Layer structure with modified structure, and production thereof
US-12023953-B2 · Jul 2, 2024 · US
US9289962B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9289962-B2 |
| Application number | US-201214118592-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 16, 2012 |
| Priority date | May 20, 2011 |
| Publication date | Mar 22, 2016 |
| Grant date | Mar 22, 2016 |
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Laser-personalizable security articles include a multi-layer security document and an optically transparent processing tape. The multi-layer security document includes an optically transparent cover layer, a composite image and an imagable layer adjacent to the cover layer. The first surface of the cover layer is at least partially a microstructured surface, where the microstructured surface forms microlenses or a lenticular surface. The composite image is made by a collection of complete or partial images viewed through the microstructured surface of the cover layer. The composite image is located on or within the second surface of the cover layer. The imagable layer is a laser. The optically transparent processing tape sufficiently wets out on the misconstructured surface to render the microstructured surface invisible to a writing laser.
Opening claim text (preview).
What is claimed is: 1. A laser-personalizable security article comprising: a multi-layer security document, the multi-layer security document comprising: an optically transparent cover layer with a first surface, a second surface, and a thickness between the first surface and the second surface, the first surface being at least partially a microstructured surface, having a refractive index between 1.45 and 1.55, wherein the microstructured surface forms microlenses or a lenticular surface; a composite image, wherein the composite image comprises a collection of complete or partial images located on the second surface of the cover layer such that when viewed through the microstructured surface of the cover layer, the collection of complete or partial images forms the composite image; and an imagable layer adjacent to the second surface of the cover layer, wherein the imagable layer comprises a laser imagable layer; and an optically transparent, removable, conformable layer, wherein the removable, conformable layer comprises a processing tape wherein the tape comprises and optically transparent backing; and an optically transparent pressure sensitive adhesive layer at least partially coated on the backing, wherein the pressure sensitive adhesive sufficiently wets out on the microstructured surface to render the microstructured surface invisible to a writing laser and the optically transparent, removable, conformable laver has a refractive index in the range of 1.45-1.55. 2. The laser-personalizable security article of claim 1 , wherein the microstructured surface comprises microlenses, and the cover layer thickness is such that the second surface of the cover layer is within the focal plane of the microlenses. 3. The laser-personalizable security article of claim 1 , wherein the composite image comprises a color image. 4. The laser-personalizable security article of claim 1 , wherein the cover layer comprises a multi-layer construction comprising a cover film and a spacing layer. 5. The laser-personalizable security article of claim 1 , wherein the imagable layer comprises a laser charable layer, a laser writable multi-layer film article, or a combination thereof. 6. The laser-personalizable security article of claim 1 , wherein the processing tape pressure sensitive adhesive has a refractive index that is within 0.05 of the refractive index of the microstructured surface. 7. The laser-personalizable security article of claim 1 , wherein the microstructures surface comprises a coating layer, and wherein the coating layer comprises a cured reaction mixture comprising: i) a majority of at least one multifunctional (meth)acrylate monomer; ii) at least one perfluoropolyether additive having a perfluoropolyether moiety and at least one free radically reactive group; iii) surface treated nanoparticles; and iv) an initiator.
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