EP1941084A2

Water-dispersible and multicomponent fibers from sulfopolyesters

Abstract

This record has no abstract on file.

Term

0.3 yearsto projected expiry

Projected expiry 16 January 2027, counted from filing; an application has no term until it is granted.

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70 claims: 28 independent, 42 dependent

  1. 1
    Claims of equivalent WO 2007089423 A2 CLAIMS We claim:1. A multicomponent fiber having a shaped cross section, said multicomponent fiber comprising: (A) at least one water dispersible sulfopolyester;and (B) a plurality of domains comprising one or more water non- dispersible polymers immiscible with said sulfopolyester, wherein said domains are substantially isolated from each other by said sulfopolyester intervening between said domains, wherein said fiber has an as-spun denier of less than about 6 denier per filament;wherein said water dispersible sulfopolyester exhibits a melt viscosity of less than about 12,000 poise measured at 240 0 C at a strain rate of 1 rad/sec, said sulfopolyester comprising less than about 25 mole % of residues of at least one sulfomonomer, based on the total moles of diacid or diol residues.
  2. 12
    The multicomponent fiber according to claims 10 or 11 wherein said dicarboxylic acids are selected from the group consisting of aliphatic diacids, cycloaliphatic dicarboxylic acids, aromatic dicarboxylic acids, and combinations thereof.
  3. 15
    The multicomponent fiber according to claims 10 or 11 wherein said diol residues are selected from the group consisting of ethylene glycol, diethylene glycol, triethylene glycol, poly(ethylene) glycols, 1,3- propanediol, 2,4-dimethyl-2-ethylhexane-l ,3-diol, 2,2-dimethyl-l ,3- propanediol, 2-ethyl-2-butyl-l,3-propanediol, 2-ethyl-2-isobutyl-l,3- propanediol, 1 ,3-butanediol, 1,4-butanediol, 1,5-pentanediol, 1,6- hexanediol, 2,2,4-trimethyl-l,6-hexanediol, thiodiethanol, 1,2- cyclohexanedimethanol, 1,3-cyclohexanedimethanol, 1,4-cyctohexane- dimethanol, 2,2,4,4-tetramethyl-l,3-cyclobutanediol, p-xylylenediol, and combinations thereof.
  4. 21
    A multicomponent extrudate having a shaped cross section, comprising:(A) at least one water dispersible sulfopolyester;and (B) a plurality of domains comprising one or more water non- dispersible polymers immiscible with said sulfopolyester, wherein said domains are substantially isolated from each other by said sulfopolyester intervening between said domains, wherein said extrudate is capable of being melt drawn at a speed of at least about 2000 m/min.
  5. 29
    The multicomponent extrudate according to claims 27 or 28 wherein said dicarboxylic acids are selected from the group consisting of aliphatic diacids, cycloaliphatic dicarboxylic acids, aromatic dicarboxylic acids, and combinations thereof.
  6. 30
    The multicomponent extrudate according to claims 27 or 28 wherein said dicarboxylic acids are selected from the group consisting of succinic, glutaric, adipic, azelaic, sebacic, fumaric, maleic, itaconic, 1,3- cyclohexane dicarboxylic, 1,4-cyclohexanedicarboxylic, diglycolic, 2,5- norbornanedicarboxylic, phthalic, terephthalic, 1,4- naphthalenedicarboxylic, 2,5-naphthalenedicarboxylic, 2,6- naphthalenedicarboxylic, 2,7- naphthalenedicarboxylic, diphenic, 4,4'- oxydibenzoic, 4,4'-sulfonyldibenzoic, isophthalic, and combinations thereof.
  7. 32
    The multicomponent extrudate according to claims 27 or 28 wherein said diol residues are selected from the group consisting of ethylene glycol, diethylene glycol, triethylene glycol, poly( ethylene) glycols, 1,3- propanediol, 2,4-dimethyl-2-ethylhexane-l,3-diol, 2,2-dimethyl-l,3- propanediol, 2-ethyI-2-butyl-l ,3-propanediol, 2-ethyI-2-isobutyl-l ,3- propanedioK 1 ,3-butanediol, 1,4-butanediol, 1 ,5-pentanediol, 1,6- hexanediol, 2,2,4-trimethyl-l,6-hexanediol, thiodiethanol, 1,2- cyclohexanedimethanol, 1 ,3-cyclohexanedimethanol, 1 ,4-cyclohexane- dimethanol, 2,2,4,4-tetramethyl-l,3-cyclobutanediol, p-xylylenediol, and combinations thereof.
  8. 43
    A process for making a multicomponent fiber having a shaped cross section comprising:(A) spinning at least one water dispersible sulfopolyester and one or more water non-dispersible polymers immiscible with said sulfopolyester to produce a multicomponent fiber, wherein said multicomponent fiber has a plurality of domains comprising said water non-dispersible polymers and said domains are substantially isolated from each other by said sulfopolyester intervening between said domains;and wherein said water dispersible sulfopolyester exhibits a melt viscosity of less than about 12,000 poise measured at 240°C at a strain rate of 1 rad/sec, and wherein said sulfopolyester comprising less than about 25 mole % of residues of at least one sulfomonomer, based on the total moles of diacid or diol residues;and wherein said multicomponent fiber has an as-spun denier of less than about 6 denier per filament.
