Claims
- 1. A foldable composite integral food wrap, comprising: a foldable sheet having a water-vapor-impermeable polymeric layer disposed between a printable layer and an absorbent layer; wherein at least one of said printable layer and said absorbent layer is discontinuously bonded to said polymeric layer at spaced locations, so that at least one of said printable layer and said absorbent layer forms air pockets with said polymeric layer at locations between the bond locations, said absorbent layer being fibrous and having a foraminous hydrophobic water-vapor-permeable pellicle on at least those fibers of the face of said absorbent layer opposite to said water-vapor-impermeable polymeric layer, said absorbent layer comprising the reaction product of in-situ cross-linking of an absorbent water soluble polymer, said reaction product being water insoluble and exhibiting a water-retention capacity of at least about 10 grams of water per gram of reaction product, the amount of reaction product present on an area basis being sufficient to absorb at least about 0.001 grams of water per square centimeter, the total amount of reaction product in said sheet being sufficient to absorb at least 1 gram of water.
- 2. The composite wrap according to claim 1, wherein said reaction product comprises carboxyl groups as part of a coating on the water insoluble polymeric fibers in an amount sufficient to enable said absorbent layer to absorb at least 10 grams of moisture per gram of coating, and said foraminous hydrophobic water-vapor-permeable pellicle comprises the residue of an application of an aqueous mixture of a hydrophobe precursor selected from the group consisting of precursors represented by the structural formulae I-III below: ##STR3## wherein R.sub.1-5 are long chain alkyl groups having a carbon length of 12 or greater, and R.sub.6 and R.sub.7 are lower alkyl groups having a carbon length of from 1 to 4.
- 3. The composite wrap according to claim 2, wherein R.sub.1-5 are at least C.sub.16 groups and R.sub.6-7 are methyl, ethyl or propyl groups.
- 4. The composite wrap according to claim 2, wherein R.sub.1-2 are C.sub.18 groups, R.sub.3-4 are C.sub.16-18 groups, R.sub.5 is C.sub.18-19 and R.sub.6-7 are isopropyl groups.
- 5. The composite wrap according to claim 2, wherein air pockets are formed on both sides of said water-vapor-impermeable polymer layer and wherein said absorbent layer comprises the reaction product of a water soluble anionic polymeric polyelectrolyte and a polyvalent metal cation having a valence of at least 3, said reaction product being water insoluble.
- 6. The composite wrap according to claim 5, wherein said polyelectrolyte is a partially neutralized polyacrylic acid.
- 7. The composite wrap according to claim 6, wherein said cation is chosen from the group consisting of zirconium, aluminum, iron, titanium and mixtures thereof.
- 8. The composite wrap according to claim 1, wherein the water-vapor-impermeable polymer layer is polyethylene, said absorbent fibrous layer includes the reaction product of a water soluble anionic polymeric polyelectrolyte and a polyvalent metal cation having a valence of at least 3, said reaction product being water insoluble; said polyelectrolyte being a partially neutralized polyacrylic acid; said cation being chosen from the group consisting of zirconium, aluminum, iron, titanium and mixtures thereof; and said foraminous hydrophobic water-vapor-permeable pellicle comprises the residue of an application of an aqueous mixture of a hydrophobe precursor selected from the group consisting of precursors represented by the structural formulae I-III below: ##STR4## wherein R.sub.1-5 are long chain alkyl groups having a carbon length of 12 or greater, and R.sub.6 and R.sub.7 are lower alkyl groups having a carbon length of from 1 to 4.
- 9. A foldable composite integral food wrap, comprising: a foldable sheet having a water-vapor-impermeable polymeric layer disposed between a printable layer and an absorbent layer; wherein at least one of said printable layer and said absorbent layer is discontinuously bonded to said polymeric layer at spaced locations, so that at least one of said printable layer and said absorbent layer forms air pockets with said polymeric layer at locations between the bond locations, said absorbent layer being fibrous and having a foraminous hydrophobic water-vapor-permeable pellicle on at least those fibers of the face of the absorbent layer opposite to said water-vapor-impermeable polymeric layer, said pellicle having been formed by an application of an aqueous mixture of a hydrophobe precursor selected from the group consisting of precursors represented by the structural formulae I-III below: ##STR5## wherein R.sub.1-5 are long chain alkyl groups having a carbon length of 12 or greater, and R.sub.6 and R.sub.7 are lower alkyl groups having a carbon length of from 1 to 4.
