Polymer particle, polymer dispersion, method for producing said polymer dispersion, coating material produced from said polymer dispersion, and coated article
US-2015376390-A1 · Dec 31, 2015 · US
US10870765B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10870765-B2 |
| Application number | US-201616066113-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 27, 2016 |
| Priority date | Dec 28, 2015 |
| Publication date | Dec 22, 2020 |
| Grant date | Dec 22, 2020 |
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The objective of the present invention is to provide an aqueous coating composition which has excellent curability at low temperatures. The present invention provides an aqueous coating composition which contains an aqueous resin having a hydroxyl group and a carboxyl group (A), a water-dispersible blocked polyisocyanate compound (B), a hydrophilicized carbodiimide compound (C), and an aqueous polyurethane resin (D), wherein the aqueous resin having a hydroxyl group and a carboxyl group (A) has a hydroxyl value of 80 to 200 mgKOH/g and an acid value of 10 to 40 mgKOH/g in terms of resin solid content, the aqueous polyurethane resin (D) has a glass transition point (Tg) of −50° C. or less, and a cured film of the aqueous polyurethane resin (D) has an elongation at break of 400% or more at −20° C.
Opening claim text (preview).
The invention claimed is: 1. An aqueous coating composition comprising: an aqueous resin having a hydroxyl group and a carboxyl group (A), a water-dispersible blocked polyisocyanate compound (B), a hydrophilicized carbodiimide compound (C), and an aqueous polyurethane resin (D), wherein the aqueous resin having a hydroxyl group and a carboxyl group (A) has a hydroxyl value of 80 to 200 mgKOH/g and an acid value of 10 to 40 mgKOH/g in terms of resin solid content, the hydrophilicized carbodiimide compound (C) is a compound represented by formula (I), (II), or (III) below, the aqueous polyurethane resin (D) has a glass transition point (Tg) of −50° C. or less, and a cured film of the aqueous polyurethane resin (D) has an elongation at break of 400% or more at −20° C., wherein X is a bifunctional organic group having at least one carbodiimide group, Y is each same or different structure resulting from elimination of a hydroxyl group from a polyalkylene glycol monoalkyl ether, and Z is a structure resulting from elimination of a hydroxyl group from a bifunctional polyol having a number-average molecular weight of 200 to 5,000, wherein each X is a bifunctional organic group having at least one carbodiimide group, Y is each same or different structure resulting from elimination of a hydroxyl group from a polyalkylene glycol monoalkyl ether, R 0 is hydrogen, a methyl group or an ethyl group, each R 1 is an alkylene group having 4 or less carbon atoms, n is 0 or 1, and each m is a number from 0 to 60, wherein X is a bifunctional organic group having at least one carbodiimide group, and Y is each same or different structure resulting from elimination of a hydroxyl group from a polyalkylene glycol monoalkyl ether. 2. The aqueous coating composition according to claim 1 , wherein a content of the hydrophilicized carbodiimide compound (C) is 1 to 8% by mass in terms of a resin solid content of the aqueous coating composition. 3. The aqueous coating composition according to claim 1 , wherein the aqueous resin (A) comprises an acrylic emulsion having a number-average molecular weight of 10,000 to 80,000. 4. The aqueous coating composition according to claim 1 , wherein the hydrophilicized carbodiimide compound (C) represented by the formula (III) above is a compound below, wherein X is a bifunctional organic group having at least one carbodiimide group, and Y is each same or different structure selected from (i) and (ii) below: (i) a structure resulting from elimination of a hydroxyl group from a polyethylene glycol monoalkyl ether in which an alkyl group having 1 to 3 carbon atoms is ether-linked to an end of a polyethylene oxide unit having a repeat number of 6 to 20, (ii) a structure resulting from elimination of a hydroxyl group from a polypropylene glycol monoalkyl ether in which an alkyl group having 1 to 8 carbon atoms is ether-linked to an end of a polypropylene oxide unit having a repeat number of 4 to 60. 5. The aqueous coating composition according to claim 4 , wherein in the hydrophilicized carbodiimide compound (C) represented by the formula (III) above, one Y is the (i) and another Y is the (ii), and a ratio of the structure (i) to the structure (ii) is within a range of (i):(ii)=1:0.7 to 1:8. 6. The aqueous coating composition according to claim 1 , wherein a content of the aqueous polyurethane resin (D) is 15% by mass or more in terms of the resin solid content of the aqueous coating composition. 7. The aqueous coating composition according to claim 1 , wherein a content of the aqueous polyurethane resin (D) is 30% by mass or more and 40% by mass or less in terms of the resin solid content of the aqueous coating composition. 8. The aqueous coating composition according to claim 1 , wherein a content of the aqueous polyurethane resin (D) is 15% by mass or more and less than 30% by mass in terms of the resin solid content of the aqueous coating composition. 9. The aqueous coating composition according to claim 1 , wherein a content of the water-dispersible blocked polyisocyanate compound (B) is 10 to 25% by mass in terms of the resin solid content of the aqueous coating composition, and a content of the hydrophilicized carbodiimide compound (C) is 1.5 to 7% by mass in terms of the resin solid content of the aqueous coating composition. 10. The aqueous coating composition according to claim 1 , wherein a mass ratio of the content of the water-dispersible blocked polyisocyanate compound (B) to the content of the hydrophilicized carbodiimide compound (C) in terms of the resin solid content of the aqueous coating composition is (B):(C)=25:1 to 1.25:1. 11. A method for forming a coating film in use of an aqueous coating composition, wherein the method comprises: a coating step of applying the aqueous coating composition according to claim 1 to an object to be coated to form a coating film, and a curing step of curing the resulting coating film at 70 to 100° C. 12. The method for forming a coating film according to claim 11 , wherein the coating step comprises: a first coating step of applying the aqueous coating composition, wherein a content of the aqueous polyurethane resin (D) is 30% by mass or more and 40% by mass or less in terms of the resin solid content of the aqueous coating composition, onto an object to be coated to form a first coating film, and a second application step of applying the aqueous coating composition, wherein a content of the aqueous polyurethane resin (D) is 15% by mass or more and less than 30% by mass in terms of the resin solid content of the aqueous coating composition, onto the first coating film to form a second coating film. 13. The method for forming a coating film according to claim 11 , wherein the object to be coated includes a steel plate part and a resin part.
Aqueous dispersion or solution · CPC title
to metal, e.g. car bodies (involving a chemical reaction between the metal and the coating C23) · CPC title
Polyurethanes · CPC title
Polyesters derived from dicarboxylic acids and dihydroxy compounds (C09D167/06 takes precedence) · CPC title
organic · CPC title
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