  9. 44
    A process for making a multicomponent fiber having a shaped cross W - 91 - section comprising:extruding at least one water dispersible sulfopolyester and one or more water non-dispersible polymers immiscible with said sulfopolyester to produce a multicomponent extrudate, wherein said 5 multicomponent extrudate has a plurality of domains comprising said water non-dispersible polymers and said domains are substantially isolated from each other by said sulfopolyester intervening between said domains;and melt drawing said multicomponent extrudate at a speed of at 10 least about 2000 m/min to produce the multicomponent fiber.
  10. 45
    The process according to claims 43 or 44 wherein said sulfopolyester exhibits a melt viscosity of less than about 6000 poise measured at 240 0 C at a strain rate of 1 rad/sec. 15
  11. 46
    The process according to claims 43 or 44 wherein said sulfopolyester exhibits a melt viscosity of less than about 4500 poise measured at 240 0 C at a strain rate of 1 rad/sec and comprises less than about 20 mole % of residues of at least one sulfomonomer, based on the total moles of 20 diacid or diol residues.
  12. 47
    The process according to claims 43 or 44 wherein said sulfopolyester comprises:(A) residues of one or more dicarboxylic acids;25 (B) about 5 to about 20 mole %, of residues of at least one sulfomonomer having 2 functional groups and one or more sulfonate groups attached to an aromatic or cycloaliphatic ring wherein said functional groups are hydroxyl, carboxyl, or a combination thereof;(C) one or more diol residues wherein at least 25 mole %, 30 based on the total diol residues, is a poly(ethylene glycol) having a structure H-(OCH 2 -CHz) n -OH wherein n is an integer in the range of 2 to about 500;and (D) 0 to about 20 mole %, based on the total repeating units, of residues of at least one branching monomer having 3 or more functional groups wherein said functional groups are hydroxyl, carboxyl, or a combination thereof.
  13. 48
    The process according to claims 43 or 44 wherein said shaped cross section is an islands-in-the-sea or segmented pie configuration.
  14. 49
    The process according to claims 43 or 44 wherein said multicomponent fiber contains less than 10 weight percent of a pigment or filler, based on the total weight of said fiber.
  15. 50
    A process for producing microdenier fibers comprising:(A) spinning at least one water dispersible sulfopolyester and one or more water non-dispersible polymers immiscible with said water dispersible sulfopolyester into multicomponent fibers, wherein said multicomponent fibers have a plurality of domains comprising said water non-dispersible polymers wherein said domains are substantially isolated from each other by said sulfopolyester intervening between said domains;wherein said fiber has an as-spun denier of less than about 6 denier per filament;wherein said water dispersible sulfopolyester exhibits a melt viscosity of less than about 12,000 poise measured at 240 0 C at a strain rate of 1 rad/sec, and wherein said sulfopolyester comprising less than about 25 mole % of residues of at least one sulfomonomer, based on the total moles of diacid or diol residues;and (B) contacting said multicomponent fibers with water to remove said water dispersible sulfopolyester thereby forming microdenier fibers.
  16. 51
    A process for producing microdenier fibers comprising:(A) extruding at least one water dispersible sulfopolyester and one or more water non-dispersible polymers immiscible with said water dispersible sulfopolyester to produce multicomponent extrudates, wherein said multicomponent extrudates have a plurality of domains comprising said water non-dispersible polymers wherein said domains are substantially isolated from each other by said sulfopolyester intervening between said domains;(B) melt drawing said multicomponent extrudates at a speed of at least about 2000 m/min to form multicomponent fibers;and (C) contacting said multicomponent fibers with water to remove said water dispersible sulfopolyester thereby forming microdenier fibers.
  17. 53
    The process according to claims 50 or 51 wherein said sulfopolyester comprises:(A) residues of one or more dicarboxylic acids;(B) about 5 to about 20 mole % of residues of at least one sulfomonomer having 2 functional groups and one or more sulfonate groups attached to an aromatic or cycloaliphatic ring wherein said functional groups are hydroxyl, carboxyl, or a combination thereof;(C) one or more diol residues wherein at least 25 mole %, based on the total diol residues, is a poly(ethylene glycol) having a structure H-(OCH 2 -CH 2 VOH wherein n is an integer in the range of 2 to about 500;and (D) 0 to about 20 mole %, based on the total repeating units, of residues of at least one branching monomer having 3 or more functional groups wherein said functional groups are hydroxyl, carboxyl, or a combination thereof.
