agent is present in a range of from about 0.5 to about 10 percent by weight, based on the weight of the second layer.
- 2. The coated substrate of claim 1, in which the thermoplastic polymer has a glass transition temperature of at least about 40° C.
- 3. The coated substrate of claim 2, in which the thermoplastic polymer is a vinyl chloride-acrylate copolymer.
- 4. The coated substrate of claim 1, in which the powdered plasticizer is an aromatic carboxylic acid ester.
- 5. The coated substrate of claim 4, in which the powdered plasticizer is cyclohexane dimethanol dibenzoate.
- 6. The coated substrate of claim 1, in which the average particle size of the powdered plasticizer is no greater than about 20 micrometers.
- 7. The coated substrate of claim 1, in which the first layer is a film.
- 8. The coated substrate of claim 1, in which the first layer is a fibrous material.
Parent Case Info
This application is a divisional of application Ser. No. 09/027,515 now Pat. No. 5,995,375 entitled THERMAL DYE DIFFUSION AND SUBSTRATE and filed in the U.S. Patent and Trademark Office on Feb. 20, 1998. The entirety of application Ser. No. 09/027,515 is hereby incorporated by reference.
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“Thermal Dye Diffusion Printing—How Does It Work?”, R. A. Hann, 8th International Congress on Advances in NIP Technologies, (1992), 361-363. |