Inkjet printing
Abstract
The present disclosure relates to an inkjet printing process that comprises inkjet printing an inkjet ink composition onto a substrate to form a printed inkjet ink layer. The inkjet ink composition comprises a colorant, a curable polyurethane dispersion, a photoinitiator and water, wherein the amount of curable polyurethane dispersed in the inkjet ink composition is 0.1 to 30 weight %. A radiation-curable overcoat composition is applied over the printed inkjet ink layer as an overcoat layer. The overcoat composition comprises a curable polyurethane dispersion, a photoinitiator and water. The printed inkjet ink layer is then cured on the substrate by exposing both the overcoat layer and inkjet ink layer on the substrate to radiation.
Claims
exact text as granted — not AI-modified1 . An inkjet printing process comprising
inkjet printing an inkjet ink composition onto a substrate to form a printed inkjet ink layer, the inkjet ink composition comprising a colorant, a curable polyurethane dispersion and water, wherein the amount of curable polyurethane dispersed in the inkjet ink composition is 0.1 to 30 weight %, applying a curable overcoat composition over the printed inkjet ink layer as an overcoat layer, said overcoat composition comprising a curable polyurethane dispersion and water, and curing the printed inkjet ink layer on the substrate by exposing both the overcoat layer and printed inkjet ink layer on the substrate to radiation.
2 . A process as claimed in claim 1 , wherein the polyurethane dispersion in the overcoat composition is food compatible.
3 . A process as claimed in claim 1 , wherein the polyurethane in the overcoat layer and the polyurethane in the printed inkjet layer are crosslinked during curing to form a crosslinked polyurethane network.
4 . A process as claimed in claim 1 , wherein the overcoat layer and printed inkjet ink layer on the substrate are cured by exposure to UV-LED and/or e-beam radiation.
5 . A process as claimed in claim 1 , wherein the curable polyurethane is present in an amount of 1 to 7 weight % of the inkjet ink composition.
6 . A process as claimed in claim 1 , wherein the curable polyurethane is present in an amount of 10 to 60 weight % of the overcoat composition.
7 . A process as claimed in claim 1 , wherein the curable polyurethane dispersion in the inkjet ink composition is a pH stable curable polyurethane dispersion.
8 . A process as claimed in claim 6 , wherein the pH stable curable polyurethane dispersion comprises a polyurethane polymer comprising a polyurethane backbone having at least one terminal group selected from at least one of an acrylamide-containing group, a styrene-containing group, an allyl-containing group,
9 . A process as claimed in claim 7 , wherein the pH stable curable polyurethane dispersion comprises a polyurethane polymer comprising a polyurethane backbone that is capped at one end with a terminal group selected from at least one of an acrylamide-containing group, a styrene-containing group and an allyl-containing group and at the opposite end with a terminal group selected from carboxylic acid-, carboxylate anion-, sulphonate anion- and sulphonic acid-containing group.
10 . A process as claimed in claim 7 , wherein the pH stable curable polyurethane dispersion comprises polyurethane polymer comprising a backbone that is capped at one end with a terminal group selected from an acrylamide-containing group, a styrene-containing group, an allyl-containing group, a methacrylate-containing or acrylate-containing group, and at the opposite end with a terminal group selected from at least one of:
11 . A process as claimed in claim 6 , wherein pH stable curable polyurethane dispersion comprises a polyurethane polymer formed from the reaction of a) a blend of at least 2 isocyanates and b) a reactive diol.
12 . A process as claimed in claim 1 , wherein the overcoat composition is an analog coating.
13 . A process as claimed in claim 1 , wherein the concentration of polyurethane in the overcoat composition is greater than the concentration of polyurethane in the inkjet ink composition.
14 . A printed substrate comprising an ink layer comprising a colorant disposed over the substrate and an overcoat layer disposed over the ink layer, wherein the printed substrate comprises a crosslinked polyurethane network that surrounds the colorant and extends from the ink layer to the overcoat layer.
15 . A substrate as claimed in claim 14 , which is a food packaging material.Join the waitlist — get patent alerts
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