EP1573128A1

Wiping products having a low coefficient of friction in the wet state and process for producing same

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 3 November 2023, 2.9 years ago.

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91 claims: 89 independent, 2 dependent

  1. 1
    Claims of equivalent WO 2004061228 A1 What Is Claimed:1. A tissue product having an improved feel when wet comprising: a base sheet comprising pulp fibers, the base sheet having a first side and a second and opposite side, the base sheet having a bulk density of at least about 2 cc/g;a wet anti-friction composition applied to at least one side of the base sheet, the wet anti-friction composition being applied in an amount sufficient for the treated side of the base sheet to have a wet static coefficient of friction that is no more than about 10% greater then the dry static coefficient of friction of the treated side.
  2. 2
    A tissue product as defined in claim 1 , wherein the wet anti-friction composition comprises a polyethylene oxide having a molecular weight of at least about 20,000.
  3. 3
    A tissue product as defined in claim 2, wherein the polyethylene oxide has a molecular weight of at least about 50,000.
  4. 4
    A tissue product as defined in claim 2, wherein the polyethylene oxide has a molecular weight of from about 200,000 to about 2,000,000.
  5. 5
    A tissue product as defined in claim 1 , wherein the wet anti-friction composition comprises a derivatized polyethylene oxide, the polyethylene oxide having a molecular weight of greater than about 20,000.
  6. 6
    A tissue product as defined in claim 5, wherein the derivatized polyethylene oxide comprises:wherein R 1 , R 1' , R 1" are independently H or a C-|. alkyl;Z is a bridging radical selected from the groups comprising -O-, -S-, OOC-, -COO-, -HNOC-, -CONH, and mixtures thereof;and R° is a moiety containing a functional group selected from the group H, amine, amide, carboxyl, hydroxyl, aldehyde, epoxy, silanol and azetidinium groups, and mixtures thereof.
  7. 7
    A tissue product as defined in claim 5, wherein the derivatized polyethylene oxide comprises:
  8. 8
    A tissue product as defined in claim 5, wherein the derivatized polyethylene oxide has silanol functional groups.
  9. 9
    A tissue product as defined in claim 5, wherein the derivatized polyethylene oxide forms covalent or ionic bonds with paper fibers.
  10. 10
    A tissue product as defined in claim 5, wherein the derivatized polyethylene oxide contains from about 0.5 percent to about 25 percent by weight of pendant functional groups.
  11. 11
    A tissue product as defined in claim 1 , wherein the wet anti-friction composition comprises a polymer or copolymer derived from ethylenically unsaturated monomers wherein at least one monomer comprises a pendant polyalkylene oxide moiety.
  12. 13
    A tissue product as defined in claim 12 wherein the ratio of c to (a+b+c) is chosen such that the weight ratio of Q 3 to [Q 1 +Q 2 +Q 3 ] is from about 20 to 100%.
  13. 14
    A tissue product as defined in claim 12 wherein polymer or copolymer has a weight average molecular weight of greater than about 20,000.
  14. 15
    A tissue product as defined in claim 12 wherein b 0 and Q 2 is derived from a monomer unit containing a cationic charge functionality.
  15. 16
    A tissue product as defined in claim 15 wherein the cationic charge functionality is incorporated via a diallydimethylammonium cationic monomer.
  16. 17
    A tissue product as defined in claim 11 , wherein the acrylic copolymer comprises:wherein R 1 , R 1 , R 2 , R 2 , R 2 , R 3 , R 3 , R 3 are independently H, or a C- alkyl group;Z 1 , Z 2 , Z 3 are bridging radicals selected from the group consisting of - CONH-, -NHCO-, -O-, -S-, -CH2-, -aryl-, -COO- or -OOC-, and mixtures thereof;- R 4 is any functional group incorporated as part of an ethylenically unsaturated monomer;R 5 is any cationically charged species;and R 6 is a polyoxyethylene or polyoxyalkylene derivative of the formula - (CHR 7 CHR 8 O) s -(CH2CH2O)t-(CHR 9 CHR 10 O)v-R 11 wherein R 7 , R 8 , R 9 , R 10 are independently Cι. 4 alkyl groups;s, t, v are integers such that t 0 and s+t+v 3;R 11 is a terminating radical including H, alkyl, substituted alkyl, aryl and substituted aryl;and values of p q are 0 while the value of r 0.
