IP Library Patent Application 14594253
Patent Application
App. No. 14/594,253

THERMOSTATIC PACKAGING AND METHODS FOR THEIR PREPARATION AND USE

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Patent No.
US None
App. No.
14/594,253
Abstract

Thermostatic packaging materials, and methods for making and using the materials are disclosed. The materials may include phase change materials that are covalently bound with the packaging material to avoid any leaching of liquefied phase change materials. The phase change materials may be copolymerized with hydrogels to provide an absorbent thermostatic material.

Claims (55)

1 . A thermostatic packaging comprising:

a packaging material; and

at least one phase change material covalently bonded with the packaging material.

2 . The thermostatic packaging of claim 1 , wherein:

the phase change material comprises at least one block of polymerized phase change material; and

the at least one block of polymerized phase change material is grafted onto the packaging material.

3 . The thermostatic packaging of claim 2 , wherein the packaging material comprises at least one of a polymer and a paper.

4 . The thermostatic packaging of claim 2 , wherein the phase change material is derived from monomers of phase change material having a polymerizable moiety selected from acrylate, methacrylate, epoxy, vinyl, or any combination thereof.

5 . The thermostatic packaging of claim 1 , wherein:

the packaging material comprises cellulose, polyethylene, polypropylene, poly(ethylene-vinyl acetate), polystyrene, polyvinyl chloride, ionomer, polyethylene terephthalate, polyvinyl acetate, polycarbonates, polyamide, polyvinyl alcohol, polyvinylidene chloride, polyacrylate, polyurethane, protein, peptide, silk, lignocellulose, polyimide, epoxy resin or any combination thereof; and

the phase change material comprises C 6 to C 50 alkyl acrylate, C 6 to C 50 alkyl methacrylate, or any combination thereof.

6 . The thermostatic packaging of claim 1 , wherein the packaging material comprises a copolymer of monomers of the phase change material and at least one additional monomer.

7 . The thermostatic packaging of claim 6 , wherein the monomers of the phase change material comprise at least one polymerizable moiety selected from acrylate, methacrylate, epoxy, vinyl, or any combination thereof.

8 . The thermostatic packaging of claim 6 , wherein:

the monomers of the phase change material comprise C6 to C50 alkyl acrylate, C6 to C50 alkyl methacrylate, or any combination thereof; and

the at least one additional monomer comprises a monomer of cellulose, polyethylene, polypropylene, poly(ethylene-vinyl acetate), polystyrene, polyvinyl chloride, ionomer, polyethylene terephthalate, polyvinyl acetate, polycarbonate, polyamide, polyvinyl alcohol, polyvinylidene chloride, polyacrylate, polyurethane, protein, peptide, silk, lignocellulose, polyimide, epoxy resin, or any combination thereof.

9 . The thermostatic packaging of claim 6 , wherein the at least one additional monomer comprise a hydrogel.

10 . The thermostatic packaging of claim 9 , wherein the packaging material comprises a block copolymer of polymerized monomers of the phase change material and polymerized monomers of the hydrogel.

11 . The thermostatic packaging of claim 10 , wherein the monomers of the phase change material comprise a polymerizable moiety selected from acrylate, methacrylate, epoxy, vinyl, or any combination thereof.

12 . The thermostatic packaging of claim 10 , wherein:

the monomers of the phase change material comprise C6 to C50 methacrylic fatty acid, C6 to C50 acrylic fatty acid, C6 to C50 vinyl fatty acid, or any combination thereof; and

the monomers of the hydrogel comprise acrylic acid, C2-C50 alkyl acrylate, C2-C50 alkyl methacrylate, C2-C50 alkyl-acrylamide, hydrophilic urethane, or any combination thereof.

13 . The thermostatic packaging of claim 1 , wherein the packaging is configured for containing a food or drink item.

14 . An absorbent packaging insert comprising at least one thermostatic hydrogel copolymer.

15 . The insert of claim 14 , wherein the thermostatic hydrogel copolymer comprises at least one phase change moiety copolymerized with at least one hydrogel moiety.

16 . The insert of claim 14 , wherein the phase change moiety is derived from a phase change monomer having a polymerizable functional group selected from acrylate, methacrylate, epoxy, vinyl, or any combination thereof.

17 . The insert of claim 14 , wherein:

the phase change moiety is derived from a phase change monomer comprising C6 to C50 methacrylic fatty acid, C6 to C50 acrylic fatty acid, C6 to C50 vinyl fatty acid, or any combination thereof; and

the hydrogel moiety is derived from a hydrogel monomer comprising acrylic acid, C2-C50 alkyl acrylate, C2-C50 alkyl methacrylate, C2-C50 alkyl-acrylamide, hydrophilic urethane, or any combination thereof.

18 . The insert of claim 14 , wherein the insert is a pad of fibers of the thermostatic hydrogel copolymer.

19 . The insert of claim 18 , wherein the fibers of the thermostatic hydrogel copolymer are at least one of co-woven with fibers of at least one additional polymer, and blended with fibers of at least one additional polymer, wherein the at least one additional monomer is selected from the group consisting of polyester, polyethylene, polypropylene, polypropylene polyethylene co-polymer, or any combination thereof.

20 . The insert of claim 18 , wherein the fibers of the thermostatic hydrogel copolymer are at least one of co-woven with at least one additional absorbent material, and blended with at least one additional absorbent material, wherein the at least one additional absorbent material is selected from the group consisting of tissue wrap, tissue laminate, sponge material, foam polymeric material, superabsorbent polymer, or any combination thereof.

