OPTICALLY VARIABLE DEVICE COMPRISING MAGNETIC FLAKES
An optically variable device may be manufactured by aligning magnetic flakes on a surface of an adhesive layer by applying the flakes onto the adhesive layer surface in presence of a magnetic field, and curing the adhesive layer having magnetic flakes adhered to the adhesive layer. When cured, the adhesive layer holds the magnetic flakes oriented, enabling subsequent encapsulation of the oriented magnetic flakes in a coating layer on the adhesive layer, without a substantial loss of orientation of the magnetic flakes.
1 - 22 . (canceled)
23 . A method comprising:
providing an optically variable device that includes a coating layer, a first substrate, and magnetic flakes,
the first substrate including a release layer;
adhering the coating layer, of the optically variable device, to a second substrate; and
removing the release layer from the optically variable device after adhering the coating layer, of the optically variable device, to the second substrate.
24 . The method of claim 23 ,
where the optically variable device further includes an adhesive layer, and
where the adhesive layer includes voids that form a visible indicia.
25 . The method of claim 23 , further comprising:
depositing an adhesive layer on the first substrate, and
applying the magnetic flakes to the adhesive layer.
26 . The method of claim 23 ,
where the optically variable device further comprises an adhesive layer, and
where the method further comprises:
removing a portion of the magnetic flakes from voids of the adhesive layer.
27 . The method of claim 26 , where removing the portion of the magnetic flakes comprises:
directing a flow of gas on the voids to remove the portion of the magnetic flakes.
28 . The method of claim 23 , where the magnetic flakes include one or more of:
a diffractive pattern, or
covert identification indicia discernible under magnification.
29 . The method of claim 23 , where the magnetic flakes include a color-shifting magnetic pigment changing from a first color at a first angle to a second color at a second angle.
30 . The method of claim 23 , where the coating layer includes varnish.
31 . The method of claim 23 ,
where the optically variable device further includes an adhesive layer, and
where the adhesive layer includes an adhesive ink layer.
32 . An optically variable device comprising:
a first substrate;
a plurality of magnetic flakes over the first substrate;
a coating layer over the plurality of magnetic flakes; and
a second substrate that is adhered to the coating layer.
33 . The optically variable device of claim 32 , further comprising:
an adhesive layer on the first substrate,
the plurality of magnetic flakes being applied to the adhesive layer.
34 . The optically variable device of claim 33 , where the adhesive layer includes voids that form a visible indicia.
35 . The optically variable device of claim 32 , where the plurality of magnetic flakes include covert identification indicia discernible under magnification.
36 . The optically variable device of claim 32 , where the plurality of magnetic flakes include a color-shifting magnetic pigment changing from a first color at a first angle to a second color at a second angle.
37 . The optically variable device of claim 32 , where the coating layer includes varnish.
38 . An optically variable device comprising:
a substrate that includes a release layer;
an adhesive layer over the substrate;
a plurality of magnetic flakes supported by the adhesive layer; and
a coating layer that encapsulates plurality of magnetic flakes.
39 . The optically variable device of claim 38 , further comprising:
a different substrate that is adhered to the coating layer.
40 . The optically variable device of claim 39 , where the release layer is removed before the different substrate is adhered to the coating layer.
41 . The optically variable device of claim 38 , where the adhesive layer includes voids that form a visible indicia.
42 . The optically variable device of claim 38 , where the plurality of magnetic flakes include a diffractive pattern.