  17. 18
    A tissue product as defined in claim 17, wherein the acrylic copolymer comprises:
  18. 19
    A tissue product as defined in claim 11 , wherein the acrylic copolymer comprises a poly(ethylene glycol) alkyl ether methacrylate.
  19. 20
    A tissue product as defined in claim 1 , wherein the base sheet has a wet static coefficient of friction that is no more than 3 percent greater than the dry static coefficient of friction of the treated side.
  20. 21
    A tissue product as defined in claim 1 , wherein the base sheet has a wet static coefficient of friction that is no greater than the dry static coefficient of friction of the treated side.
  21. 22
    A tissue product as defined in claim 1 , wherein the wet anti-friction composition is applied to the base sheet in an amount from about 0.03 percent to about 3 percent by weight of fibers contained in the base sheet.
  22. 23
    A tissue product as defined in claim 1 , wherein the wet anti-friction composition has been topically applied to the base sheet.
  23. 24
    A tissue product as defined in claim 1 , wherein the wet anti-friction composition is incorporated into the base sheet during its formation.
  24. 25
    A tissue product as defined in claim 1 , wherein the tissue product has a wet out time of about 20 seconds or less.
  25. 26
    A tissue product having an improved feel when wet comprising:a base sheet comprising pulp fibers, the base sheet having a first side and a second and opposite side, the base sheet having a bulk density of at least about 2 cc/g;a wet anti-friction composition applied to at least one side of the base sheet, the wet anti-friction composition being applied in an amount sufficient for the treated side of the base sheet to have a wet dynamic coefficient of friction that is no more than about 10% greater then the dry dynamic coefficient of friction of the treated side.
  26. 27
    A tissue product as defined in claim 26, wherein the wet anti-friction composition comprises a polyethylene oxide having a molecular weight of at least about 20,000.
  27. 28
    A tissue product as defined in claim 27, wherein the polyethylene oxide has a molecular weight of at least about 50,000.
  28. 29
    A tissue product as defined in claim 27, wherein the polyethylene oxide has a molecular weight of from about 200,000 to about 2,000,000.
  29. 30
    A tissue product as defined in claim 26, wherein the wet anti-friction composition comprises a derivatized polyethylene oxide, the polyethylene oxide having a molecular weight of greater than about 20,000.
  30. 31
    A tissue product as defined in claim 30, wherein the derivatized polyethylene oxide comprises:wherein R 1 , R 1 , R 1 are independently H or a Cι- alkyl;Z is a bridging radical selected from the groups comprising -O-, -S-, -OOC-, -COO-, -HNOC-, -CONH, and mixtures thereof;and R° is a moiety containing a functional group selected from the group H, amine, amide, carboxyl, hydroxyl, aldehyde, epoxy, silanol, azetidinium groups, and mixtures thereof.
  31. 32
    A tissue product as defined in claim 30, wherein the derivatized polyethylene oxide comprises:
  32. 33
    A tissue product as defined in claim 30, wherein the derivatized polyethylene oxide has silanol functional groups.
  33. 34
    A tissue product as defined in claim 30, wherein the derivatized polyethylene oxide forms covalent or ionic bonds with paper fibers.
  34. 35
    A tissue product as defined in claim 30, wherein the derivatized polyethylene oxide contains from about 0.5 percent to about 25 percent by weight of pendant functional groups.
  35. 36
    A tissue product as defined in claim 26, wherein the wet anti-friction composition comprises a polymer or copolymer derived from ethylenically unsaturated monomers wherein at least one monomer comprises a pendant polyalkylene oxide moiety.
  36. 37
    A tissue product as defined in claim 36, wherein the polymer or copolymer has the structure:-HQ 1 ] a -[Q 2 ]b-[Q 3 ]c-}w- wherein: a and b are integers greater than or equal to 0 c is an integer 0 w is an integer greater than or equal to 1 ;Q 1 is a monomer unit containing a functionality capable of hydrogen or covalently bonding with cellulose or any other polar or non-polar monomer not containing a pendant polyalkylene oxide functionality;Q 2 is a monomer unit containing a charge functionality;Q 3 is a monomer unit or mixture of monomer units containing pendant polyalkylene oxide functionality wherein said pendant polyalkylene oxide functionality has a degree of polymerization greater than 3;and the ratio of c to (a+b+c) is chosen such that the weight ratio of Q 3 to [Q 1 +Q 2 +Q 3 ] is from about 5 to 100%.
