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US20020015846A1 - Multicomponent superabsorbent fibers - Google Patents

Multicomponent superabsorbent fibers
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Publication number
US20020015846A1
US20020015846A1US09/860,095US86009501AUS2002015846A1US 20020015846 A1US20020015846 A1US 20020015846A1US 86009501 AUS86009501 AUS 86009501AUS 2002015846 A1US2002015846 A1US 2002015846A1
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fiber
resin
poly
fibers
acidic
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US09/860,095
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US6376072B2 (en
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Samantha Evans
John Henderson
Michael Mitchell
Anthony Tomlin
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BASF SE
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BASF SE
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Priority claimed from US08/974,125external-prioritypatent/US6072101A/en
Priority claimed from US09/179,553external-prioritypatent/US6222091B1/en
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Priority to US09/860,095priorityCriticalpatent/US6376072B2/en
Publication of US20020015846A1publicationCriticalpatent/US20020015846A1/en
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Abstract

Multicomponent superabsorbent fibers are disclosed. The multicomponent fibers comprise at least one acidic water-absorbing resin and at least one basic water-absorbing resin. Each fiber contains at least one microdomain of the acidic resin in contact with, or in close proximity to, at least one microdomain of the basic resin. Blends of multicomponent superabsorbent fibers with particles of a second water-absorbing resin also are disclosed. Articles containing the multicomponent superabsorbent fibers also are disclosed.

Description

Claims (65)

