MY123745A

Method of forming improved apertured films,resultant apertured films, and absorbent products incorporating resultant apertured films.

Abstract

AN APERTURED FILM FOR USE AS A TOPSHEET IN ABSORBENT PRODUCTS WHEREIN THE FILM IS APERTURED AND INCLUDES A PLURALITY OF MICRO-HOLES AND A PLURALITY OF LARGE-SIZED HOLES.A METHOD OF FORMING THE FILM IS DISCLOSED, AS WELL AS AN ABSORBENT PRODUCT INCORPORATING THE APERTURED FILM AS A TOPSHEET.

Term

No projected expiry on record.

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24 claims: 24 independent, 0 dependent

  1. 1
    CLAIMS 1. A method for forming an apertured film from a stretchable thermoplastic polymeric material comprising:a) providing a starting film comprising said stretchable thermoplastic polymeric material having an upper surface and a lower surface;b) providing a backing member comprising localized support regions for supporting said starting film, recessed zones into which the film may be deformed by the application thereto of fluid forces;and means for allowing said applied fluid to be transported away from said backing member;c) supporting said starting film on said backing member with portions of the lower surface of said film being in contact with the support regions of said backing member and with the upper surface of said film facing away from said backing member;d) forming irregular size micro-holes and large sized holes in said starting film by directing a fluid in the form of substantially non-diverging, columnar streams from at least two sets of orifices against the upper surface of said starting film in a zone of contact to cause said starting film to stretch between said backing member localized support regions over said recessed zones, the orifices of the first set having a diameter greater than 0.25 mm (10 mils) and the fluid supplied thereto having a pressure less than 3.45 MN/m2 guage (500 psig) to cause said starting film to rupture into a multiplicity of said large sized holes in said starting film between said localized support regions, the orifices of the second set having a diameter less than or equal to 0.25 mm (10 mils) and the fluid supplied thereto having a pressure of at least 3.45 MN/m2 guage (500 psig), to cause said starting film to rupture into a multiplicity of said micro-holes in said starting film between said localized support regions;e) moving said film from said contact zone;and f) removing said now-apertured film from said backing member.
  2. 2
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said first set of orifices have a diameter in the range of about 0.25 mm (10 mils) to about 0.8 mm (30 mils).
  3. 3
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said second set of orifices have a diameter PI 96003621 in the range of about 0.025 mm (1 mils) to about 0.25 mm (10 mils).
  4. 4
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said first set of orifices have a diameter in the range of about 0.4 mm (15 mils) to about 0.9 mm (35 mils).
  5. 5
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said second set of orifices have a diameter in the range of about 0.08 mm (3 mils) to about 0.2 mm (7 mils).
  6. 6
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said fluid emitted from said first set of orifices has a pressure in the range of about 0.69 MN/m2 guage (100 psig) to about 3.45 MN/m2 guage (500 psig).
  7. 7
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said fluid emitted from said second set of orifices has a pressure in the range of about 3.45 MN/m2 guage (500 psig) to about 13.8 MN/m2 guage (2000 psig).
  8. 8
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said fluid emitted from said first set of orifices has a pressure in the range of about 0.86 MN/m2 guage (125 psig) to about 1.38 MN/m2 guage (200 psig).
  9. 9
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said fluid emitted from said second set of orifices has a pressure in the range of about 5.52 MN/m2 guage (800 psig) to about 10.3 MN/m2 guage (1500 psig).
  10. 10
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 including the further step of providing a third set of orifices, said third set of orifices having a diameter less than or equal to about 0.25 mm (10 mils), the fluid supplied thereto PI 96003621 having a pressure of at least 3.45 MN/m2 guage (500 psig).
  11. 11
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 10 wherein said third set of orifices have a diameter in the range of about 0.025 mm (1 mils) to about 0.25 mm (10 mils).
  12. 12
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 10 wherein said third set of orifices have a diameter in the range of about 0.08 mm (3 mils) to about 0.2 mm (7 mils).
  13. 13
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 10 wherein said fluid supplied to said third set of orifices has a pressure in the range of about 3.45 MN/m2 guage (500 psig) to about 20.7 MN/m2 guage (3000 psig).
  14. 14
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 10 wherein said fluid emitted from said third set of orifices has a pressure in the range of about 5.52 MN/m2 guage (800 psig) to about 10.3 MN/m2 guage 1500 psig.
  15. 15
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said micro-holes have an average EHD of about 0.025 mm (1 mils) to about 0.2 mm (7 mils).
  16. 16
