IP Library Patent Application 11939315
Patent Application
App. No. 11/939,315

Absorbent Composites and Absorbent Articles Containing Same

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Patent No.
US None
App. No.
11/939,315
Abstract

When a superabsorbent material is to be incorporated into an absorbent composite in a relatively high concentration, it is necessary to carefully choose the superabsorbent material. Properties of the superabsorbent material to be considered are total Absorbent Capacity, resistance to Deformation Under Load, the ability of the superabsorbent material to absorb while under a restraining force, and the ability of the superabsorbent material to wick fluids away from the insult area. By quantifying these characteristics of a superabsorbent material, Applicants are able to predict which superabsorbent materials are suited for use in absorbent composites comprising a relatively high concentration of superabsorbent material.

Claims (30)

1 . An absorbent composite comprising a matrix of fibers and superabsorbent material, the superabsorbent material being capable of absorbing or gelling at least 10 times its weight, and being a hydrogel-forming polymer selected from the group consisting of alkali metal salts of poly(acrylic acid), poly(methacrylic acid), copolymers of acrylic and methacrylic acid with acrylamide, vinyl alcohol, acrylic esters, vinyl pyrrolidone, vinyl sulfonic acids, vinyl acetate, vinyl morpholinone and vinyl ethers; hydrolyzed acrylonitrile grafted starch; acrylic acid grafted starch; malefic anhydride copolymers with ethylene, isobutylene, styrene and vinyl ethers; polysaccharides selected from the group of carboxymethyl starch, carboxymethyl cellulose, methyl cellulose, and hydroxypropyl cellulose; poly(acrylamides); poly(vinyl pyrrolidone); poly(vinyl morpholinone); poly(vinyl pyridine); and copolymers and mixtures of any thereof, the composite having at least 30 weight percent superabsorbent material based on the combined weight of the fibers and the superabsorbent material, the superabsorbent material having an Absorbency Under Load, as determined by the ability of the superabsorbent to absorb 17 grams or more of an aqueous 0.9 weight percent NaCl solution per gram of superabsorbent, while under a load of 0.57 pounds per square inch as determined by the test method described herein.

2 . The absorbent composite of claim 1 having a Wicking Index of 10 centimeters or greater, as determined by the test method described herein.

3 . The absorbent composite of claim 1 having 40 weight percent or more superabsorbent material based on the combined weight of the fibers and the superabsorbent material

4 . The absorbent composite of claim 1 having 50 weight percent or more superabsorbent material based on the combined weight of the fibers and the superabsorbent material.

5 . The absorbent composite of claim 1 , wherein the absorbent composite has a Wicking Index of from 10 to 19 centimeters as determined by the test method described herein.

6 . The absorbent composite of claim 5 , wherein the Wicking Index of the absorbent composite is 12 to 19 centimeters as determined by the test method described herein.

7 . The absorbent composite of claim 1 , wherein the superabsorbent material having a Wicking Parameter of 700 or greater as determined by the test method described herein.

8 . An absorbent composite comprising a matrix of fibers and superabsorbent material, the superabsorbent material being capable of absorbing or gelling at least 10 times its weight, and being a hydrogel-forming polymer selected from the group consisting of alkali metal salts of poly(acrylic acid), poly(methacrylic acid), copolymers of acrylic and methacrylic acid with acrylamide, vinyl alcohol, acrylic esters, vinyl pyrrolidone, vinyl sulfonic acids, vinyl acetate, vinyl morpholinone and vinyl ethers; hydrolyzed acrylonitrile grafted starch; acrylic acid grafted starch; malefic anhydride copolymers with ethylene, isobutylene, styrene and vinyl ethers; polysaccharides selected from the group of carboxymethyl starch, carboxymethyl cellulose, methyl cellulose, and hydroxypropyl cellulose; poly(acrylamides); poly(vinyl pyrrolidone); poly(vinyl morpholinone); poly(vinyl pyridine); and copolymers and mixtures of any thereof, wherein the absorbent composite has at least 30 weight percent superabsorbent material based on the combined weight of the fibers and the superabsorbent material, the superabsorbent material having a Wicking Parameter of 700 or greater as determined by the test method described herein.