What is claimed is:
1. A multicomponent superabsorbent fiber comprising: (a) a core comprising at least one basic water-absorbing resin and (b) a sheath comprising at least one acidic water-absorbing resin which forms a layer surrounding and in contact with the core.
2. The fiber ofclaim 1 wherein the basic resin comprises a strong basic resin, a weak basic resin, or a mixture thereof, and the acidic resin comprises a strong acidic resin, a weak acidic resin, or a mixture thereof.
3. The fiber ofclaim 1 having a weight ratio of acidic resin to basic resin of about 95:5 to about 5:95.
4. The fiber ofclaim 1 wherein the core contains at least one microdomain of at least one acidic resin.
5. The fiber ofclaim 1 wherein the sheath contains at least one microdomain of at least one basic resin.
6. The fiber ofclaim 1 wherein the fiber is elongated and acicular.
7. The fiber ofclaim 6 wherein the fiber is in the shape of a cylinder having a diameter of about 10 μm to about 1 mm and a length of about 1 mm to about 100 mm.
8. The fiber ofclaim 6 wherein the fiber is in the shape of a filament having a length diameter ratio of about 500 to about 10,000:1.
9. The fiber ofclaim 1 wherein the fiber is annealed at a temperature of about 65° C. to about 150° C. for about 20 minutes to about 16 hours.
10. The fiber ofclaim 1 wherein the fiber is surface crosslinked with up to about 10,000 ppm of a surface crosslinking agent.
11. The fiber ofclaim 10 wherein the surface crosslinking agent is selected from the group consisting of a polyhydroxy compound, a metal salt, a quaternary ammonium compound, a multifunctional epoxy compound, an alkylene carbonate, a polyaziridine, a haloepoxy, a polyamine, a polyisocyanate, and mixtures thereof.
12. The fiber ofclaim 1 wherein the basic resin has about 75% to 100% basic moieties present in a free base form.
13. The fiber ofclaim 1 wherein the basic resin is lightly crosslinked.
14. The fiber ofclaim 1 wherein the basic resin is selected from the group consisting of a poly(vinylamine), a poly(dialkylaminoalkyl (meth)acrylamide), a polymer prepared from the ester analog of an N-(dialkylamino(meth)acrylamide), a polyethylenimine, a poly(vinylguanidine), a poly(allylguanidine), a poly(allylamine), a poly(dimethyldialkylammonium hydroxide), a guanidine-modified polystyrene, a quaternized polystyrene, a quaternized poly(meth)acrylamide or ester analog thereof, poly(vinyl alcohol-co-vinylamine), and mixtures thereof.
15. The fiber ofclaim 1 wherein the acidic resin contains a plurality of carboxylic acid, sulfonic acid, sulfuric acid, phosphonic acid, or phosphoric acid groups, or a mixture thereof.
16. The fiber ofclaim 1 wherein the acidic resin has about 75% to 100% acid moieties present in the free acid form.
17. The fiber ofclaim 1 wherein the acidic resin is lightly crosslinked.
18. The fiber ofclaim 1 wherein the acidic resin is selected from the group consisting of polyacrylic acid, a hydrolyzed starch-acrylonitrile graft copolymer, a starch-acrylic acid graft copolymer, a saponified vinyl acetate-acrylic ester copolymer, a hydrolyzed acrylonitrile polymer, a hydrolyzed acrylamide copolymer, an ethylene-maleic anhydride copolymer, an isobutylene-maleic anhydride copolymer, a poly(vinylphosphonic acid), a poly(vinylsulfonic acid), a poly(vinylphosphoric acid), a poly(vinyl-sulfuric acid), a sulfonated polystyrene, a poly(aspartic acid), a poly(lactic acid), and mixtures thereof.
19. The fiber ofclaim 1 wherein the basic resin comprises a poly(vinylamine), a poly(dialkylaminoalkyl (meth)acrylamide), a poly(vinylguanidine), a polyethylenimine, or a mixture thereof, and the acidic resin comprises poly(acrylic acid).
20. The fiber ofclaim 19 wherein the poly(dialkylaminoalkyl (meth)acrylamide) comprises poly(dimethylaminoethyl acrylamide), poly(dimethylaminopropyl methacrylamide), or a mixture thereof.
21. The fiber ofclaim 19 wherein the poly(acrylic acid) resin further contains strong acid moieties.
22. The fiber ofclaim 1 wherein the core has voids.
23. An article comprising a core containing a superabsorbent polymer, said core comprising about 1% to 100% by weight of a multicomponent superabsorbent fiber ofclaim 1.
24. A method of absorbing an aqueous medium comprising contacting the medium with a plurality of fibers ofclaim 1.
25. A method ofclaim 24 wherein the aqueous medium contains electrolytes.
26. A method ofclaim 25 wherein the electrolyte-containing aqueous medium is selected from the group consisting of urine, saline, menses, and blood.
27. A superabsorbent material comprising:
(a) multicomponent superabsorbent fibers ofclaim 1, and
(b) particles of a second water-absorbing resin selected from the group consisting of an acidic water-absorbing resin, a basic water-absorbing resin, and mixtures thereof.
28. The superabsorbent material ofclaim 27 wherein the multicomponent superabsorbent fibers are present in an amount of about 10% to about 90%, by weight, of the material.
29. The superabsorbent material ofclaim 27 wherein the multicomponent superabsorbent fibers are 0% to 25% neutralized, and the second water-absorbing resin is 0% to 100% neutralized.
30. The superabsorbent material ofclaim 27 wherein the second water-absorbing resin comprises an acidic water-absorbing resin.
31. A multicomponent superabsorbent fiber comprising: (a) a core comprising at least one acidic water-absorbing resin and (b) a sheath comprising at least one basic water-absorbing resin which forms a layer surrounding and in contact with the core.
32. The fiber ofclaim 31 wherein the fiber is surface crosslinked with up to about 10,000 ppm of a surface crosslinking agent.
33. The fiber ofclaim 32 wherein the surface crosslinking agent is selected from the group consisting of
(a) a dihalide or a disulfonate ester having the formula
Y—(CH2)p—Y,
wherein p is an integer 2 to 12 and Y, independently, is halo, tosylate, mesylate, an alkyl sulfonate ester, or an aryl sulfonate ester;
(b) a multifunctional aziridine;
(c) a multifunctional aldehyde, and acetals and bisulfites thereof;
(d) a halohydrin;
(e) a multifunctional epoxy compound;