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said micro-holes have an average EHD of about 0.05 mm (2 mils) to about 0.13 mm (5 mils).
  17. 17
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said large sized holes have an average EHD of about 0.2 mm (7 mils) to about 0.8 mm (30 mils).
  18. 18
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein the fluid from the first set of orifices is PI 96003621 directed against the upper surface of said starting film prior to directing the fluid from the second set of orifices.
  19. 19
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said micro-holes are defined by fibrils.
  20. 20
    A method of forming an apertured film from a stretchable thermoplastic polymeric material in accordance with claim 1 wherein said large sized holes are defined by fibrils.
  21. 21
    A method for forming an apertured film from a stretchable thermoplastic polymeric material comprising:a) providing a starting film comprising said stretchable thermoplastic polymeric material and having an upper surface and a lower surface;b) providing a backing member comprising localized support regions for supporting said starting film, recessed zones into which the film may be deformed by the application thereto of fluid forces, and means for allowing said applied fluid to be transported away from said backing member, c) a supporting said starting film on said backing member with portions of the lower surface of said film being in contact with the support regions of said backing member and with the upper surface of said film facing away from said backing member;d) forming irregular large sized holes in said starting film by directing a fluid in the form of substantially non-diverging, columnar streams from a first set of orifices against the upper surface of said starting film in a zone of contact to cause said starting film to stretch between said backing member localized support regions over said recessed zones, said orifices in said first set having a diameter greater than or equal to 0.25 mm (10 mils) and the fluid supplied thereto causing said starting film to rupture into a multiplicity of said large sized holes in said starting film between said localized support regions;forming irregular size micro-holes in said starting film by directing a fluid in the form of substantially non-diverging, columnar streams from a second set of orifices against the upper surface of said starting film in a zone of contact to cause said starting film to stretch between said backing member localized support regions over said recessed zones, said orifices in said second set having a diameter less than or equal to 0.25 mm (10 mils) and the fluid emitted therefrom causing said starting film to rupture into a PI 96003621 multiplicity of said micro-holes in said starting film between said localized support regions, said micro-holes being defined by fibrils of said thermoplastic material;e) moving said film from said contact zone;and f) removing said now-apertured film from said backing member.
  22. 22
    A method for forming an apertured film from a stretchable thermoplastic polymeric material comprising:a) providing an embossed starting film comprising said stretchable thermoplastic polymeric material having an upper surface and a lower surface;b) providing a backing member comprising localized support regions for supporting said starting film, recessed zones into which the film may be deformed by the application thereto of fluid forces;and means for allowing said applied fluid to be transported away from said backing member;c) supporting said starting film on said backing member with portions of the lower surface of said film being in contact with the support regions of said backing member and with the upper surface of said film facing away from said backing member;d) forming irregular size micro-holes and large sized holes in said starting film by directing a fluid in the form of substantially non-diverging, columnar streams from at least two sets of orifices against the upper surface of said starting film in a zone of contact to cause said starting film to stretch between said backing member localized support regions over said recessed zones, the orifices of the first set having a diameter greater than 0.25 mm (10 mils) and the fluid supplied thereto having a pressure less than 3.45 MN/m2 guage (500 psig), to cause said starting film to rupture into a multiplicity of said large sized holes in said starting film between said localized support regions, the orifices of the second set having a diameter less than or equal to 0.25 mm (10 mils) and the fluid supplied thereto having a pressure of at least 3.45 MN/m2 guage (500 psig), to cause said starting film to rupture into a multiplicity of said micro-holes in said starting film between said localized support regions;e) moving said film from said contact zone;and f) removing said now-apertured film from said backing member.
  23. 23
    A method of forming an apertured film in accordance with claim 22, including providing said embossed starting film with corona discharge treatment on one side thereof. PI 96003621
  24. 24
    A method of forming an apertured film in accordance with claim 22 including applying a surface active agent to one side of said apertured film.
Independent claims24