EP0156471A2

Process and apparatus for forming a continuous web, particularly polymeric film, and material produced by the process.

Abstract

The present invention provides for a process for transforming a substantially continuous web of substantially planar, deformable material having an indefinite length, a first surface, and a second surface into a formed material. The material has a transofrmation temperature range. The process comprises the following steps: (a) The web of material is provided on a forming structure with the first surface of the web of material proximate a forming surface of the forming structure. The forming surface moves in a direction of the length of the web of material and carries the web of material in that direction.(b) A liquid stream is applied to the second surface of the web of material. The liquid stream has sufficient force and mass flux to cause the web of material to be deformed toward the forming surface, such that the material acquires a substantial three-dimensional conformation.(c) The temperature of the web of material is controlled such that it remains below the transformation temperature range of the material throughout the process.

EP0156471A2, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Projected expiry passed 8 February 2005, 21.6 years ago.

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35 claims: 27 independent, 8 dependent

  1. 1
    A process for transforming a substantially continuous web of substantially planar, deformable material having an indefinite length, a first surface, and a second surface into a web of formed material, said material having a transformation temperature range, said process comprising the steps of:a) providing said web of material on a forming structure with said first surface of said web of material proximate a forming surface of said forming structure, said forming surface moving in a direction of said length of said web of material and carrying said web of material in said direction;b) applying a liquid stream to said second surface of said web of material, said liquid stream having sufficient force and mass flux to cause said web of material to be deformed toward said forming surface, such that said material acquires a substantial three-dimensional conformation;and c) controlling the temperature of said web of material such that it remains below said transformation temperature range of said material throughout said process.
  2. 4
    A process according to any one of claims 1-3 wherein said liquid stream is applied to said second surface of said web of material from high pressure spray nozzles, the liquid pressure at said nozzles being at least 350 N/cm (500 psig) preferably at least 700 N/c m .
  3. 5
    A process according to any one of claims 1-4 wherein said liquid is water at a temperature of from 40°C to 90°C.
  4. 6
    A process according to any one of claims 1-5 wherein said forming surface is the cylindrical surface of a forming drum.
  5. 7
    A process according to any one of claims 1-5 wherein said forming surface is the outer surface of an endless belt.
  6. 8
    A process according to any one of claims 1-7 wherein said formed material is debossed and perforated, said forming structure having a patterned forming surface and an opposed surface, said forming surface comprising depressions which have sidewalls and end in holes, said forming structure being open frcm said holes in said forming surface to said opposed surface, said liquid stream having sufficient force and mass flux to cause perforations to be created in said second surface of said web of material, at least a portion of said liquid stream being caused to flow through said perforations in said web of material, through said holes in said forming surface, and through said forming structure, said liquid stream having sufficient force and mass flux to cause said web of material to be extended into said depressions and to cause said first surface of said web of material to be urged toward said sidewalls of said depressions, such that perforated protuberances are formed in said web of material.
  7. 9
    A process according to any one of claims 2-8 wherein said thermoplastic film is selected from polyethylenes, polyprcpylenes and ccpolymers and blends containing substantial fractions of these materials.
  8. 10
    A process according to any one of claims 2-9 wherein said film has a thickness of from 0.01 mm to 0.04 mm.
  9. 11
    A process according to any one of claims 9-10 wherein a vacuum is applied beneath said opposed surface of said forming structure in an area where said liquid stream flows through said holes into said forming structure.
  10. 12
    A process according to any one of claims 9-11 wherein, when viewed perpendicular to said direction of movement of said forming surface, said liquid stream is set at a direction of travel and impinges said forming surface at a point such that the angle between said direction of travel of said liquid stream as it approaches said forming surface and said direction of movement of said forming surface from said point where said liquid stream impinges said forming surface is an acute angle.
  11. 13
    A process according to any one of the preceding claims wherein said forming surface moves in said direction of said length of said web of material at a linear speed of at least 4 m/sec.
  12. 14
    A process according to any one of the preceding claims wherein only a portion of said web of material is formed.
  13. 15
    A process according to any one of claims 9-14 wherein each said protuberance of said web of debossed and perforated material comprises a sidewall having an inner surface comprising a portion of said second surface of said film and an outer surface comprising a portion of said first surface of said film, said film exhibiting a surface roughness on at least one of said first and second surfaces of said film prior to forming, and said film exhibiting said surface roughness on a portion of at least one of said inner and outer surfaces of said sidewall of each said protuberance of said debossed and perforated film.
  14. 16
    A process according to any one of claims 9-15 wherein said forming surface comprises land areas between said depressions, said land areas comprising a surface roughness.
  15. 17
    An apparatus for transforming a substantially continuous web of substantially planar material having an indefinite length into a formed material, said material having a transformation temperature range, said apparatus comprising;a) a forming structure having a patterned forming surface and an opposed surface;b) means for moving said forming structure in a direction of said length of said web of material;c) means for applying a liquid stream to said forming surface with sufficient force and mass flux to cause said web of material to be formed substantially in the image of said farming surface;and d) means for controlling temperature of said web of material such that the temperature of said material remains below said transformation temperature range.