(f) a multifunctional carboxylic acid containing 2 to 12 carbon atoms, and methyl and ethyl esters, acid chlorides, and anhydrides derived therefrom;
(g) an organic titanate;
(h) a melamine resin;
(i) a hydroxymethyl urea;
(j) a multifunctional isocyanate; and
(k) mixtures thereof.
34. The fiber ofclaim 31 wherein the particle is annealed at a temperature of about 65° C. to about 150° C. for about 20 minutes to about 16 hours.
35. The fiber ofclaim 31 wherein the core contains at least one microdomain of at least one basic resin.
36. The fiber ofclaim 31 wherein the sheath contains at least one microdomain of at least one acidic resin.
37. An article comprising a multicomponent superabsorbent fiber ofclaim 31.
38. A method of absorbing an aqueous medium comprising contacting the medium with a plurality of fibers ofclaim 31.
39. A superabsorbent material comprising:
(a) multicomponent superabsorbent fibers ofclaim 31, and
(b) particles of a second water-absorbing resin selected from the group consisting of an acidic water-absorbing resin, a basic water-absorbing resin, and mixtures thereof.
40. The superabsorbent material ofclaim 39 wherein the multicomponent superabsorbent fibers are 0% to 25% neutralized, and the second water-absorbing resin is 0% to 100% neutralized.
41. The superabsorbent material ofclaim 39 wherein the second water-absorbing resin comprises an acidic water-absorbing resin.
42. A multicomponent superabsorbent fiber comprising:
(a) one or more first fibers comprising an acidic resin, and
(b) one or more second fibers comprising a basic resin, wherein the first and second fibers are twisted together in the form of a braid.
43. The fiber ofclaim 42 wherein the first fiber contains at least one microdomain of at least one basic resin.
44. The fiber ofclaim 42 wherein the second fiber contains at least one microdomain of at least one acidic resin.
45. The fiber ofclaim 42 wherein the fiber is annealed at a temperature of about 65° C. to about 150° C. for about 20 minutes to about 16 hours.
46. The fiber ofclaim 42 wherein the first fiber, the second fiber, both the first and second fibers are surface crosslinked with up to about 10,000 ppm of a surface crosslinking agent.
47. The fiber ofclaim 42 wherein the fiber is surface crosslinked with up to about 10,000 ppm of a surface crosslinking agent.
48. An article comprising a core containing a superabsorbent polymer, said core comprising about 1% to 100% by weight of a multicomponent superabsorbent fiber ofclaim 42.
49. A method of absorbing an aqueous medium comprising contacting the medium with a plurality of fibers ofclaim 42.
50. The method ofclaim 49 wherein the aqueous medium contains electroytes.
51. A multicomponent superabsorbent fiber comprising:
(a) a plurality of first fibers comprising an acidic resin, and
(b) a plurality of second fibers comprising a basic resin, wherein the first and second fibers are admixed, then formed into the shape of a mat.
52. The fiber ofclaim 51 wherein the mat is annealed at a temperature of about 65° C. to about 150° C. for about 20 minutes to about 160 hours.
53. The fiber ofclaim 51 wherein the mat retains its structural integrity after hydration with a liquid medium.
54. An article comprising a core containing about 1% to 100% by weight of a multicomponent superabsorbent fiber ofclaim 51.
55. A method of manufacturing a multicomponent superabsorbent fiber comprising a core comprising a poly(vinylamine) surrounded by a sheath comprising a poly(acrylic acid), said method comprising:
(a) forming an aqueous solution comprising an uncrosslinked poly(vinylamine) and about 0.001 mol % to about 0.1 mol % of a crosslinking agent,
(b) heating the aqueous solution of step (a) to lightly crosslink the uncrosslinked polyvinylamine and form a spinning dope,
(c) introducing the spinning dope of step (b) into a coagulation bath containing about 0.1% to about 2% by weight of a crosslinking agent dissolved in a nonsolvent for poly(vinylamine) to form a filament of crosslinked poly(vinylamine),
(d) directing the crosslinked poly(vinylamine) filament of step (c) from the coagulation bath to a bath comprising poly(acrylic acid), about 0.5 to about 5% by weight of a crosslinking agent, and a solvent,
(e) passing the crosslinked poly(vinylamine) through the bath of step (d) to form a sheath of poly(acrylic acid) over the crosslinked poly(vinylamine) filament,
(f) directing the filament from step (e) to a doping bath containing a curing catalyst, and
(g) curing the filament from step (f) to provide the multicomponent superabsorbent fiber.
56. The method ofclaim 55 wherein the crosslinked poly(vinylamine) dried after step (c) and prior to step (d).
57. The method ofclaim 55 wherein the filament formed in step (e) is dried prior to step (f).
58. The method ofclaim 55 wherein the crosslinking agent in step (a) comprising ethylene glycol diglycidyl ether.
59. The method ofclaim 55 wherein the crosslinking agent in step (c) comprising ethylene glycol diglycidyl ether.
60. The method ofclaim 55 wherein the crosslinking agent in step (d) comprising ethylene glycol diglycidyl ether.
61. The method ofclaim 55 wherein the curing catalyst of step (f) comprises triethylamine.
62. The method ofclaim 55 wherein the filament of step (f) is cured in step (g) by heating for about 10 to about 60 minutes at about 60° C. to about 150° C.
63. A method of manufacturing a multicomponent superabsorbent comprising a mixed bed of fibers of an acidic resin and fibers of a basic resin, said method comprising:
(a) admixing a plurality of acidic resin fibers and a plurality of basic resin fibers to form a fiber mixture;
(b) forming the fiber mixture into a mixed bed of a predetermined shape and thickness; and
(c) annealing the mixed bed at a temperature of about 65° C. to about 150° C. for about 20 minutes to about 16 hours.
64. The method of claim63 wherein the fiber mixture is formed into the shape of a diaper core.
65. The fiber ofclaim 1 wherein the fiber retains its structural integrity after hydration with a liquid medium.
US09/860,0951997-11-192001-05-17Multicomponent superabsorbent fibersExpired - LifetimeUS6376072B2 (en)

