Surface coatings, treatments, and methods for removal of mineral scale by self-release
US-2015353813-A1 · Dec 10, 2015 · US
US9636703B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9636703-B2 |
| Application number | US-201214342579-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 12, 2012 |
| Priority date | Sep 30, 2011 |
| Publication date | May 2, 2017 |
| Grant date | May 2, 2017 |
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An object of the present invention is to provide a method for forming a multilayer coating film, the method making it possible to obtain, with excellent curability at low temperatures and in a short period of time, a multilayer coating film exhibiting an excellent finished appearance. The present invention provides a method for forming a multilayer coating film, wherein a substrate is sequentially coated with at least one layer of one or more base coating compositions, and with one or more clear coating compositions, the method being characterized by utilizing a clear coating composition containing a hydroxy-containing acrylic resin (A) having a hydroxy value in a specific range; a polyisocyanate compound (B) having a viscosity in a specific range; and an organometallic catalyst (C) containing a metallic compound (C1) in which the metal is a member selected from the group consisting of zinc, tin, zirconium, bismuth, lead, cobalt, manganese, titanium, aluminum, and molybdenum, and an amidine compound (C2).
Opening claim text (preview).
The invention claimed is: 1. A method for forming a multilayer coating film comprising: applying one or more base coating compositions (Y) in at least one layer to a substrate to form a base coating film in at least one layer; applying one or more clear coating compositions (Z) to the above uncured base coating film formed in at least one layer; and simultaneously curing the at least one layer of uncured base coating film and the above uncured clear coating film, wherein the one or more clear coating compositions (Z) comprises: a hydroxy-containing acrylic resin (A) having a hydroxy value in the range of 85 to 215 mg KOH/g, a polyisocyanate compound (B) having a viscosity at 25° C. in the range of 200 to 4,000 mPa·s, an organometallic catalyst (C) containing a metallic compound (C1) in which the metal is a member selected from the group consisting of zinc, tin, zirconium, bismuth, lead, cobalt, manganese, titanium, aluminum and molybdenum, and an amidine compound (C2), and an organic solvent, wherein the equivalent ratio (NCO/OH) of isocyanate groups in the polyisocyanate compound (B) to hydroxy groups in the hydroxy-containing acrylic resin (A) is in the range of 0.8 to 1.8. 2. The method for forming a multilayer coating film according to claim 1 , wherein the content of secondary hydroxy-containing polymerizable unsaturated monomer (a1) relative to the total mass of hydroxy-containing polymerizable unsaturated monomer (a) in the hydroxy-containing acrylic resin (A) is 50 to 100% by mass. 3. The method for forming a multilayer coating film according to claim 1 , wherein the hydroxy-containing acrylic resin (A) comprises, as at least one other polymerizable unsaturated monomer (b), a C 6-20 alicyclic hydrocarbon-containing polymerizable unsaturated monomer (b1). 4. The method for forming a multilayer coating film according to claim 1 , wherein the hydroxy-containing acrylic resin (A) has a weight average molecular weight in the range of 2,000 to 50,000. 5. The method for forming a multilayer coating film according to claim 1 , wherein the metallic compound (C1) is a carboxylic acid metal salt compound. 6. The method for forming a multilayer coating film according to claim 1 , wherein the content of the organometallic catalyst (C) is in the range of 0.05 to 5% by mass relative to the total mass of the hydroxy-containing acrylic resin (A) and the polyisocyanate compound (B). 7. An article containing a multilayer coating film formed by the method for forming a multilayer coating film according to claim 1 . 8. An article containing a multilayer coating film formed by the method for forming a multilayer coating film according to claim 2 . 9. An article containing a multilayer coating film formed by the method for forming a multilayer coating film according to claim 3 . 10. An article containing a multilayer coating film formed by the method for forming a multilayer coating film according to claim 4 . 11. An article containing a multilayer coating film formed by the method for forming a multilayer coating film according to claim 5 . 12. An article containing a multilayer coating film formed by the method for forming a multilayer coating film according to claim 6 .
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