Cationic uv-led radiation curable protective varnishes for security documents
US-2024209223-A1 · Jun 27, 2024 · US
US2016271996A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016271996-A1 |
| Application number | US-201415029403-A |
| Country | US |
| Kind code | A1 |
| Filing date | Oct 15, 2014 |
| Priority date | Oct 15, 2013 |
| Publication date | Sep 22, 2016 |
| Grant date | — |
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The invention relates generally to a composition comprising: a) a substrate, comprising a substrate surface; b) a polymer layer, comprising a polymer layer surface, wherein the polymer layer i) comprises a polymer, ii) at least partly superimposes the substrate surface of the layer; wherein the polymer layer surface comprises a first area and a further area; wherein an absolute value of a difference between a wetting angle for wetting with water of the first area and a wetting angle for wetting with water of the further area is at least about 10°.
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1 . A composite comprising: a) a substrate, comprising a substrate surface; b) a polymer layer, comprising a polymer layer surface, wherein the polymer layer i) comprises a polymer, ii) at least partly superimposes the substrate surface of the layer; wherein the polymer layer surface comprises a first area and a further area; wherein an absolute value of a difference between a wetting angle for wetting with water of the first area and a wetting angle for wetting with water of the further area is at least about 10°. 2 . The composite according to claim 1 , wherein the polymer is an electrically conductive polymer. 3 . The composite according to claim 2 , wherein the electrically conductive polymer is PEDOT:PSS. 4 . The composite according to claim 1 , wherein the polymer layer comprises the polymer in an amount in the range from about 5 to about 97 wt.-% based on the total weight of the polymer layer. 5 . The composite according to claim 1 , wherein the polymer layer further comprises a further polymer. 6 . The composite according to claim 5 , wherein the polymer layer comprises the further polymer in an amount of at least about 10 wt.-% based on the total weight of the polymer layer; wherein a transmission coefficient of the first area being wetted with water is at least about 10% higher than a transmission coefficient of the first area being dry. 7 . The composite according to claim 5 , wherein the polymer layer comprises the further polymer in an amount of less than about 20 wt.-% based on the total weight of the polymer layer. 8 . The composite according to claim 1 , wherein the first area is characterised by a wetting angle for wetting with water in the range from about 10 to about 150° and the further area is characterised by a wetting angle for wetting with water in the range from about 1 to about 140°. 9 . The composite according to claim 1 , wherein the composite further comprises an optical feature, wherein the polymer layer superimposes the optical feature, wherein the polymer layer is optically transparent for the optical feature. 10 . The composite according to claim 9 , wherein the first area at least partly superimposes the optical feature, wherein a contrast range of the optical feature is at least about 10% higher for the first area being wetted with water with respect to the first area being dry. 11 . The composite according to claim 9 , wherein the optical feature is one selected from the group consisting of an optically variable device, a high refractive index layer, a colour, a graphical element, a watermark, a reflective coating, an inlay or a combination of at least two thereof. 12 . The composite according to claim 11 , wherein the optically variable device comprises a diffractive structure and optionally a metal layer. 13 . The composite according to claim 9 , wherein the first area at least partly superimposes the optical feature, wherein an absolute value of a difference of a grey level contrast of the optical feature between the first area being wetted with water and the first area being dry is at least 1 grey level. 14 . The composite according to claim 9 , wherein the composite comprises a grey level scale having at least a first scale area having a first grey level and a second scale area having a second grey level, wherein the optical feature comprises a feature area, wherein the feature area is superimposed by the first area, wherein for the first area being dry the feature area is characterised by the first grey level, wherein for the first area being wetted with water the feature area is characterised by the second grey level. 15 . A composite comprising: a) a substrate, comprising a substrate surface; b) a metal layer, comprising a metal layer surface; wherein the metal layer i) comprises a metal, ii) at least partly superimposes the substrate surface; c) a diffractive layer, comprising a diffractive layer surface; wherein the diffractive layer i) comprises a diffractive structure, ii) at least partly superimposes the metal layer surface; d) a polymer layer, comprising a polymer layer surface, wherein the polymer layer i) comprises a polymer, ii) at least partly superimposes the diffractive layer surface; wherein the polymer layer surface comprises a first area and a further area; wherein an absolute value of a difference between a wetting angle for wetting with water of the first area and a wetting angle for wetting with water of the further area is at least about 10°. 16 . A composite comprising: a) a substrate, comprising a substrate surface; b) a high refractive index layer, comprising a high refractive index layer surface; wherein the high refractive index layer at least partly superimposes the substrate surface; c) a diffractive layer, comprising a diffractive layer surface; wherein the diffractive layer i) comprises a diffractive structure, ii) at least partly superimposes the high refractive index layer surface; d) a polymer layer, comprising a polymer layer surface, wherein the polymer layer i) comprises a polymer, ii) at least partly superimposes the diffractive layer surface; wherein the polymer layer surface comprises a first area and a further area; wherein an absolute value of a difference between a wetting angle for wetting with water of the first area and a wetting angle for wetting with water of the further area is at least about 10°. 17 . The composite according to claim 16 , wherein the composite further comprises a metal layer, comprising a metal layer surface; wherein the metal layer a) comprises a metal, b) partly superimposes the high refractive index layer surface; wherein the metal layer surface is at least partly superimposed by the diffractive layer. 18 . The composite according to claim 15 , wherein the polymer comprises an electrically conductive polymer. 19 . The composite according to claim 1 , wherein the composite further comprises a haptic feature, wherein the polymer layer superimposes the haptic feature, wherein the polymer layer is haptically transparent for the haptic feature. 20 . The composite according to claim 19 , wherein the haptic feature is one selected from the group consisting of an embossed printing, a bold relief, a sunken relief, a braille, a texture, a perforation or a combination of at least two thereof. 21 . The composite according to claim 1 , wherein the substrate is comprised by an object of value. 22 . The composite according to claim 21 , wherein the object of value is a sheet. 23 . A process for making a composite comprising as steps: a) providing a substrate, comprising a substrate surface; b) superimposing a polymer layer on the substrate surface, wherein the polymer layer comprises i) a polymer, ii) a polymer layer surface; c) irradiating an area of the polymer layer surface by UV-light; wherein after step c) the polymer layer surface comprises a first area and a further area wherein an absolute value of a difference between a wetting angle for wetting with water of the first area and a wetting angle for wetting with water of the further area is at least about 10°. 24 . The process according to claim 23 , wherein the polymer layer comprises an electrically conductive polymer. 25 . (canceled) 26 . The process according to claim 23 , wherein superimposing is one selec
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