Claims
- 1. An absorbent structure comprising the following three layers in sequence and bound to each other with no additional layers between them:a) a fluid intake layer; b) a flexible absorbent binder layer; and c) a support layer; wherein the flexible absorbent binder layer is formed between and bound to the fluid intake layer and the support layer by crosslinking an absorbent binder composition including a water-soluble ionic polymer capable of sufficient non-radiative crosslinking within about 10 minutes at a temperature of about 120° C. or less, to reach an absorbent capacity of at least one gram per gram using the centrifuge retention capacity test, while the absorbent binder composition is in contact with fluid intake layer and the support layer.
- 2. A diaper comprising the absorbent structure of claim 1.
- 3. A training pant comprising the absorbent structure of claim 1.
- 4. A diaper pant comprising the absorbent structure of claim 1.
- 5. A feminine hygiene article comprising the absorbent structure of claim 1.
- 6. An adult incontinence garment comprising the absorbent structure of claim 1.
- 7. A swimwear garment comprising the absorbent structure of claim 1.
- 8. A medical absorbent article comprising the absorbent structure of claim 1.
- 9. The absorbent article of claim 1, wherein the flexible absorbent binder is formed by crosslinking an absorbent binder composition including about 15 to about 99.9% by mass of monoethylenically unsaturated polymer units, about 0.1 to about 20% by mass polyacrylate ester units selected from the group consisting of acrylate and methacrylate units that include an alkoxysilane functionality, and zero to about 75% by mass of units selected from the group consisting of polyolefin glycol and polyolefin oxide units.
- 10. The absorbent structure of claim 1, wherein the flexible absorbent binder layer is formed by crosslinking an absorbent binder composition including about 25 to about 20% by mass of monoethylenically unsaturated polymer units, about 0.5 to about 15% by mass polyacrylate ester units that include an alkoxysilane functionality, and about 10 to about 60% by mass polymer units, and combinations thereof.
- 11. The absorbent structure of claim 1, wherein the fluid intake layer comprises a bodyside liner.
- 12. The absorbent structure of claim 1, wherein the fluid intake layer comprises a surge/transfer layer.
- 13. The absorbent structure of claim 1, wherein the fluid intake layer comprises a material selected from the group consisting of apertured films, spunbond webs, staple fiber webs, open-celled foams, cellulose webs and combinations thereof.
- 14. The absorbent structure of claim 1, wherein the fluid intake layer comprises a reticulated foam.
- 15. The absorbent structure of claim 1, wherein the support layer comprises an outer cover.
- 16. The absorbent structure of claim 1, wherein the support layer comprises a spacer.
- 17. The absorbent structure of claim 1, wherein the support layer comprises a material selected from polyolefin films, breathable polyolefin films including a polyolefin blended with a particulate filter, breathable film/nonwoven web laminates, and combinations thereof.
- 18. An absorbent stsorbent comprising the following three layers in sequence and bound to each other:a) a fluid intake layer; b) a flexible absorbent binder layer; and c) a support layer; wherein the flexible absorbent binder layer is formed between the fluid intake layer and the support layer by crosslinking an absorbent binder composition including a water-soluble ionic polymer capable of sufficient non-radiative crosslinking within about 10 minutes at a temperature of about 120° C. or less, to reach an absorbent capacity of at least one gram per gram using the centrifuge retention capacity test, and is formed by crosslinking an absorbent binder composition including about 25 to about 90% by mass of monoethylenically unsaturated polymer units, about 0.5 to about 15% by mass polyarcrylate ester units that include an alkoxysilane funtionality, and about 10 to about 60% by mass polymer units selected from the group consisting of polyolefin glycol units, polyolefin oxide units, and combinatiions thereof.
RELATED APPLICATIONS
This application is a continuation-in-part of U.S. patent application Ser. No. 10/206,883, filed on 26 July 2002, U.S. Pat. No. 6,737,491 the disclosure of which is incorporated by reference. This application is also a continuation-in-part of U.S. patent application Ser. No. 10/324,478, filed 20 Dec. 2002, pending the disclosure of which is incorporated by reference.
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Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
10/206883 |
Jul 2002 |
US |
Child |
10/427808 |
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US |
Parent |
10/324478 |
Dec 2002 |
US |
Child |
10/206883 |
|
US |