Security film and process for preparation thereof
View Patent ↗Disclosed herein are an anti-counterfeiting film and a process for preparation thereof. The anti-counterfeiting film comprises a protective layer ( 1 ), a binder layer ( 2 ), a retroreflective layer ( 3 ), a photopolymerizable information layer ( 4 ) and a reflective layer ( 5 ) which are combined in turn. The retroreflective layer ( 3 ) is embedded spherically in the binder layer ( 2 ), and the photopolymerizable information layer ( 4 ) has been recorded with graphics information which can change along with the viewing angle.
1. An anti-counterfeiting film, comprising a protective layer, a binder layer, a retroreflective layer, a photopolymerizable information layer and a reflective layer which are combined in turn; wherein the retroreflective layer is embedded spherically in the binder layer, and the photopolymerizable information layer has been recorded with graphics information which can change as the viewing angle changes.
2. The anti-counterfeiting film according to claim 1 , wherein the spherical diameter of the retroreflective layer is from 10 μm to 100 μm, the thickness of the protective layer is from 25 μm to 50 μm, the thickness of the binder layer is from 50 μm to 70 μm, the thickness of the photopolymerizable information layer is from 15 μm to 30 μm and the thickness of the reflective layer is from 60 nm to 200 nm.
3. The anti-counterfeiting film according to claim 1 , wherein the material of the protective layer is transparent macromolecular polyester;
the material of the binder layer is macromolecular resin;
the retroreflective layer is glass or polycarbonate;
the material of the photopolymerizable information layer comprises components having the following weight percentages:
photopolymerization monomer: 20%-60%
photoinitiator: 1%-10%
binder: 30%-79%
with the sum of the percentages of the above respective component being 100%;
the photopolymerization monomer is selected from the group consisting of 2-phenoxyethyl acrylate, ethoxylated 1,6-hexanediol diacrylate, polyethylene glycol diacrylate, alkyl polyglucoside and ethoxylated bisphenol A dimethacrylate;
the binder is selected from the group consisting of acrylic acid, methacrylic acid, methyl methacrylate and 2-ethylhexyl acrylate;
the photoinitiator is selected from the group consisting of benzophenone, diethylamino benzophenone, leuco crystal violet and toluenesulfonic acid monohydrate; and
the reflective layer is selected from the group consisting of aluminum, argentum and chromium.
4. The anti-counterfeiting film according to claim 1 , wherein the material of the protective layer is polyethylene terephthalate, polycarbonate, polystyrene and polyvinyl chloride; and the binder layer is selected from the group consisting of polyurethane, phenolic resin and polyacrylic resin.
5. A process for preparation of the anti-counterfeiting film comprising the following steps:
coating a binder layer material over a protective layer;
embedding a retroreflective layer material into the binder layer and drying;
coating a photopolymerizable information layer material over the retroreflective layer and drying to obtain a retroreflective film;
placing the upper surface of the protective layer of the retroreflective film beneath an exposure template configured with template graphics;
subjecting the retroreflective film to first exposure treatment via linear polarized ultraviolet light; and
changing the exposure template graphics and exposure angle, subjecting the retroreflective film to second exposure treatment via linear polarized ultraviolet light, so as to form different graphics information at another angle, and then high-vacuum vapor-depositing a reflective layer material on the photopolymerizable information layer to obtain the anti-counterfeiting film.
6. The process according to claim 5 , wherein the exposure time is 0.1-0.9 seconds, the exposure energy is 30-50 mJ/cm 2 and the exposure angle is 60°-90° in the first exposure treatment; and the exposure time is 0.1-0.9 seconds, the exposure energy is 30-50 mJ/cm 2 and the exposure angle is 15°-60° in the second exposure treatment.
7. The process according to claim 6 , wherein the angle difference between the first exposure treatment and the second exposure treatment is from 30° to 50°.
8. The process according to claim 5 , wherein the exposure template is selected from the group consisting of lighttight polyester material, metal material and lighttight glass or transmissive display, electrically controlled birefringence liquid crystal display, phase change liquid crystal display, super twisted nematic liquid crystal display and low-temperature polycrystalline silicon liquid crystal display.