- 10. The composite wrap according to claim 9, wherein said absorbent layer further comprises the reaction product of in-situ cross-linking of absorbent water soluble polymeric polyelectrolyte, said reaction product being water insoluble and exhibiting a water-retention capacity of at least about 10 grams of water per gram of reaction product, the amount of reaction product present on an area basis being sufficient to absorb at least about 0.001 grams of water per square centimeter, the total amount of reaction product in said sheet being sufficient to absorb at least 1 gram of water.
- 11. The composite wrap according to claim 9, wherein R.sub.1-5 are at least C.sub.16 groups and R.sub.6-7 are methyl, ethyl or propyl groups.
- 12. The composite wrap according to claim 9, wherein the water-vapor-impermeable polymer layer is polyethylene and wherein R.sub.1-2 are C.sub.18 groups, R.sub.3-4 are C.sub.16-18 groups, R.sub.5 is C.sub.18-19 and R.sub.6-7 are isopropyl groups.
- 13. The composite according to claim 9, wherein the water-vapor-impermeable polymer layer is polyethylene, said absorbent fibrous layer includes the reaction product of a water soluble anionic polymeric polyelectrolyte and a polyvalent metal cation having a valence of at least 3, said reaction product being water insoluble; said polyelectrolyte being a partially neutralized polyacrylic acid; said cation being chosen from the group consisting of zirconium, aluminum, iron, titanium and mixtures thereof; and wherein R.sub.1-5 are at least C.sub.16 groups and R.sub.6-7 are methyl, ethyl or propyl groups.
- 14. The composite wrap according to claim 13, wherein R.sub.1-2 are C.sub.18 groups, R.sub.3-4 are C.sub.16-18 groups, R.sub.5 is C.sub.18-19 and R.sub.6-7 are isopropyl groups.
- 15. A foldable composite integral food wrap, comprising: a foldable sheet having a water-vapor-impermeable polymeric layer disposed between a printable layer and an absorbent layer; wherein at least one of said printable layer and said absorbent layer is discontinuously bonded to said polymeric layer at spaced locations, so that at least one of said printable layer and said absorbent layer forms air pockets with said polymeric layer at locations between the bond locations, said absorbent layer having a moisture vapor permeable controlled absorbency surface on at least a portion of the face of the absorbent layer opposite to said water-vapor-impermeable polymeric layer, said controlled absorbency surface having a water absorption capability of less than 1 g/g, said absorbent layer comprising the reaction product of in-situ cross-linking of an absorbent water soluble polymer, said reaction product being water insoluble and exhibiting a water-retention capacity of at least about 10 grams of water per gram of reaction product, the amount of reaction product present on an area basis being sufficient to absorb at least about 0.001 grams of water per square centimeter, the total amount of reaction product in said sheet being sufficient to absorb at least 3 grams of water.
- 16. A foldable composite integral food wrap, comprising: a foldable sheet having a water-vapor-impermeable polymeric layer disposed between a printable layer and a fibrous absorbent layer; wherein at least one of said printable layer and said absorbent layer is discontinuously bonded to said polymeric layer at spaced locations, so that at least one of said printable layer and said absorbent layer forms air pockets with said polymeric layer at locations between the bond locations, wherein said absorbent layer has treated fibers therein, each treated fiber bearing a foraminous hydrophobic water-vapor-permeable pellicle, said treated fibers forming an area between said water-vapor-impermeable polymeric layer and the face of said absorbent layer opposite to said water-vapor-impermeable polymeric layer, said pellicle having been formed by application of an aqueous mixture of a hydrophobe precursor to the surface of a sheet of absorbent material.