  18. 54
    The process according to claims 50 or 51 wherein Step (C) comprises contacting said multicomponent fibers with water having a temperature of at least about 45°C.
  19. 55
    The process according to claims 50 or 51 wherein said water non- dispersible polymers are selected from polyolefins, polyesters, polyamides, polylactides, polycaprolactone, polycarbonate, polyurethane, polyvinyl chloride, and combinations thereof.
  20. 56
    The process according to claims 50 or 51 wherein said water non- dispersible polymer is biodistintegratable as determined by DIN Standard 54900 or biodegradable as determined by ASTM Standard Method, D6340-98.
  21. 57
    The process according to claims 50 or 51 wherein said water non- dispersible polymer is an aliphatic-aromatic polyester.
  22. 58
    A process for making a microdenier fiber web comprising:(A) spinning at least one water dispersible sulfopolyester and one or more water non-dispersible polymers immiscible with said sulfopolyester into multicomponent fibers, said multicomponent fibers have a plurality of domains comprising said water non-dispersible polymers wherein said domains are substantially isolated from each other by said sulfopolyester intervening between said domains;wherein said fiber has an as-spun denier of less than about 6 denier per filament;wherein said water dispersible sulfopolyester exhibits a melt viscosity of less than about 12,000 poise measured at 240 0 C at a strain rate of 1 rad/sec, and wherein said sulfopolyester comprising less than about 25 mole % of residues of at least one sulfomonorner, based on the total moles of diacid or diol residues;(B) collecting said multicomponent fibers of Step (A) to form a non- woven web;and (C) contacting said non-woven web with water to remove said sulfopolyester thereby forming a microdenier fiber web.
  23. 59
    A process for making a microdenier fiber web comprising:(A) extruding at least one water dispersible sulfopolyester and one or more water non-dispersible polymers immiscible with said water dispersible sulfopolyester into multicomponent extrudates, said multicomponent extrudates have a plurality of domains comprising said water non-dispersible polymers wherein said domains are substantially isolated from each other by said water dispersible sulfopolyester intervening between said domains;(B) melt drawing said multicomponent extnidates at a speed of at least about 2000 m/min to produce multicomponent fibers;(C) collecting said multicomponent fibers of Step B) to form a non- woven web;and (D) contacting said non-woven web with water to remove said sulfopolyester thereby forming a microdenier fiber web.
  24. 61
    The process according to claims 58 wherein Step (C) comprises contacting said multicomponent fibers with water having a temperature of at least about 45°C.
  25. 62
    The process according to claims 59 wherein Step (D) comprises contacting said multicomponent fibers with water having a temperature of at least about 45°C.
  26. 63
    The process according to claims 58 or 59 further comprising the step of hydroentangling said multicomponent fibers of said non-woven web prior to the step of contacting said multicomponent fibers with water having a temperature of at least about 45 0 C.
  27. 69
    The process according to claims 58 or 59 wherein said sulfopolyester exhibits a melt viscosity of less than about 6000 poise measured at 240 0 C at a strain rate of 1 radVsec and comprising less than about 20 mole % of residues of at least one sulfomonomer, based on the total moles of diacid or diol residues.
  28. 70
    The process according to claims 58 or 59 wherein said sulfopoly.ester comprises:(A) residues of one or more dicarboxylic acids;(B) about 5 to about 12 mole % of residues of at least one sulfomonomer having 2 functional groups and one or more sulfonate groups attached to an aromatic or cycloaliphatic ring wherein said functional groups are hydroxyl, carboxyl, or a combination thereof;(C) one or more diol residues wherein at least 25 mole %, based on the total diol residues, is a poly(ethylene glycol) having a structure H-(OCH 2 -CH 2 ) n -OH wherein n is an integer in the range of 2 to about 500;and (D) 0 to about 20 mole %, based on the total repeating units, of residues of a branching monomer having 3 or more functional groups wherein said functional groups are hydroxyl, carboxyl, or a combination thereof.
Independent claims28