EP1631627A2

Crosslinking systems for hydroxyl polymers

Abstract

This record has no abstract on file.

EP1631627A2, drawing sheet 1
Sheet 1 of 38

Term

Term ended

Projected expiry passed 7 June 2024, 2.3 years ago.

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10 claims: 7 independent, 3 dependent

  1. 1
    Claims of equivalent WO 2004108832 A2 What is claimed is:1. A polymer melt composition comprising: a. a hydroxyl polymer;and b. a crosslinking system comprising a crosslinking agent capable of crosslinking the hydroxyl polymer.
  2. 3
    The polymer melt composition according to any of the preceding claims wherein the hydroxyl polymer has a weight average molecular weight of from 10,000 to 40,000,000 g/mol.
  3. 4
    The polymer melt composition according to any of the preceding claims wherein the crosslinking agent is selected from the group consisting of polycarboxylic acids, imidazolidinones and mixtures thereof.
  4. 5
    The polymer melt composition according to any of the preceding claims wherein the crosslinking agent has a structure selected from the group consisting of:a) Structure V wherein X is O or S or NH or N-alkyl, and Ri and R 2 are independently wherein R 3 and R 8 are independently selected from the group consisting of: H, linear or branched C C 4 alkyl, CH 2 OH and mixtures thereof, R is independently selected from the group consisting of: H, linear or branched C C alkyl, and mixtures thereof;x is 0-100;and q is 0-10, R H is independently selected from the group consisting of: H, linear or branched C 1 -C4 alkyl, and mixtures thereof;b) Structure VI wherein R 2 is independently wherein R 3 and R 8 are independently selected from the group consisting of: H, linear or branched C C 4 alkyl, CH 2 OH and mixtures thereof, t is independently selected from the group consisting of: H, linear or branched Cι-C alkyl, and mixtures thereof;x is 0-100;and q is 0-10, R H are independently selected from the group consisting of: H, linear or branched C 1 -C 4 alkyl, and mixtures thereof;c) Structure VII wherein R 2 is independently wherein R 3 and R 8 are independently selected from the group consisting of: H, linear or branched Cj-C alkyl, CH 2 OH and mixtures thereof, R 4 is independently selected from the group consisting of: H, linear or branched C1-C4 alkyl, and mixtures thereof;x is 0-100;and q is 0-10, R H are independently selected from the group consisting of: H, linear or branched C C 4 alkyl, and mixtures thereof;d) Structure VIII wherein X is O or S or NH or N-alkyl, and Ri and R 2 are independently wherein R 3 and R 8 are independently selected from the group consisting of: H, linear or branched Cι-C 4 alkyl, CH 2 OH and mixtures thereof, t is independently selected from the group consisting of: H, linear or branched C C 4 alkyl, and mixtures thereof;x is 0-100;and q is 0-10, R H is independently selected from the group consisting of: H, linear or branched C 1 -C 4 alkyl, and mixtures thereof;x is 0-100;y is 1-50;R 5 is independently selected from the group consisting of: -(CH 2 ) n - wherein n is 1-12, -(CH 2 CH(OH)CH 2 )-, wherein Rg and R 7 are independently selected from the group consisting of: H, linear or branched Cι-C alkyl and mixtures thereof, wherein Re and R 7 cannot both be C 1 -C 4 alkyl within a single unit;and z is 1-100;e) Structure IX wherein Ri and R 2 are independently wherein R 3 and Rg are independently selected from the group consisting of: H, linear or branched C r C 4 alkyl, CH 2 OH and mixtures thereof, t is independently selected from the group consisting of: H, linear or branched Cι-C 4 alkyl, and mixtures thereof;x is 0-100;and q is 0-10, R H is independently selected from the group consisting of: H, linear or branched C C alkyl, and mixtures thereof;x is 1-100;y is 1-50;R 5 is independently -(CH 2 ) n - wherein n is 1-12;f) Structure X wherein Ri and R 2 are independently wherein R 3 and R 8 are independently selected from the group consisting of: H, linear or branched C 1 -C 4 alkyl, CH 2 OH and mixtures thereof, R 4 is independently selected from the group consisting of: H, linear or branched C 1 -C 4 alkyl, and mixtures thereof;x is 0-100;and q is 0-10, R H is independently selected from the group consisting of: H, linear or branched C 1 -C 4 alkyl, and mixtures thereof;x is 1-100;y is 1-50;R 5 is independently selected from the group consisting of: -(CH 2 ) n - wherein n is 1-12, -(CH 2 CH(OH)CH 2 )-, wherein Re and R 7 are independently selected from the group consisting of: H, linear or branched C 1 -C 4 alkyl and mixtures thereof, wherein Re and R 7 cannot both be C 1 -C 4 alkyl within a single unit;and z is 1-100;g) and mixtures thereof.
  5. 6
    The polymer melt composition according to any of the preceding claims wherein the crosslinking system further comprises a crosslinking facilitator, preferably wherein the crosslinking facilitator comprises an acid having a pKa of between 2 and 6 or a salt thereof, more preferably wherein the crosslinking facilitator is selected from the group consisting of:acetic acid, benzoic acid, citric acid, formic acid, phosphoric acid, succinic acid, glycolic acid, lactic acid, maleic acid, phthalic acid and salts thereof, and mixtures thereof.
  6. 7
    The polymer melt composition according to Claim 6 wherein the acid comprises a Bronsted Acid and/or the salt comprises an ammonium salt.
  7. 8
    A method for preparing a polymer melt composition according to any of Claims 1 to 7, the method comprising the steps of:a. providing a melt processed hydroxyl polymer;and b. adding a crosslinking system comprising a crosslinking agent capable of crosslinking the melt processed hydroxyl polymer to form the polymer melt composition.
  8. 9
    Use of the polymer melt composition according to any of Claims 1 to 7 as a polymeric structure.
  9. 10
    Use of the polymeric structure according to Claim 9 in a single- or multi-ply sanitary tissue product that exhibits an initial total wet tensile of at least 1.18 g/cm (3 g/in).