IP Library Patent Application 13789293
Patent Application
App. No. 13/789,293

RADIATION CURABLE AQUEOUS COMPOSITION FOR LOW GLOSS COATINGS

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Patent No.
US None
App. No.
13/789,293
Abstract

A radiation curable aqueous coating composition having a 85° gloss of ≦60 upon drying comprising (A) 10 to 99 wt % of a polyurethane, (B) 1 to 90 wt % of a radiation curable component; (C) 0.1 to 10 wt % of an associative thickener; wherein at least 80 wt % of (A)+(B)+(C) has a particle size greater than 500 nm and wherein the C═C bond concentration of the composition is 0.2 to 5.0 mmol per g of (A)+(B)+(C).

Claims (36)

1 . A radiation curable aqueous coating composition having a 85° gloss of ≦60 upon curing comprising:

(A) 10 to 99 wt % of a polyurethane obtained by the reaction of components comprising:

(i) 5 to 65 wt % of at least one organic polyisocyanate;

(ii) 0.1 to 6 wt % of at least one isocyanate-reactive component containing ionic or potentially ionic water-dispersing groups having a molecular weight in the range of from 100 up to 500 g/mol;

(iii) 0 to 30 wt % of at least one isocyanate-reactive component containing water-dispersing groups and having a molecular weight in the range of from 500 to 6000 g/mol;

(iv) 0 to 80 wt % of at least one isocyanate-reactive component containing radiation curable functional groups and having a molecular weight in the range of from 70 to 6000 g/mol;

(v) 0 to 50 wt % of at least one component not comprised by (i), (ii), (iii), (iv) or (vi);

(vi) 0 to 50 wt % of at least one active-hydrogen chain extending compound;

where (i), (ii), (iii), (iv), (v) and (vi) add up to 100 wt %; and

where the NCO:OH ratio is in the range of from 0.4:1.0 to 10.0:1.0;

(B) 1 to 90 wt % of a radiation curable component; and

(C) 0.1 to 10 wt % of an associative thickener;

wherein (A)+(B)+(C) add up to 100 wt %; and

wherein at least 80 wt % of the polyurethane (A)+(B)+(C) has a particle size greater than 500 nm; and wherein the C═C bond concentration of the composition is 0.2 to 5.0 mmol per g of (A)+(B)+(C).

2 . An aqueous coating composition according to claim 1 containing <5% by weight of flattening agent by weight of the polyurethane (A).

3 . An aqueous coating composition according to claim 1 wherein the aqueous coating composition is UV radiation curable.

4 . An aqueous coating composition according to claim 1 wherein the 60° gloss of the aqueous coating composition upon curing is ≦40.

5 . An aqueous coating composition according to claim 1 wherein at least 85 wt % of (A)+(B)+(C) has a particle size greater than 500 nm and less than 25000 nm.

6 . An aqueous coating composition according to claim 1 wherein the mean particle size (D[0.1]) of (A)+(B)+(C) is greater than 500 nm and less than 90000 nm.

7 . An aqueous coating composition according to claim 1 wherein polyurethane (A) comprises 0.5 to 3.0 wt % of neutralised component (ii).

8 . An aqueous coating composition according to claim 1 wherein radiation curable component (B) is selected from the group consisting of epoxy(meth)acrylates; urethane(meth)acrylates; multi-functional (meth)acrylate monomers; UV-curable urethane dispersions, amine-(meth)acrylate adducts and mixtures thereof.

9 . An aqueous coating composition according claim 1 wherein the composition comprises 1 to 30 wt % of a low molecular weight radiation curable component (B1).

10 . An aqueous coating composition according to claim 1 wherein the composition comprises 10 to 90 wt % of a low molecular weight radiation curable component (B2).

11 . An aqueous coating composition according to claim 1 wherein the associative thickeners component (C) is selected from the group consisting of hydrophobic modified water soluble polymers, hydrophobically modified alkali soluble emulsions and mixtures thereof.

12 . An aqueous coating composition according to claim 1 additionally comprising a vinyl polymer.

13 . An aqueous coating composition according to claim 12 wherein the ratio of the vinyl polymer to polyurethane (A) is in the range of from 10:90 to 90:10.

14 . A process for preparing an aqueous coating composition according to claim 1 comprising the following steps:

a) reaction of components (i) to (vi) to form an polyurethane (A);

b) forming an aqueous dispersion of the polyurethane (A) in water;

c) optionally neutralising the polyurethane (A);

d) adding at least a radiation curable component (B);

e) adding at least an associative thickener;

f) optionally adding a radiation initiator;

g) optionally adding vinyl monomer;

where steps b), c), d), e), f) and g) may be in any order.

15 . A coating obtained from an aqueous coating composition according to claim 1 .