THERMALLY STABLE CROSSLINKED POLYVINYL FLUORIDE COATING
The present disclosure relates to a coating composition comprising polyvinyl fluoride (PVF), an acrylic copolymer comprising amine and/or hydroxyl functional groups, and an isocyanate or melamine crosslinker with groups that are reactive towards amine or hydroxyl groups. Also disclosed herein are dried or cured coatings resulting from the coating composition, substrates coated with such coating compositions, the resulting dried and/or cured coated substrates, and methods of coating such substrates.
1 . A coating composition comprising:
(a) a polyvinyl fluoride (PVF);
(b) an acrylic copolymer comprising amine and/or hydroxyl functional groups; and
(c) an isocyanate or a melamine crosslinker with reactive groups that react with amino or hydroxyl functional groups, wherein:
the weight ratio of the acrylic copolymer to the PVF is in the range of 0.05:1 to 0.25:1; and
the number of reactive groups in the isocyanate or melamine crosslinker is 75 to 125 mol % relative to the total number of amine or hydroxyl functional groups in the acrylic copolymer.
2 . The coating composition of claim 1 , further comprising a pigment component, wherein the weight ratio of the pigment component to the total weight of PVF and acrylic copolymer in the coating composition is in a range of 0.05:1 to 0.25:1.
3 . The coating composition of claim 1 , further comprising an acid scavenger epoxide component, wherein the weight ratio of the acid scavenger epoxide component to the PVF is in the range of 0.002:1 to 0.1:1.
4 . The coating composition of claim 1 , further comprising an antioxidant component, wherein the weight ratio of antioxidant component to the PVF is in the range of 0.002:1 to 0.1:1.
5 . The coating composition of claim 4 , wherein the antioxidant component is a phosphate-based antioxidant or a phenolic antioxidant.
6 . The coating composition of claim 1 , further comprising one or more solvents wherein the weight ratio of the solvents to the PVF is in the range of 2:1 to 1:1.
7 . A substrate at least partially coated by the coating composition of claim 1 .
8 . The substrate of claim 7 , wherein the coated surface of the substrate is primed.
9 . The substrate of claim 8 , wherein a primer is a polyurethane, a polyester, or an acrylic primer.
10 . The substrate of claim 7 , wherein the coated surface of the substrate is a metal.
11 . The substrate of claim 7 , wherein the coated surface of the substrate is a cured layer of the coating composition of claim 1 .
12 . A dry coated film composition comprising
(a) a polyvinyl fluoride (PVF);
(b) an acrylic copolymer comprising amine and/or hydroxyl functional groups; and
(c) an isocyanate or a melamine crosslinker reactive groups that react with amino or hydroxyl functional groups, wherein:
the weight ratio of the acrylic copolymer to the PVF is in the range of 0.05:1 to 0.25:1; and
the number of reactive groups in the isocyanate or melamine crosslinker is 75 to 125 mol % relative to the total number of amine or hydroxyl functional groups in the acrylic copolymer.
13 . The dry coated film composition of claim 12 that is coated on at least a portion of a primed substrate or a metal substrate.
14 . The dry coated film composition of claim 13 , wherein a primer is a polyurethane, a polyester, or an acrylic primer.
15 . The dry coated film composition of claim 12 that is cured.
16 . A method of coating a substrate comprising applying the coating composition of claim 1 to at least a portion of a substrate.
17 . The method of claim 16 , wherein the substrate is coil coated with the coating composition.
18 . The method of claim 16 , further comprising the step of curing the coating composition.
19 . The method of claim 16 , wherein the substrate is primed.