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US09/860,095US6376072B2 (en)1997-11-192001-05-17Multicomponent superabsorbent fibers

Applications Claiming Priority (5)

Application NumberPriority DateFiling DateTitle
US08/974,125US6072101A (en)1997-11-191997-11-19Multicomponent superabsorbent gel particles
US09/120,674US6235965B1 (en)1997-11-191998-07-22Multicomponent superabsorbent gel particles
US09/179,553US6222091B1 (en)1997-11-191998-10-28Multicomponent superabsorbent gel particles
US09/273,878US6342298B1 (en)1997-11-191999-03-22Multicomponent superabsorbent fibers
US09/860,095US6376072B2 (en)1997-11-192001-05-17Multicomponent superabsorbent fibers

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US09/860,095Expired - LifetimeUS6376072B2 (en)1997-11-192001-05-17Multicomponent superabsorbent fibers

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EP (1)EP1169502B1 (en)
JP (1)JP4847643B2 (en)
AT (1)ATE451488T1 (en)
AU (1)AU4173800A (en)
BR (1)BR0009188A (en)
DE (1)DE60043502D1 (en)
MX (1)MXPA01008930A (en)
WO (1)WO2000056959A1 (en)

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ATE451488T1 (en)2009-12-15
JP2002540302A (en)2002-11-26
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JP4847643B2 (en)2011-12-28
US6376072B2 (en)2002-04-23
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WO2000056959A1 (en)2000-09-28
BR0009188A (en)2001-12-26

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