COIL COATING
Described herein is a coated article comprising a substrate, a coil coating applied to the substrate, the coil coating comprising a base coat layer formed from a base coat composition comprising polyester that is substantially free of silicon; a print coat layer formed from a print coat composition comprising siliconized polyester; and a top coat layer formed from a top coat composition comprising siliconized polyester.
1 . A coated article comprising
a substrate;
a coil coating applied to the substrate, the coil coating comprising:
a base coat layer formed from a base coat composition comprising polyester that is substantially free of silicon;
a print coat layer formed from a print coat composition comprising siliconized polyester; and
a top coat layer formed from a top coat composition comprising siliconized polyester.
2 . The coated article according to claim 1 further comprising a primer coat layer located between the substrate and the base coat, the primer coat layer being substantially free of chromium.
3 . The coated article according to claim 2 , wherein the primer coat composition comprises urethane modified polyester.
4 . The coated article according to claim 1 , wherein the polyester of the base coat layer is present in an amount ranging from about 60 wt. % to about 100 wt. %, based on the total weight of the base coat composition.
5 . The coated article according to claim 1 , wherein the print coat composition comprises colorant present in an amount ranging from about 1 wt. % to about 50 wt. %, based on the total weight of the print coat composition.
6 . The coated article according to claim 1 , wherein the siliconized polyester of the print coat layer is present in an amount ranging from about 50 wt. % to about 98 wt. %, based on the total weight of the print coat composition.
7 . The coated article according to claim 1 , wherein the top coat composition comprises silica.
8 . The coated article according to claim 1 , wherein the silica of the top coat composition is present in an amount ranging from about 0.1 wt. % to about 10 wt. %, based on the total weight of the top coat composition.
9 . The coated article according to claim 1 , wherein the siliconized polyester of the top coat layer is present in an amount ranging from about 85 wt. % to about 99.9 wt. %, based on the total weight of the top coat composition.
10 . The coated article according to claim 1 , wherein the substrate is formed of a metal.
11 . A coated article comprising a first major exposed surface opposite a second major exposed surface, the coated article comprising:
a substrate comprising an upper surface opposite a lower surface;
a coil coating applied to the substrate, the coil coating having an upper surface opposite a lower surface and the coil coating comprising:
a primer coat layer comprising an upper surface opposite a lower surface, the primer layer formed from a primer composition that is substantially free of chromium;
a base coat layer comprising an upper surface opposite a lower surface, the base coat layer formed from a base coat composition comprising polyester that is substantially free of silicon;
a print coat layer comprising an upper surface opposite a lower surface, the print coat layer formed from a print coat composition comprising siliconized polyester; and
a top coat layer comprising an upper surface opposite a lower surface, the top coat layer formed from atop coat composition comprising siliconized polyester; and
wherein the first major exposed surface of the coated article comprises the upper surface of the top coat layer.
12 . The coated article according to claim 11 , wherein the primer coat composition comprises urethane modified polyester that is substantially free of silicon
13 . The coated article according to claim 11 , wherein the print coat composition comprises colorant.
14 . The coated article according to claim 11 , wherein the top coat composition comprises silica.
15 . The coated article according to claim 11 , wherein the topcoat layer is substantially transparent.
16 . The coated article according to claim 11 , wherein the substrate is formed of a metal.
17 . A method of forming a coated article comprising:
a) applying a wet-state primer coating composition comprising a liquid carrier to a substrate and drying the wet-state primer coating composition that is applied to the substrate such that the liquid carrier of the wet-state primer coating composition is evaporated resulting in a primer coating layer;
b) applying a wet-state base coating composition comprising a liquid carrier to the primer coating layer and drying the wet-state base coating composition that is applied to the primer coating layer such that the liquid carrier of the wet-state base coating composition is evaporated resulting in a base coating layer;
c) applying a wet-state print coating composition comprising a liquid carrier to the base coating layer and drying the wet-state print coating composition that is applied to the base coating layer such that the liquid carrier of the wet-state print coating composition is evaporated resulting in a print coating layer;
d) applying a wet-state top coating composition comprising a liquid carrier to the print coating layer and drying the wet-state top coating composition that is applied to the print coating layer such that the liquid carrier of the wet-state top coating composition is evaporated resulting in a top coating layer; and
wherein the wet-state base coating composition further comprises an organic polymer that is substantially free of silicon;
wherein the wet-state print coating composition further comprises siliconized organic polymer; and
wherein the wet-state top coating composition further comprises siliconized organic polymer.
18 . The method according to claim 17 , wherein subsequent to step d), the substrate coated with primer coat layer, the base coat layer, the print coat layer, and the top coat layer is rolled into a coil.
19 . The method according to claim 17 , wherein:
the application of the wet-state primer coat composition in step a) is performed by curtain coating;
the application of the wet-state base coat composition in step b) is performed by curtain coating;
the application of the wet-state primer coat composition in step c) is performed by rotogravure printing; and
the application of the wet-state top coat composition in step d) is performed by curtain coating.
20 . The method according to claim 17 , wherein the liquid carrier of the wet-state primer coat composition is evaporated in:
step a) at an elevated temperature ranging from about 100° C. to about 300° C.;
step b) at an elevated temperature ranging from about 100° C. to about 300° C.;
step c) at an elevated temperature ranging from about 100° C. to about 300° C.; and
step d) at an elevated temperature ranging from about 100° C. to about 300° C.