IP Library Granted Patent US 11,725,067
Granted Patent B2
US 11,725,067 · App. 17/194,953 · Granted Aug 15, 2023

Styrene-free coating compositions for packaging articles such as food and beverage containers

Inventors: Sebastien Gibanel (Givry, FR); Benoit Prouvost (Nantes, FR)
Assignee: SWIMC LLC
C08F2/24C08F220/20C08F265/06C08L33/08C08L33/10C08L51/06C09D133/08C09D133/12C09D151/003C08F220/1807C08F220/325
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Quick Facts
Patent No.
US 11,725,067
App. No.
17/194,953
Granted
Aug 15, 2023
Kind
B2
Abstract

A method of forming a coating on a food or beverage container, which includes spraying a coating composition onto an interior surface of the food or beverage container, where the coating composition includes an emulsion-polymerized latex copolymer having copolymer chains of one or more ethylenically-unsaturated monomers and one or more styrene offset monomers. Preferably, the coating composition is substantially free of BPA, PVC, and styrene. The method may also include curing the sprayed coating composition, thereby providing the coating on the interior surface of the food or beverage container.

Claims (31)

1. An inside spray food or beverage container coating composition comprising:

an aqueous carrier; and

an emulsion-polymerized latex copolymer dispersed in the aqueous carrier, wherein the monomers used to produce the emulsion-polymerized latex copolymer (i) include one or more polymerizable surfactants and (ii) are substantially free of BPA, PVC, halogenated monomers, and styrene;

wherein the coating composition has an average viscosity ranging from about 5 seconds to about 40 seconds, pursuant to the Viscosity Test;

wherein the coating composition has a resin solids content ranging from about 10% by weight to about 30% by weight, based on a total weight of the coating composition; and

wherein the coating composition, when cured, has a glass transition temperature of 50° C. or greater.

2. The inside spray coating composition of claim 1 , wherein the coating composition, when cured, has a glass transition temperature of 60° C. or greater.

3. The inside spray coating composition of claim 1 , wherein the coating composition, when cured, has a glass transition temperature of 70° C. or greater.

4. The inside spray coating composition of claim 1 , wherein the coating composition, when cured, has a glass transition temperature of 80° C. or more.

5. The inside spray coating composition of claim 1 , wherein the one or more polymerizable surfactants constitutes 1% or more by weight of the emulsion-polymerized latex copolymer, based on the entire weight of the reactant monomers used to produce the emulsion-polymerized latex copolymer.

6. The inside spray coating composition of claim 3 , wherein the one or more polymerizable surfactants constitutes 2% or more by weight of the emulsion-polymerized latex copolymer, based on the entire weight of the reactant monomers used to produce the emulsion-polymerized latex copolymer.

7. The inside spray coating composition of claim 1 , wherein the one or more polymerizable surfactants constitutes 1% or more by weight of the emulsion-polymerized latex copolymer, based on the entire weight of the reactant monomers used to produce the emulsion-polymerized latex copolymer.

8. The inside spray coating composition of claim 1 , wherein the one or more polymerizable surfactants constitutes 25% or less by weight of the emulsion-polymerized latex copolymer, based on the entire weight of the reactant monomers used to produce the emulsion-polymerized latex copolymer.

9. The inside spray coating composition of claim 5 , wherein the one or more polymerizable surfactants constitutes 10% or less by weight of the emulsion-polymerized latex copolymer, based on the entire weight of the reactant monomers used to produce the emulsion-polymerized latex copolymer.

10. The inside spray coating composition of claim 1 , wherein the one or more polymerizable surfactants are polymerized or otherwise reacted under free radical-initiated polymerization conditions.

11. The inside spray coating composition of claim 5 , wherein the one or more polymerizable surfactants include an ethylenically-unsaturated group.

12. The inside spray coating composition of claim 1 , wherein the monomers used to produce the emulsion-polymerized latex copolymer include one or more multi-ethylenically unsaturated monomer.

13. The inside spray coating composition of claim 12 , wherein the one or more multi-ethylenically unsaturated monomers constitute 5% or more by weight of the emulsion-polymerized latex copolymer, based on the entire weight of the reactant monomers used to produce the emulsion-polymerized latex copolymer.

14. The inside spray coating composition of claim 13 , wherein the monomers used to produce the emulsion-polymerized latex copolymer are substantially free of oxirane groups.

15. The inside spray coating composition of claim 12 , wherein the one or more multi-ethylenically unsaturated monomer constitutes from 8% to 25% by weight of the emulsion-polymerized latex copolymer, based on the entire weight of the reactant monomers used to produce the emulsion-polymerized latex copolymer.

16. The inside spray coating composition of claim 1 , wherein the emulsion-polymerized latex copolymer is a multiple stage latex.

17. The inside spray coating composition of claim 1 , wherein the aqueous carrier includes from about 5% to about 50% of organic solvent, based on the total weight of the aqueous carrier.

18. The inside spray coating composition of claim 7 , wherein the aqueous carrier includes from about 10% to about 40% of organic solvent, based on the total weight of the aqueous carrier.

19. The inside spray coating composition of claim 1 , wherein the coating composition is substantially free of formaldehyde and formaldehyde-containing materials.

20. An inside spray beverage container coating composition comprising:

an aqueous carrier that includes from 5% to 50% of organic solvent, based on the total weight of the aqueous carrier; and

an emulsion-polymerized latex copolymer dispersed in the aqueous carrier, wherein the monomers used to produce the emulsion-polymerized latex copolymer (i) include one or more polymerizable surfactants having an ethylenically-unsaturated group and (ii) are substantially free of BPA, PVC, halogenated monomers, and styrene;

wherein the coating composition has an average viscosity ranging from about 5 seconds to about 40 seconds, pursuant to the Viscosity Test;

wherein the coating composition has a resin solids content ranging from about 10% by weight to about 30% by weight, based on a total weight of the coating composition;

wherein the coating composition, when cured, has a glass transition temperature of from about 60° C. to about 120° C.

21. The inside spray coating composition of claim 20 , wherein the monomers used to produce the emulsion-polymerized latex copolymer include one or more multi-ethylenically unsaturated monomer, and wherein the one or more multi-ethylenically unsaturated monomers constitute 5% or more by weight of the emulsion-polymerized latex copolymer, based on the entire weight of the reactant monomers used to produce the emulsion-polymerized latex copolymer.

Continuity (4)
Continuation 16739995 · Jan 10, 2020
Continuation 15539280
Provisional Application 62096573 · Dec 24, 2014
Related Publication 20210261696A1 · Aug 26, 2021