SLOW RECOVERY POLYURETHANE FOAM
A method of making a bio-based, slow recovery polyurethane foam includes preparing an aqueous mixture that includes a resin and an additive. The resin, the additive, or both, can be bio-based. The method can include combining a hydrophilic polyurethane prepolymer with the aqueous mixture. The method can include chemically reacting the hydrophilic polyurethane prepolymer with the aqueous mixture to create a foam mixture. Chemically reacting the hydrophilic polyurethane prepolymer with the aqueous mixture may generate a foaming agent that includes carbon dioxide.
1 . A method of making a bio-based, slow recovery polyurethane foam, the method comprising:
preparing an aqueous mixture that comprises a resin and an additive, wherein the resin, the additive, or both, are bio-based;
combining a hydrophilic polyurethane prepolymer with the aqueous mixture; and
chemically reacting the hydrophilic polyurethane prepolymer with the aqueous mixture to create a foam mixture, wherein chemically reacting the hydrophilic polyurethane prepolymer with the aqueous mixture generates a foaming agent comprising carbon dioxide.
2 . The method of claim 1 , wherein the bio-based, slow recovery polyurethane foam has a concentration of bio-based material that is at least twenty-five percent.
3 . The method of claim 1 , wherein the additive comprises at least a forty percent concentration of a bio-based additive.
4 . The method of claim 1 , wherein the additive comprises a natural wax, wherein the natural wax comprises a carnauba wax, a bio-based polyethylene wax, a bio-based polypropylene wax, a paraffin, an amide derived from fatty acids, a polyamide derived from fatty acids, a fatty acid, a fatty alcohol, a triglyceride, an animal fat, or a combination thereof, and
wherein a concentration of the natural wax within the aqueous mixture is at least 0.5 percent and up to 20 percent.
5 . The method of claim 1 , wherein the additive comprises a rosin, a rosin ester, or a combination thereof, and
wherein a concentration of the rosin or the rosin ester, or a combination thereof within the aqueous mixture is at least 5 percent and up to 60 percent.
6 . The method of claim 5 , wherein the additive comprises a natural wax, wherein the natural wax comprises a carnauba wax, a bio-based polyethylene wax, a bio-based polypropylene wax, a paraffin, an amide derived from fatty acids, a polyamide derived from fatty acids, a fatty acid, a fatty alcohol, a triglyceride, an animal fat, or a combination thereof, and
wherein a concentration of the natural wax within the aqueous mixture is at least 0.5 percent and up to 20 percent.
7 . The method of claim 1 , wherein the resin comprises a bio-based resin.
8 . The method of claim 1 , wherein the resin comprises an acrylic resin, an alkyd resin, an ethylene-vinyl acetate copolymer resin, a natural rubber resin, or a combination thereof.
9 . The method of claim 1 , wherein the resin comprises an ethylene-vinyl acetate copolymer resin that comprises:
a bio-based ethylene monomer; and
a vinyl-acetate synthesized from a bio-based acetic acid.
10 . The method of claim 1 , wherein the resin comprises an acrylic resin, wherein the acrylic resin comprises an alkyl methacrylate monomer and/or an alkyl acrylate monomer.
11 . The method of claim 1 , wherein the hydrophilic polyurethane prepolymer comprises a chemical reaction product of:
an aromatic isocyanate, an aliphatic isocyanate, or a combination thereof; and
at least one polyol comprising polyethylene glycol.
12 . The method of claim 1 , wherein the hydrophilic polyurethane prepolymer comprises a chemically reactive isocyanate end group in the molecular structure.
13 . The method of claim 12 , wherein the aqueous mixture comprises water, and wherein chemically reacting the hydrophilic polyurethane prepolymer with the aqueous mixture comprises chemically reacting the water of the aqueous mixture with the chemically reactive isocyanate end group of the hydrophilic polyurethane prepolymer.
14 . The method of claim 1 , wherein a ratio between (i) the hydrophilic polyurethane prepolymer and (ii) a combination of the resin and the additive is at least 1:0.5 and up to 1:2.
15 . The method of claim 1 , wherein the additive comprises at least one of a rosin, a rosin ester, a natural wax, or a combination thereof.
16 . The method of claim 1 , wherein chemically reacting the hydrophilic polyurethane prepolymer with the aqueous mixture occurs within a mold configured to form an earplug, and wherein the method further comprises curing the foam mixture to form the earplug, wherein the earplug is squeezable by an individual's hand, and wherein the earplug has a time lag to recover to ninety percent of an original volume of at least ten seconds.
17 . The method of claim 1 , wherein the additive comprises a water insoluble filler, the water insoluble filler comprising starch, cellulose, lignin, or a combination thereof.
18 . A bio-based, slow recovery polyurethane foam comprising:
a hydrophilic polyurethane prepolymer;
a resin; and
an additive, wherein the resin, the additive, or both, are bio-based.
19 . The bio-based, slow recovery polyurethane foam of claim 18 , wherein the bio-based, slow recovery polyurethane foam has a concentration of at least twenty-five percent of bio-based materials.
20 . The bio-based, slow recovery polyurethane foam of claim 18 , wherein the hydrophilic polyurethane prepolymer is bio-based.