  16. 20
    An apparatus according to either one of claims 18 and 19 wherein said nozzles are set such that, when viewed perpendicular to said direction of movement of said forming surface, said liquid stream has a direction of travel, and the angle between said direction of travel of said liquid stream and said direction of movement of said forming surface is an acute angle.
  17. 21
    An apparatus according to any one of claims 17-20 wherein said means for controlling the temperature of said web of material comprises means for controlling the temperature of said liquid stream.
  18. 22
    An apparatus according to any one of claims 17-21 wherein said formed material is debossed and perforated, said forming surface comprising depressions which have sidewalls and end in holes, said forming structure being open from said holes in said forming surface to said opposed surface;said means for applying a liquid stream to said forming surface providing sufficient force and mass flux to cause perforated protuberances to be formed in said web of material.
  19. 24
    A debossed and perforated material comprising a polymeric film having a first surface and a second surface separated by a maximum thickness T, said material comprising a land area which has an upper surface which defines a plane and comprises a portion of said second surface of said film and a lower surface which comprises a portion of said first surface of said film, said film exhibiting a surface roughness on at least one of said upper and lower surfaces of said land area, said film comprising perforated protuberances, each of said protuberances comprising the following:a) a first aperture located in said plane, said first aperture having a cross-sectional area such that a circle of diameter D can be inscribed therein;b) a second aperture wholly remote from and below said plane;c) a sidewall which continuously interconnects said first and second apertures to one another, said sidewall having an inner surface comprising a portion of said second surface of said film and an outer surface comprising a portion of said first surface of said film, said sidewall having an average depth L from said plane, measured about the periphery of said second aperture in a direction perpendicular to said plane, said film exhibiting said surface roughness on at least one of said inner and outer surfaces of said sidewall to an average depth of at least L/4 from said plane, said film exhibiting a surface smoothness on both said inner and outer surfaces of said sidewall adjacent said second aperture;d) a ratio of L/T of at least 5;and e) a ratio of L/D of at least 0.5.
  20. 25
    A debossed and perforated material comprising a polymeric film having a first surface and a second surface separated by a maximum thickness T, said material comprising a land area which has an upper surface which defines a plane and comprises a portion of said second surface of said film and a lower surface which comprises a portion of said first surface of said film, said film comprising perforated protuberances, each of said protuberances comprising the following:a) a first aperture located in said plane, said first aperture having a cross-sectional area such that a circle of diameter D can be inscribed therein;b) a second aperture wholly remote from and below said plane;c) a sidewall which continuously interconnects said first and second apertures to one another, said sidewall having an inner surface comprising a portion of said second surface of said film and an outer surface comprising a portion of said first surface of said film, said sidewall having an average depth L from said plane, measured about the periphery of said second aperture in a directicn perpendicular to said plane;d) a ration of L/T of at least 5;and e) a ratio of L/D of at least 0.5;said film having adjacent perforated protuberances having D's which differ by a factor of at least 2.
  21. 26
    A debossed and perforated material comprising a polymeric film having a first surface and a second surface separated by a maximum thickness T, said material comprising a land area which has an upper surface which defines a plane and comprises a portion of said second surface of said film and a lower surface which comprises a portion of said first surface of said film, said film comprising perforated protuberances, each of said protuberances comprising the following :a) a first aperture located in said plane, said first aperture having an irregular-shaped cross-sectional area such that at least two circles of diameters D can be inscribed therein such that said two circles do not overlap, said two circles having D's which differ by a factor of at least 2;b) a second aperture wholly remote from and below said plane;c) a sidewall which continuously interconnects said first and second apertures to one another, said sidewall having an inner surface comprising a portion of said second surface of said film and an outer surface comprising a portion of said first surface of said film, said sidewall having an average depth L from said plane, measured about the periphery of said second aperture in a direction perpendicular to said plane;d) a ration of L/T of at least 5;and e) a ration of L/D of at least 0.5.
  22. 29
    A debossed and perforated material according to any one of claims 25-28 wherein said film exhibits a surface roughness on at least one of said upper and said lower surfaces of said land area, and on at least one of said inner and said outer surfaces of said sidewall to - an average depth of at least L/4 from said plane.
  23. 30
    A debossed and perforated material according to either one of claims 24 and 29 wherein said film exhibits said surface roughness on at least one of said inner and outer surfaces of said sidewall to a depth of at least L/2 from said plane.
  24. 31
    A debossed and perforated material according to any one of claims 25-28 wherein said film exhibits a surface smoothness on both said inner and said outer surfaces of said sidewall adjacent said second aperture.
  25. 32
    A debossed and perforated material according to any one of claims 24-31 wherein said ratio of L/T is at least 10, preferably at least 15.
  26. 33
    A debossed and perforated material according to any one of claims 24-32 wherein said ratio of L/D is at least 0.7, preferably at least 1.0.
  27. 34
    A debossed and perforated material according to any one of claims 24-33 wherein said polymeric film is a thermoplastic film selected from the group consisting of polyethylenes, polypropylenes, and copolymers and blends containing substantial fractions of these materials.
Independent claims27