Defoamers for airless paint spray application
The invention relates to an ester AB of a polypropylene glycol A with fatty acids B, which ester AB can be added in the form of an aqueous emulsion to an aqueous coating composition, and a method of use of the ester AB as defoamer additive.
1. A method of use of an ester AB as defoamer additive in aqueous coating compositions which method comprises adding the ester AB in the form of an aqueous emulsion to an aqueous coating composition, and applying the said aqueous coating composition including the ester AB via the airless spray method,
wherein the ester AB is an ester of a polypropylene glycol A with fatty acids B,
wherein the polypropylene glycol A is a linear homopolymer having the structure HO—[CH(CH 3 )—CH 2 —O—] n H,
wherein n is chosen such that the number average molar mass M n is at least 1800 g/mol, and
wherein the fatty acids B are a mixture of at least one of saturated fatty acids B1 having from 12 to 20 carbon atoms, with mixtures B2 of fatty acids derived from natural sources.
2. The method of use of claim 1 , wherein a wax C is added to the ester AB.
3. The method of use of claim 1 , wherein an emulsifier D is added to the ester AB.
4. The method of use of claim 2 , wherein an emulsifier D is added to the ester AB.
5. The method of use of claim 1 wherein the mixture of fatty acids B2 is selected from the group consisting of coconut oil fatty acid and cottonseed fatty acid, and combinations thereof.
6. The method of use of claim 1 , wherein the ester AB has an average ratio of the number v(-OH) of non-esterified hydroxyl groups per molecule which remain as such in the ester, to the number v(O—CO—R) of esterified hydroxyl groups of not more than 9.
7. The method of use of claim 1 , wherein in the ester AB, the polypropylene glycol A has a number average molar mass M n of at least 1900 g/mol.
8. The method of use of claim 1 , wherein in the ester AB, the polypropylene glycol A has a number average molar mass M n of at least 1950 g/mol.
9. The method of use of claim 1 , wherein in the ester AB, the polypropylene glycol A has a number average molar mass M n of at least 2000 g/mol.
10. The method of use of claim 1 , wherein in the ester AB, the fatty acid B is a mixture of B1 and B2 where the said fatty acid B1 has a mass fraction of at least 25%, in the mass of the mixture of the fatty acid B1 with the mixture of fatty acids B2.
11. The method of use of claim 1 , wherein in the ester AB, the fatty acid B is a mixture of B1 and B2 where the said fatty acid B1 has a mass fraction of at least 40%, in the mass of the mixture of the fatty acid B1 with the mixture of fatty acids B2.
12. The method of use of claim 1 , wherein the fatty acid B1 is stearic acid.
13. The method of use of claim 1 , wherein the fatty acid B1 is stearic acid, and wherein the mixture of fatty acids B2 is coconut oil fatty acid.