EP1576235B1

Shear-kalendering Device for a non-woven Web

Abstract

This record has no abstract on file.

EP1576235B1, drawing sheet 1
Sheet 1 of 16

Term

Term ended

Expired 26 November 2023, 2.8 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

26 claims: 25 independent, 1 dependent

  1. 1
    A shear-calendering process comprising the steps of:providing a tissue web (56;72), said tissue web (56;72) comprising pulp fibers;and conveying the tissue web (56;72) through a nip formed between an outer surface (58;78) of a rotating roll (52;74) and an opposing moving surface (60;76), wherein the outer surface (58;78) of the roll (52;74) and the opposing surface (60;76) are moving at different speeds within the nip, the nip calendering the tissue web (56;72) while simultaneously subjecting the web (56;72) to shearing forces sufficient to increase the fuzz-on-edge properties of the web (56;72), and wherein said rip comprises a gap.
  2. 2
    A process as defined in claim 1, further comprising the step of spirally winding the tissue web (56;72) into a rolled product (64) after exiting the nip.
  3. 3
    A process as defined in claim 1 or 2, wherein the opposing surface (60) comprises a rotating roll (54).
  4. 4
    A process as defined in claim 1 or 2, wherein the opposing surface (76) comprises a moving belt.
  5. 5
    A process as defined in claim 3, wherein one of the rotating rolls (52,54) has an exterior surface (58,60) comprising a polymeric material.
  6. 6
    A process as defined in claim 3, wherein both of the rotating rolls (52,54) have an exterior surface comprising a polymeric material.
  7. 7
    A process as defined in any preceding claim, wherein the outer surface of the roll (52;74) and the outer opposing surface (60;76) are moving at speed differentials between 5% and 100%.
  8. 8
    A process as defined in any preceding claim, wherein the outer surface of the roll (52;74) and the outer opposing surface (60;76) are moving at speed differentials between 15% and 25%.
  9. 9
    A shear-calendering process as defined in claim 1, comprising the steps of:providing a first tissue web and a second tissue web, wherein said calendering increases the fuzz-on-edge properties of one side of said first tissue web (56);and combining said first tissue web with said second tissue web to form a multi-ply tissue product, the one side of the first tissue web with increased fuzz-on-edge properties forming an exterior side of the tissue product.
  10. 10
    A process as defined in claim 9, further comprising the step of spirally winding the multi-ply tissue product into a rolled product (64).
  11. 11
    A process as defined In claim 9 or 10, wherein the opposing surface (60) comprises a rotating roll (54).
  12. 12
    A process as defined in claim 9 or 10, wherein the opposing surface (76) comprises a moving belt.
  13. 13
    A process as defined in any of claims 9 to 12, wherein the tissue product has a bone dry basis weight of greater than about 35 gsm, and wherein the rolled product has a roll bulk of greater than about 9 cc/g and the exterior side has a fuzz-on-edge of greater than about 2.0 mm/mm.
  14. 14
    A process as defined in any of claims 9 to 13, wherein the outer surface of the roll (52;74) and the outer opposing surface (60;76) are moving at speed differentials between 5% and 100%.
  15. 15
    A process as defined in any of claims 9 to 14, wherein the outer surface of the roll (52;74) and the outer opposing surface (60;76) are moving at speed differentials between 10% and 25%.
  16. 16
    A process as defined in any of claims 9 to 15, wherein the second tissue web is also conveyed through a nip formed between an outer surface of a rotating roll (52;74) and an opposing moving surface (60;76), wherein the outer surface (58;78) of the roll (52;74) and the opposing surface (60;76) are moving at different speeds within the nip, the nip calendering the second tissue web while simultaneously subjecting the web to shearing forces sufficient to increase the fuzz-on-edge properties of one side of the second web, the side of the web with increased fuzz-on-edge properties also forming an exterior surface of the tissue product.
  17. 17
    A process as defined in any of claims 9 to 16, wherein the first tissue web and the second tissue web are attached together using an adhesive.
  18. 18
    A process as defined in any of claims 9 to 16, wherein the first tissue web and the second tissue web are mechanically attached together.
  19. 19
    A process as defined in any preceding claim, wherein said gap is from about 2% to about 25% of the thickness of the tissue web (56).
  20. 20
    A process as defined in claim 2 or 10, wherein the rolled product (64) has a roll bulk of greater than 12 cc/g.
  21. 21
    A shear-calendering device (50;70) that simultaneously calendars and subjects a non-woven web (56;72) to shearing forces comprising:a rotatable roll (52;74) having an exterior surface (58;78);and a movable surface (60;76) opposing the rotating roll (52;74);wherein the rotatable roll (52;74) and the opposing surface (60;76) form a nip for receiving tissue webs, the opposing surface (50;76) and the rotatable roll (52;74) being configured to move at different speeds within the nip to form a speed differential sufficient to subject a tissue web passing through the nip to shearing forces, and said rip comprises a gap.
  22. 23
    A shear-calendering device as defined in claim 21, wherein the opposing surface (76) comprises a belt.
  23. 24
    A shear-calendering device as defined in claim 22 or 23, wherein said gap is from 2% to about 25% of the thickness of the base webs configured to be fed through the device.
  24. 25
    A shear-calendering device as defined in any of claims 21 to 24, wherein the speed differential between the rotatable roll (52;74) and the opposing surface (60;76) is from about 5% to about 100%.
  25. 26
    A shear-calendering device as defined in any of claims 21 to 25, wherein the exterior surface of the rotatable roll (52;74) comprises a polymeric material.
Independent claims25