US2002192568A1PendingUtilityA1
Process for producing holographic material
Priority: Aug 11, 1999Filed: Jul 30, 2002Published: Dec 19, 2002
Est. expiryAug 11, 2019(expired)· nominal 20-yr term from priority
Inventors:Donald E. Weder
B32B 38/06Y10T156/1023Y10T156/10G03H 2250/10Y10T156/1039B29L 2031/722B65D 85/52A47G 7/085B32B 2429/00B32B 2425/00B29C 37/0053G03H 2227/04B32B 2451/00B65D 85/505Y10T156/1051G03H 1/028G03H 2001/0055B32B 37/12
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Claims
Abstract
Processes for producing a holographic material wherein the holographic image is formed on a polished surface of a printing element and then transferred to a substrate. A coating is applied to the polished surface of the printing element to provide a coated surface, the coated surface is engraved to provide the holographic image, and the holographic image is then transferred to a substrate via a bonding material, thereby producing the holographic material. The holographic material may be used to provide a decorative cover for an object or item, such as a floral grouping or a potted plant.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A batch process for applying a holographic image to a substrate to produce a holographic material, the process comprising:
providing a printing element having a polished surface; applying a coating capable of receiving a holographic image to the polished surface of the printing element to provide a coated surface; engraving the coated surface to provide a holographic image thereon, the holographic image having a first surface and a second surface wherein the second surface of the holographic image is disposed substantially adjacent the polished surface of the printing element; applying a bonding material to the first surface of the holographic image; and disposing a substrate adjacent the first surface of the holographic image containing the bonding material so as to bondingly connect the holographic image to the substrate, thereby producing the holographic material and thus removing the holographic material from the polished surface of the printing element.
2 . The batch process of claim 1 wherein, in the step of providing a printing element, the printing element is selected from the group consisting of a flat plate and a platen press.
3 . The batch process of claim 2 wherein, in the step of providing a printing element, the printing element is constructed of a material selected from the group consisting of chrome, stainless steel and tool steel.
4 . The batch process of claim 2 wherein, in the step of providing a printing element, the surface of the printing element is resilient.
5 . The batch process of claim 2 wherein, in the step of providing a printing element, the surface of the printing element is non-resilient.
6 . The batch process of claim 1 wherein, in the step of applying a coating, the coating is selected from the group consisting of metallic polymeric film, nonmetallic polymer film, foil, metallized lacquer, non-metallized lacquer, iridescent film, ink containing metallized glitter mixed with a lacquer, and combinations thereof.
7 . The batch process of claim 1 wherein, in the step of disposing a substrate adjacent the first surface of the holographic image, the substrate is constructed of a material selected from the group consisting of polymeric film, foil, paper, tissue, laminates thereof and combinations thereof.
8 . The batch process of claim 7 wherein the substrate has a substantially rough, textured surface.
9 . The batch process of claim 7 wherein the substrate has a smooth surface.
10 . A batch process for applying a holographic image to a substrate to produce a holographic material, the batch process comprising:
providing a printing element having a polished surface; applying a coating capable of receiving a holographic image to the polished surface of the printing element to provide a coated surface; engraving the coated surface to provide an image on the coating; applying a metallic constituent or component to the image to provide a holographic image having a first surface and a second surface wherein the second surface of the holographic image is disposed substantially adjacent the polished surface of the printing element; applying a bonding material to the first surface of the holographic image; and disposing a substrate adjacent the first surface of the holographic image containing the bonding material so as to bondingly connect the holographic image to the substrate, thereby producing the holographic material and thus removing the holographic material from the polished surface of the printing element.
11 . The batch process of claim 10 wherein, in the step of providing a printing element, the printing element is selected from the group consisting of a flat plate and a platen press.
12 . The batch process of claim 11 wherein, in the step of providing a printing element, the printing element is constructed of a material selected from the group consisting of chrome, stainless steel and tool steel.
13 . The batch process of claim 11 wherein, in the step of providing a printing element, the surface of the printing element is resilient.
14 . The batch process of claim 11 wherein, in the step of providing a printing element, the surface of the printing element is non-resilient.
15 . The batch process of claim 10 wherein, in the step of applying a coating, the coating is selected from the group consisting of polymeric film, foil, lacquer and combinations thereof.
16 . The batch process of claim 10 wherein, in the step of disposing a substrate adjacent the first surface of the holographic image, the substrate is selected from the group consisting of polymeric film, foil, paper, tissue, laminates thereof and combinations thereof.
17 . The batch process of claim 16 wherein the substrate has a substantially rough, textured surface.
18 . The batch process of claim 16 wherein the substrate has a smooth surface.Join the waitlist — get patent alerts
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