Manufacturing method of heavy ion micropore antifault membrane
A manufacturing method and heavy ion technology, applied in the field of anti-counterfeiting, can solve problems such as difficult implementation, poor appearance, blurred pattern edges, etc., and achieve the effects of low equipment precision requirements, easy mass production, and guaranteed print-through performance.
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Embodiment 1
[0026] Example 1: A transparent polypropylene plastic film with a thickness of 15 μm is selected as a raw material, coated with a hot-melt adhesive, and then compounded with an irradiated 28 μm polyester plastic film. Print the graphic on the other side of the mylar using a printable hot melt adhesive. Then use 6 equivalents of NaOH solution to etch for 30 minutes, the etching temperature is 60°C, and the pore size of the heavy ion micropores is 3-5 μm. After rinsing and drying, the pattern area is milky white, and the non-pattern area maintains the original transparency of the plastic film. Ionic microporous anti-counterfeiting film.
Embodiment 2
[0027] Embodiment 2: A transparent polycarbonate plastic film with a thickness of 30 μm is selected as a raw material, and coated with a hot-melt adhesive. The pattern was printed on one side of the irradiated 15 μm polypropylene transparent plastic film using a printable hot-melt adhesive. It is then compounded with a transparent polycarbonate plastic film coated with a hot-melt adhesive. Then with 18 equivalents of H 2 SO 4 The solution is etched for 15 minutes, the etching temperature is 80°C, and the pore size of the heavy ion micropores is 3-5 μm. After washing and drying, the pattern area is milky white, and the non-pattern area maintains the original transparency of the heavy ion microporous anti-counterfeiting film of the plastic film.
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