9 . The absorbent composite of claim 8 , wherein the superabsorbent material has an Absorbency Under Load, as determined by the ability of the superabsorbent to absorb 17 grams or more of an aqueous 0.9 weight percent NaCl solution per gram of superabsorbent while under a load of 0.57 pounds per square inch as determined by the test method described herein.

10 . The absorbent composite of claim 8 , wherein the superabsorbent material has an Absorbency Under Load, as determined by the ability of the superabsorbent to absorb 20 grams or more of an aqueous 0.9 weight percent NaCl solution per gram of superabsorbent while under a load of 0.57 pounds per square inch as determined by the test method described herein.

11 . The absorbent composite of claim 8 , wherein the superabsorbent material has an Absorbency Under Load, as determined by the ability of the superabsorbent to absorb 17 grams or more of an aqueous 0.9 weight percent NaCl solution per gram of superabsorbent while under a load of 0.57 pounds per square inch and a Wicking Index of 10 centimeters or greater as determined by the test method described herein.

12 . The absorbent composite of claim 11 , wherein the superabsorbent material has a Wicking Index of 15 centimeters or greater as determined by the test method described herein.

13 . An absorbent composite comprising a matrix of fibers and superabsorbent material, the superabsorbent material being capable of absorbing or gelling at least 10 times its weight, and being a hydrogel-forming polymer selected from the group consisting of alkali metal salts of poly(acrylic acid), poly(methacrylic acid), copolymers of acrylic and methacrylic acid with acrylamide, vinyl alcohol, acrylic esters, vinyl pyrrolidone, vinyl sulfonic acids, vinyl acetate, vinyl morpholinone and vinyl ethers; hydrolyzed acrylonitrile grafted starch; acrylic acid grafted starch; malefic anhydride copolymers with ethylene, isobutylene, styrene and vinyl ethers; polysaccharides selected from the group of carboxymethyl starch, carboxymethyl cellulose, methyl cellulose, and hydroxypropyl cellulose; poly(acrylamides); poly(vinyl pyrrolidone); poly(vinyl morpholinone); poly(vinyl pyridine); and copolymers and mixtures of any thereof, wherein the absorbent composite has at least 50 weight percent superabsorbent material based on the combined weight of the fibers, the superabsorbent material having a Wicking Parameter of 700 or greater as determined by the test method described herein, and Absorbency Under Load, as determined by the ability of the superabsorbent to absorb 17 grams or more of an aqueous 0.9 weight percent NaCl solution per gram of superabsorbent while under a load of 0.57 pounds per square inch, and a Wicking Index of 10 centimeters or greater as determined by the test method described herein.

14 . The absorbent composite of claim 13 , wherein the Wicking Parameter is 800 or greater as determined by the test methods described herein.

15 . An absorbent article comprising a liquid permeable facing material, a liquid-impermeable backing material, and an absorbent composite according to claim 1 sandwiched between the facing material and the backing material.

16 . The absorbent article of claim 15 , the article being selected from a disposable diaper, a training pant, an incontinence garment, a bed pad.

17 . The absorbent composite of claim 13 , wherein the superabsorbent material has a Deformation Under Load of about 0.60 millimeters or less.