21 . The insert of claim 20 , wherein the superabsorbent polymers comprise starch, cellulose, cellulosic material, poly(vinyl alcohol), poly(ethylene) oxide, cross-linked poly(acrylic acid), sodium salt of cross-linked poly(acrylic acid)/polyalcohol, sodium carboxy methyl cellulose cross-linked with an aluminum compound, superabsorbent composite of superabsorbent polymer granules adhered with at least one of binder and plasticizer, airlaid material incorporating at least one of superabsorbent fibrous structures and superabsorbent foam structure, nonwoven fabric structure that contain at least one of superabsorbent particles and superabsorbent fiber, absorbent structure containing superabsorbent material formed in-situ, absorbent structure containing superabsorbent material cross-linked in-situ, absorbent gelling material, or any combination thereof.

22 . The insert of claim 20 , further comprising at least one of:

at least one additive selected from binder fibers, bactericidal agents, clays, diatomaceous earth, inorganic salts, polymeric flocculating agents, carboxymethylcellulose, starch, dextrose, gelatin, xanthan gum, guar gum, and alginates, inorganic buffers, superabsorbent polymers in the form of in the form of a fiber, powder, flake, particle, granule, acrylic superabsorbent compounds, polypropylene/polyethylene binder fibers, polyester/polyethylene binder fibers, polyester/polypropylene fibers binder fibers, or combinations thereof; and

at least one biocidal agent selected from broad spectrum antibiotics, penicillin, sorbic acid, alkyl substituted quaternary ammonium compounds, aryl substituted quaternary ammonium compounds, chlorine containing compounds, iodine compounds, phenol, phenol derivatives, dehydroactic acid, peroxygen compounds, potassium persulfate, peracetic acid, sodium perborate, or combinations thereof.

23 . The insert of claim 14 , wherein the insert is an insert for a packaging configured for containing a food item.

24 . A method for producing a thermostatic packaging material, the method comprising covalently bonding at least one phase change material with a packaging material.

25 . The method of claim 24 , wherein covalently bonding at least one phase change material comprises grafting blocks of polymerized phase change material onto the packaging material.

26 . The method of claim 24 , wherein covalently bonding at least one phase change material comprises grafting the phase change material to a paper.

27 . The method of claim 24 wherein the phase change material comprises at least one polymerizable moiety selected from acrylate, methacrylate, epoxy, vinyl, or combinations thereof.

28 . The method of claim 24 , wherein the phase change material comprises C 6 to C 50 alkyl acrylate, C 6 to C 50 alkyl methacrylate, or combinations thereof.

29 . The method of claim 24 , wherein the method further comprises:

producing fibers of the block copolymers; and

forming the fibers into an absorbent pad.

30 . The method of claim 29 , further comprising at least one of:

incorporating fibers of at least one additional polymer into the absorbent pad;

incorporating at least one additional absorbent material into the absorbent pad;

incorporating at least one additive into the absorbent pad; and

incorporating at least one biocidal agent into the absorbent pad.

31 . The method of claim 30 , wherein:

the at least one additional polymer comprises polyesters, polyethylene, polypropylene, polypropylene polyethylene co-polymers, or combinations thereof;

the at least one additional absorbent material comprises at least one of tissue wraps, tissue laminates, sponge materials, foams, polymeric material, and superabsorbent polymers selected from the group consisting of starch, cellulose, cellulosic materials, poly(vinyl alcohol), poly(ethylene) oxide, cross-linked poly(acrylic acid), sodium salts of cross-linked poly(acrylic acid)/polyalcohol, sodium carboxy methyl cellulose cross-linked with an aluminum compound, superabsorbent composites of superabsorbent polymer granules adhered with at least one of binder and plasticizers, airlaid materials incorporating at least one of superabsorbent fibrous structures and superabsorbent foam structures, nonwoven fabric structures that contain at least one of superabsorbent particles and superabsorbent fibers, absorbent structures containing superabsorbent material formed in-situ, absorbent structures containing superabsorbent material cross-linked in-situ, absorbent gelling materials, or combinations thereof;

the at least one additive is selected from the group consisting of binder fibers, bactericidal agents, clays, diatomaceous earth, inorganic salts, polymeric flocculating agents, carboxymethylcellulose, starch, dextrose, gelatin, xanthan gum, guar gum, and alginates, inorganic buffers, superabsorbent polymers in the form of in the form of a fiber, powder, flake, particle, granule, acrylic superabsorbent compounds, polypropylene/polyethylene binder fibers, polyester/polyethylene binder fibers, polyester/polypropylene fibers binder fibers, or combinations thereof; and

the at least one biocidal agent comprises broad spectrum antibiotics, penicillin, sorbic acid, alkyl substituted quaternary ammonium compounds, aryl substituted quaternary ammonium compounds, chlorine containing compounds, iodine compounds, phenol, phenol derivatives, dehydroactic acid, peroxygen compounds, potassium persulfate, peracetic acid, sodium perborate, or combinations thereof.

Assignments (3)
RELEASE OF SECURITY INTEREST IN PATENTS, RECORDED ON JANUARY 29, 2019 AT REEL 048373 FRAME 0217 Recorded Sep 22, 2025
From: CRESTLINE DIRECT FINANCE, L.P., AS COLLATERAL AGENT
To: EMPIRE TECHNOLOGY DEVELOPMENT LLC
Reel/Frame 072936/0464 →
SECURITY INTEREST Recorded Jan 29, 2019
From: EMPIRE TECHNOLOGY DEVELOPMENT LLC
To: CRESTLINE DIRECT FINANCE, L.P.
Reel/Frame 048373/0217 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2015
From: GU, YANSONG
To: EMPIRE TECHNOLOGY DEVELOPMENT LLC
Reel/Frame 034680/0225 →