Continuous in-line process for making ink-jet recording media comprising a radiation-cured coating layer
View Patent ↗A continuous in-line process for manufacturing ink-jet recording media is provided. The process includes applying a radiation-curable coating to a surface of a substrate material, irradiating the radiation-curable coating to form a “freshly” irradiated coating that undergoes a curing process, and applying an ink-receptive coating over the “freshly” irradiated coating to form an ink-jet recording media.
1. A continuous, in-line process for making an ink-jet recording medium comprising the steps of:
a) applying a radiation-curable coating to a surface of a substrate material;
b) irradiating the radiation-curable coating to form a freshly irradiated coating that undergoes a curing process; and
c) applying an ink-receptive coating over the freshly irradiated coating to form an ink-jet recording medium,
wherein the ink-receptive coating comprises at least about 40% by weight water-soluble binder resin based on dry weight of the ink-receptive coating, and
wherein the water-soluble binder resin is selected from the group consisting of polyvinyl alcohols; poly(vinyl pyrrolidone); poly(2-ethyl-2-oxazoline); methylcellulose; poly(ethylene oxide); and copolymers and mixtures thereof.
2. A continuous, in-line process for making an ink-jet recording medium comprising the steps of:
a) applying a radiation-curable coating to a surface of a substrate material;
b) irradiating the radiation-curable coating to form a freshly irradiated coating that undergoes a curing process;
c) treating the freshly irradiated radiation-curable coating with a corona discharge; and
d) applying an ink-receptive coating over the freshly irradiated coating to form an ink-jet recording medium,
wherein the ink-receptive coating comprises at least about 40% by weight water-soluble binder resin based on dry weight of the ink-receptive coating, and
wherein the water-soluble binder resin is selected from the group consisting of polyvinyl alcohols; poly(vinyl pyrrolidone); poly(2-ethyl-2-oxazoline); methylcellulose; poly(ethylene oxide); and copolymers and mixtures thereof.
3. A continuous, in-line process for making an ink-jet recording medium comprising the steps of:
a) applying a radiation-curable coating to a surface of a substrate material;
b) irradiating the radiation-curable coating to form a freshly irradiated coating that undergoes a curing process;
c) applying a coating comprising adhesion promoters over the freshly irradiated radiation-curable coating; and
d) applying an ink-receptive coating over the coating comprising adhesion promoters to form an ink-jet recording medium,
wherein the ink-receptive coating comprises at least about 40% by weight water-soluble binder resin based on dry weight of the ink-receptive coating, and
wherein the water-soluble binder resin is selected from the group consisting of polyvinyl alcohols; poly(vinyl pyrrolidone); poly(2-ethyl-2-oxazoline); methylcellulose; poly(ethylene oxide); and copolymers and mixtures thereof.
4. A continuous, in-line process for making an ink-jet recording medium comprising the steps of:
a) applying a radiation-curable coating to a surface of a substrate material;
b) irradiating the radiation-curable coating to form a freshly irradiated coating that undergoes a curing process; and
c) applying an ink-receptive coating over the freshly irradiated coating to form an ink-jet recording medium,
wherein the radiation-curable coating comprises a radiation curable oligomer and photoinitiator, and
wherein the water-soluble binder resin is selected from the group consisting of polyvinyl alcohols; poly(vinyl pyrrolidone); poly(2-ethyl-2-oxazoline); methylcellulose; poly(ethylene oxide); and copolymers and mixtures thereof.