18 . An absorbent composite comprising a matrix of fibers and superabsorbent material, the superabsorbent material being capable of absorbing or gelling at least 10 times its weight, and being a hydrogel-forming polymer selected from the group consisting of alkali metal salts of poly(acrylic acid), poly(methacrylic acid), copolymers of acrylic and methacrylic acid with acrylamide, vinyl alcohol, acrylic esters, vinyl pyrrolidone, vinyl sulfonic acids, vinyl acetate, vinyl morpholinone and vinyl ethers; hydrolyzed acrylonitrile grafted starch; acrylic acid grafted starch; malefic anhydride copolymers with ethylene, isobutylene, styrene and vinyl ethers; polysaccharides selected from the group of carboxymethyl starch, carboxymethyl cellulose, methyl cellulose, and hydroxypropyl cellulose; poly(acrylamides); poly(vinyl pyrrolidone); poly(vinyl morpholinone); poly(vinyl pyridine); and copolymers and mixtures of any thereof, the composite having at least 30 weight percent superabsorbent material based on the combined weight of the fibers and the superabsorbent material, the superabsorbent material having an Absorbency Under Load, as determined by the ability of the superabsorbent to absorb 17 grams or more of an aqueous 0.9 weight percent NaCl solution per gram of superabsorbent, while under a load of 0.57 pounds per square inch, and a Wicking Index of 10 centimeters or greater, as determined by the test method described herein.

19 . The absorbent composite of claim 18 having 40 weight percent or more superabsorbent material based on the combined weight of the fibers and the superabsorbent material

20 . The absorbent composite of claim 18 having 50 weight percent or more superabsorbent material based on the combined weight of the fibers and the superabsorbent material.

21 . The absorbent composite of claim 18 , wherein the absorbent composite has a Wicking Index of from 10 to 19 centimeters as determined by the test method described herein.

22 . An absorbent article comprising a liquid permeable facing material, a liquid-impermeable backing material, and an absorbent composite according to claim 18 sandwiched between the facing material and the backing material.

23 . The absorbent article of claim 21 , the article being selected from a disposable diaper, a training pant, an incontinence garment, a bed pad.

24 . An absorbent composite comprising a matrix of fibers and superabsorbent material, the superabsorbent material being capable of absorbing or gelling at least 10 times its weight, and being a hydrogel-forming polymer selected from the group consisting of alkali metal salts of poly(acrylic acid), poly(methacrylic acid), copolymers of acrylic and methacrylic acid with acrylamide, vinyl alcohol, acrylic esters, vinyl pyrrolidone, vinyl sulfonic acids, vinyl acetate, vinyl morpholinone and vinyl ethers; hydrolyzed acrylonitrile grafted starch; acrylic acid grafted starch; malefic anhydride copolymers with ethylene, isobutylene, styrene and vinyl ethers; polysaccharides selected from the group of carboxymethyl starch, carboxymethyl cellulose, methyl cellulose, and hydroxypropyl cellulose; poly(acrylamides); poly(vinyl pyrrolidone); poly(vinyl morpholinone); poly(vinyl pyridine); and copolymers and mixtures of any thereof;

the absorbent composite having at least 50 weight percent superabsorbent material based on the combined weight of the fibers, wherein the average thickness of the absorbent composite is less than about 0.2 inch, wherein the superabsorbent material is nonuniformly distributed within the absorbent composite in a discrete layer, and

wherein the superabsorbent material has an Absorbency Under Load, as determined by the ability of the superabsorbent to absorb 17 grams or more of an aqueous 0.9 weight percent NaCl solution per gram of superabsorbent, while under a load of 0.57 pounds per square inch as determined by the test method described herein.

25 . The absorbent composite of claim 24 , wherein the average thickness of the composite is less than 0.15 inch as determined by the test method describer herein.

26 . The absorbent composite of claim 24 , wherein the absorbent composite has a Wicking Index of from 10 to 19 centimeters as determined by the test method described herein.

27 . The absorbent composite of claim 24 , wherein the superabsorbent material has a Wicking Index of 15 centimeters or greater as determined by the test method described herein.

28 . The absorbent composite of claim 24 , wherein the Wicking Parameter is 700 or greater as determined by the test methods described herein.

Assignments (1)
NAME CHANGE Recorded Feb 3, 2015
From: KIMBERLY-CLARK WORLDWIDE, INC.
To: KIMBERLY-CLARK WORLDWIDE, INC.
Reel/Frame 034880/0634 →