  37. 38
    A tissue product as defined in claim 37 wherein the ratio of c to (a+b+c) is chosen such that the weight ratio of Q 3 to [Q 1 +Q 2 +Q 3 ] is from about 20 to 100%.
  38. 39
    A tissue product as defined in claim 37 wherein polymer or copolymer has a weight average molecular weight of greater than about 20,000.
  39. 40
    A tissue product as defined in claim 37 wherein b 0 and Q 2 is derived from a monomer unit containing a cationic charge functionality.
  40. 41
    A tissue product as defined in claim 40 wherein the cationic charge functionality is incorporated via a diallydimethylammonium cationic monomer.
  41. 42
    A tissue product as defined in claim 36, wherein the acrylic copolymer comprises:wherein R 1' , R 1" , R 2 , R 2' , R 2" , R 3 , R 3' , R 3" are independently H, or a Cι- 4 alkyl group;Z 1 , Z 2 , Z 3 are bridging radicals selected from the group consisting if - CONH-, -NHCO-, -O-, -S-, -CH2-, -aryl-, -COO- or -OOC-, and mixtures thereof ;- R 4 is any functional group incorporated as part of an ethylenically unsaturated monomer;R 5 is any cationically charged species;and R 6 is a polyoxyethylene or polyoxyalkylene derivative of the formula - (CHR 7 CHR 8 O) s -(CH2CH2O) t -(CHR 9 CHR 10 O) v -R 11 wherein R 7 , R 8 , R 9 , R 10 are independently C - alkyl groups;s, t, v are integers such that t 0 and s+t+v 3;R 11 is a terminating radical including H, alkyl, substituted alkyl, aryl and substituted aryl;and values of p q are 0 while the value of r 0.
  42. 43
    A tissue product as defined in claim 42, wherein the acrylic copolymer comprises:
  43. 44
    A tissue product as defined in claim 36, wherein the acrylic copolymer comprises a poly(ethylene glycol) alkyl ether methacrylate.
  44. 45
    A tissue product as defined in claim 26, wherein the base sheet has a wet dynamic coefficient of friction that is no more than 3 percent greater than the dry dynamic coefficient of friction of the treated side.
  45. 46
    A tissue product as defined in claim 26, wherein the base sheet has a wet dynamic coefficient of friction that is no greater than the dry dynamic coefficient of friction of the treated side.
  46. 47
    A tissue product as defined in claim 26, wherein the wet anti-friction composition is applied to the base sheet in an amount from about 0.03 percent to about 3 percent by weight of fibers contained in the base sheet.
  47. 48
    A tissue product as defined in claim 26, wherein the wet anti-friction composition has been topically applied to the base sheet.
  48. 49
    A tissue product as defined in claim 26, wherein the wet anti-friction composition is incorporated into the base sheet during its formation.
  49. 50
    A tissue product as defined in claim 26, wherein the tissue product has a wet out time of about 20 seconds or less.
  50. 51
    A treated wiping product having a lower coefficient of friction in the wet state comprising:a base sheet comprising fibers, the base sheet having a first side and a second and opposite side;a wet anti-friction composition applied to at least one side of the base sheet, the wet anti-friction composition being applied to the base sheet in an amount sufficient for the treated side of the base sheet to have a lower coefficient of friction in the wet state, the anti-friction composition comprising a polyethylene oxide having a molecular weight of greater than about 20,000, a derivatized polyethylene oxide in which the polyethylene oxide has a molecular weight of greater than about 20,000, or an acrylate copolymer containing polyethylene oxide moieties.
  51. 52
    A treated wiping product as defined in claim 51 , wherein the wet antifriction composition comprises polyethylene oxide having a molecular weight of from about 400,00 to about 2,000,000.
  52. 53
    A treated wiping product as defined in claim 51 , wherein the wet antifriction composition comprises:wherein R 1 , R 1' , R 1" are independently H or a Cι_ 4 alkyl;Z is a bridging radical selected from the groups comprising -O-, -S-, -OOC-, -COO-, -HNOC-, -CONH, and mixtures thereof;and R° is a moiety containing a functional group selected from the group H, amine, amide, carboxyl, hydroxyl, aldehyde, epoxy, silanol, azetidinium groups, and mixtures thereof.
  53. 54
    A treated wiping product as defined in claim 51 , wherein the wet antifriction composition comprises:
  54. 55
    A treated wiping product as defined in claim 53, wherein the derivatized polyethylene oxide forms covalent or ionic bonds with paper fibers.