- 17. The composite wrap according to claim 16, wherein said printable layer comprises a material selected from the group of materials consisting of machine finished, machine glazed papers and coated papers having fold retention and a basis weight ranging from 10 to 50 lbs/3,000 sq. ft.
- 18. The composite wrap according to claim 16, wherein said water-vapor impermeable polymeric layer comprises a material selected from the group of polymers consisting of polyethylene, polyvinylidene chloride, ethylene acrylic acid copolymer, polypropylene, polyester, polyisobutylene, nylon, polymethylpentene, ethylene vinyl acetate and mixtures thereof.
- 19. The composite wrap according to claim 16, wherein said foraminous hydrophobic water-vapor-permeable pellicle comprises the residue of an application of an aqueous mixture of a hydrophobe precursor selected from the group consisting of precursors represented by the structural formulae I-III below: ##STR6## wherein R.sub.1-5 are long chain alkyl groups havinq a carbon length of 12 or greater, and R.sub.6 and R.sub.7 are lower alkyl groups having a carbon length of from 1 to 4.
- 20. The composite wrap according to claim 16 wherein said absorbent layer further comprises the reaction product of in-situ cross-linking of absorbent water soluble polymeric polyelectrolyte, said reaction product being water insoluble and exhibiting a water-retention capacity of at least about 10 grams of water per gram of reaction product, the amount of reaction product present on an area basis being sufficient to absorb at least about 0.001 grams of water per square centimeter, the total amount of reaction product in said sheet being sufficient to absorb at least 1 gram of water.
- 21. The composite wrap according to claim 19, wherein the water-vapor impermeable polymer layer is polyethylene and wherein R.sub.1-2 are C.sub.18 groups, R.sub.3-4 are C.sub.16-18 groups, R.sub.5 is C.sub.18-19 and R.sub.6-7 are isopropyl groups.
- 22. The composite wrap according to claim 19, wherein air pockets are formed on both sides of said water-vapor impermeable polymer layer and wherein R.sub.1-5 are at least C.sub.16 groups and R.sub.6-7 are methyl, ethyl or propyl groups.
- 23. The composite wrap according to claim 22, wherein said absorbent layer further comprises the reaction product of in-situ cross-linking of absorbent water soluble polymeric polyelectrolyte, said reaction product being water insoluble and exhibiting a water-retention capacity of at least about 10 grams of water per gram of reaction product, the amount of reaction product present on an area basis being sufficient to absorb at least about 0.001 grams of water per square centimeter, the total amount of reaction product in said sheet being sufficient to absorb at least 1 gram of water.
- 24. The composite wrap according to claim 16, wherein said water-vapor impermeable polymer layer is polyethylene, said absorbent layer includes the reaction product of a water soluble anionic polymeric polyelectrolyte and a polyvalent metal cation having a valence of at least 3, said reaction product being water insoluble; said polyelectrolyte being a partially neutralized polyacrylic acid; said cation being chosen from the group consisting of zirconium, aluminum, iron, titanium and mixtures thereof; and said foraminous hydrophobic water-vapor-permeable pellicle comprises the residue of an application of an aqueous mixture of a hydrophobe precursor selected from the group consisting of precursors represented by the structural formulae I-III below: ##STR7## wherein R.sub.1-5 are long chain alkyl groups havinq a carbon length of 12 or greater, and R.sub.6 and R.sub.7 are lower alkyl groups having a carbon length of from 1 to 4.
- 25. The composite wrap according to claim 24, wherein R.sub.1-5 are at least C.sub.16 groups and R.sub.6-7 are methyl, ethyl or propyl groups.
Parent Case Info
This application is a continuation, of application Ser. No. 08/158,171 filed Nov. 24, 1993, now abandoned, which is a continuation of application Ser. No. 07/714,928 filed Jun. 13, 1991, abandoned.
US Referenced Citations (14)
Continuations (2)
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Number |
Date |
Country |
Parent |
158171 |
Nov 1993 |
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Parent |
714928 |
Jun 1991 |
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