SUSTAINABLE BARRIER CONTAINERS AND METHODS
In an embodiment, the invention comprises a packaging structure comprising a cap layer which comprises post-consumer resin, at least one additional layer adjacent the first layer which comprises an alloy of: polyethylene terephthalate; a polyolefin; and at least one compatibilizer; a barrier coating adjacent the at least one additional layer and opposite the cap layer, wherein the barrier coating comprises a matrix of polyethyleneimine and polyvinyl alcohol and an overlacquer about the barrier coating. The methods of the invention may include co-extruding the cap layer and an alloy layer to form a co-extrudate; optionally, melt adhering the co-extrudate to another alloy layer to form a melt-adhered sheet; intermixing a solution of polyethyleneimine, polyvinyl alcohol, and water to form a coating; applying the coating to the outermost alloy layer opposite the cap layer; drying the applied coating; applying an overlacquer about the coating; and drying the overlacquer.
1 . A method of making a barrier coating for a polymeric alloy blend, the method comprising:
intermixing a solution of polyethyleneimine, polyvinyl alcohol, and water;
applying the solution to a formed sheet of the polymeric alloy blend;
drying the applied solution.
2 . The method of claim 1 , wherein the polymeric alloy blend comprises at least one layer comprising polyethylene terephthalate, a polyolefin, and at least one compatibilizer.
3 . The method of claim 1 , wherein the polymeric alloy blend comprises two layers, each of which comprise polyethylene terephthalate, a polyolefin, and at least one compatibilizer.
4 . The method of claim 2 or 3 , wherein the polyolefin comprises high density polyethylene.
5 . The method of claim 2 or 3 , wherein the compatibilizer comprises ethylene methyl acrylate, ethylene glycidyl methacrylate copolymer, ethylene/methyl acrylate/glycidyl methacrylate terpolymer, or a combination thereof.
6 . The method of claim 1 , wherein the polymeric alloy blend is co-extruded with a layer of post-consumer resin prior to being coated.
7 . The method of claim 5 , wherein the post-consumer resin comprises high density polyethylene.
8 . The method of claim 1 , further comprising applying an overlacquer to the dried coating.
9 . The method of claim 1 , further comprising thermoforming the coated polymeric alloy blend into a packaging structure.
10 . The method of claim 9 wherein the packaging structure comprises at least one cavity and a flange surrounding the at least one cavity.
11 . The method of claim 10 , further comprising filling the at least one cavity with a consumable product and adhering a lidding member along the flange.
12 . The method of claim 11 , further comprising separating the plurality of cavities along the flange.
13 . A method of making a multilayer packaging structure, the method comprising providing a first alloy layer comprising a matrix of polyethylene terephthalate, a polyolefin, and at least one compatibilizer;
applying a solution to a surface of the first alloy layer, wherein the solution comprises polyethyleneimine, polyvinyl alcohol, and water;
before the applied solution is completely dried, melt-adhering a second alloy layer to the applied solution, wherein the second alloy layer comprises a matrix of polyethylene terephthalate, a polyolefin, and at least one compatibilizer, thereby trapping a barrier coating comprising the polyethyleneimine and polyvinyl alcohol between the first alloy layer and the second alloy layer; and
allowing the trapped barrier coating to dry,
wherein the dried barrier coating functions as both a barrier layer and an adhesive layer bonding the first alloy layer to the second alloy layer.
14 . A method of making a thermoformed packaging structure, the method comprising:
providing a flat sheet comprising a polymeric alloy blend, wherein the polymeric alloy blend comprises a matrix of polyethylene terephthalate, a polyolefin, and at least one compatibilizer;
intermixing polyethyleneimine, polyvinyl alcohol, and water to form a solution;
applying the solution to at least one surface of the flat sheet;
drying the applied solution to form a barrier coating on the flat sheet;
heating the coated flat sheet; and
thermoforming the heated coated flat sheet to create a packaging structure defining at least one cavity,
wherein the barrier coating remains adhered to the polymeric alloy blend during the thermoforming and provides oxygen barrier properties to the packaging structure.