  55. 56
    A treated wiping product as defined in claim 53, wherein the derivatized polyethylene oxide contains from about 0.5 percent to about 25 percent by weight of pendant functional groups.
  56. 57
    A treated wiping product as defined in claim 51 , wherein the wet anti- friction composition comprises a polymer or copolymer derived from ethylenically unsaturated monomers wherein at least one monomer comprises a pendant polyalkylene oxide moiety..
  57. 59
    A treated wiping product as defined in claim 58 wherein the ratio of c to (a+b+c) is chosen such that the weight ratio of Q 3 to [Q 1 +Q 2 +Q 3 ] is from about 20 to 100%.
  58. 60
    A treated wiping product as defined in claim 58 wherein polymer or copolymer has a weight average molecular weight of greater than about 20,000.
  59. 61
    A treated wiping product as defined in claim 58 wherein b 0 and Q 2 is derived from a monomer unit containing a cationic charge functionality.
  60. 62
    A treated wiping product as defined in claim 61 wherein the cationic charge functionality is incorporated via a diallydimethylammonium cationic monomer.
  61. 63
    A treated wiping product as defined in claim 58, wherein the wet antifriction composition comprises:wherein R 1' , R 1 " , R 2 , R 2' , R 2' , R 3 , R 3 , R 3 are independently H, or a C-i- 4 alkyl group;Z 1 , Z 2 , Z 3 are bridging radicals selected from the group consisting of - CONH-, -NHCO-, -O-, -S-, -CH2-, -aryl-, -COO-, -OOC-, and mixtures thereof;-R 4 is any functional group incorporated as part of an ethylenically unsaturated monomer;R 5 is any cationically charged species;and R 6 is a polyoxyethylene or polyoxyalkylene derivative of the formula - (CHR 7 CHR 8 O) s -(CH2CH2O)r(CHR 9 CHR 10 O)v-R 11 wherein R 7 , R 8 , R 9 , R 10 are independently Cι_ alkyl groups;s, t, v are integers such that t 0 and s+t+v 3;R 11 is a terminating radical including H, alkyl, substituted alkyl, aryl and substituted aryl;and values of p q are 0 while the value of r 0.
  62. 64
    A treated wiping product as defined in claim 58, wherein the wet antifriction composition comprises:
  63. 65
    A treated wiping product as defined in claim 51 , wherein the wet antifriction composition is applied to the base sheet in a total amount of from about 0.03 percent to about 3 percent by weight.
  64. 66
    A treated wiping product as defined in claim 53, wherein R° comprises from about one-half percent to about 10 percent by weight of the derivatized polyethylene oxide.
  65. 67
    A treated wiping product as defined in claim 51 , wherein the wiping product comprises a facial tissue, a bath tissue, or a paper towel.
  66. 68
    A treated wiping product as defined in claim 51 , wherein the base sheet comprises more than one ply.
  67. 69
    A treated wiping product as defined in claim 51 , wherein the wiping product comprises a pre-moistened wipe.
  68. 70
    A treated wiping product as defined in claim 67, wherein the treated side of the base sheet has a wet static coefficient of friction that is no more than about 10 percent greater than the dry static coefficient of friction of the treated side.
  69. 71
    A treated wiping product as defined in claim 67, wherein the treated side of the base sheet has a wet dynamic coefficient of friction that is no more than about 10 percent greater than the dry dynamic coefficient of friction of the treated side.
  70. 72
    A process for producing a treated wiping product having a reduced coefficient of friction in the wet state comprising:providing a base sheet comprising fibers, the base sheet having a first side and a second and opposite side;and incorporating into the base sheet a wet anti-friction composition, the wet anti-friction composition being incorporated into the base sheet in an amount sufficient such that at least one side of the base sheet has a lower wet static coefficient of friction, the wet anti-friction composition comprising a polyethylene oxide having a molecular weight of at least about 20,000, a derivatized polyethylene oxide containing a polyethylene oxide having a molecular weight of at least about 20,000, or an acrylate copolymer containing polyethylene oxide moieties.
  71. 73
    A process as defined in claim 72, wherein the wet anti-friction composition comprises a polyethylene oxide having a molecular weight of from about 200,000 to about 2,000,000.
  72. 74
    A process as defined in claim 72, wherein the wet anti-friction composition comprises a derivatized polyethylene oxide comprising:wherein R 1 , R 1 , R 1 are independently H or a C 1 - alkyl;Z is a bridging radical selected from the groups comprising -O-, -S-, -OOC-, -COO-, -HNOC-, -CONH, and mixtures thereof;and R° is a moiety containing a functional group selected from the group H, amine, amide, carboxyl, hydroxyl, aldehyde, epoxy, silanol, azetidinium groups, and mixtures thereof.
  73. 75
    A process as defined in claim 72, wherein the wet anti-friction composition comprises a derivatized polyethylene oxide comprising:
  74. 76
    A process as defined in claim 74, wherein the derivatized polyethylene oxide forms covalent or ionic bonds with paper fibers.
  75. 77
    A process as defined in claim 74, wherein the derivatized polyethylene oxide contains from about 0.5 percent to about 25 percent by weight of pendant functional groups.
  76. 78
    A process as defined in claim 72, wherein the wet anti-friction composition comprises a polymer or copolymer derived from ethylenically unsaturated monomers wherein at least one monomer comprises a pendant polyalkylene oxide moiety.
  77. 79
    A process as defined in claim 78, wherein the polymer or copolymer has the structure:-HQ 1 ]a-[Q 2 ] b -[Q 3 ]c-}w- wherein: a and b are integers greater than or equal to 0 c is an integer 0 w is an integer greater than or equal to 1 ;Q 1 is a monomer unit containing a functionality capable of hydrogen or covalently bonding with cellulose or any other polar or non-polar monomer not containing a pendant polyalkylene oxide functionality;Q 2 is a monomer unit containing a charge functionality;Q 3 is a monomer unit or mixture of monomer units containing pendant polyalkylene oxide functionality wherein said pendant polyalkylene oxide functionality has a degree of polymerization greater than 3;and the ratio of c to (a+b+c) is chosen such that the weight ratio of Q 3 to [Q 1 +Q 2 +Q 3 ] is from about 5 to 100%.
  78. 80
    A process as defined in claim 79 wherein the ratio of c to (a+b+c) is chosen such that the weight ratio of Q 3 to [Q 1 +Q 2 +Q 3 ] is from about 20 to 100%.
  79. 81
    A process as defined in claim 79 wherein polymer or copolymer has a weight average molecular weight of greater than about 20,000.
  80. 82
    A process as defined in claim 79 wherein b 0 and Q 2 is derived from a monomer unit containing a cationic charge functionality.
  81. 83
    A process as defined in claim 82 wherein the cationic charge functionality is incorporated via a diallydimethylammonium cationic monomer.
  82. 84
    A process as defined in claim 72, wherein the wet anti-friction composition comprises:wherein R 1 , R' , R alkyl group;Z Z 2 , Z 3 are bridging radicals selected from the group comprising - CONH-, -NHCO-, -O-, -S-, -CH2-, -aryl-, -COO-, -OOC-, and mixtures thereof;and -R 4 is any functional group incorporated as part of an ethylenically unsaturated monomer;R 5 is any cationically charged species;and R 6 is a polyoxyethylene or polyoxyalkylene derivative of the formula - (CHR 7 CHR 8 O) s -(CH2CH2O) t -(CHR 9 CHR 10 O) v -R 11 wherein R 7 , R 8 , R 9 , R 10 are independently C 1 - 4 alkyl groups;s, t, v are integers such that t 0 and s+t+v 3;R 11 is a terminating radical including H, alkyl, substituted alkyl, aryl and substituted aryl;and values of p q are 0 while the value of r 0.
  83. 85
    A process as defined in claim 84, wherein the wet anti-friction composition comprises:
  84. 86
    A process as defined in claim 84, wherein the wet anti-friction composition is incorporated into the base sheet in an amount from about 0.03 percent to about 3 percent by weight of fibers contained in the base sheet.
  85. 87
    A process as defined in claim 84, wherein the wiping product comprises a facial tissue, a bath tissue, or a paper towel.
  86. 88
    A process as defined in claim 84, wherein the treated wiping product comprises a premoistened wipe.
  87. 89
    A process as defined in claim 84, wherein the wet anti-friction composition is incorporated into the base sheet by being topically applied to one side of the sheet.
  88. 90
    A process as defined in claim 89, wherein the wet anti-friction composition is applied topically to both sides of the base sheet.
  89. 91
    A process as defined in claim 84, wherein the wet anti-friction composition is incorporated into the base sheet by being added to an aqueous suspension of fibers that is used to form the base sheet.
Independent claims89