Nova Patents
EP0210040A2

Highly heat-sensitive film for stencil.

Abstract

The present invention relates to a highly sensitive heat-sensitive film for stencil. This invention provides a highly heat-sensitive film for stencil, comprising a thermoplastic resin having a coefficient of temperature and melt viscosity (ΔT/Δ log VI) of not more than 100 and a thermal shrinkage (X%) at 100°C and a thermal shrinkage stress (Y g/mm2) at 100°C falling respectively in the ranges ofthe formulas; 15 ≦ X ≦ 80 and 75 ≦ Y ≦ 500; and both falling in the range of the formula; -8X + 400 ≦ Y ≦ -10X + 1000; having a thickness in the range of 0.5 to 15 µm, and excelling in low-energy per- formation property. The film of this invention is superior in a low temperature perforation property, capable of being perforated with a low energy thermal head or with a low energy flash irradiation for making a plate; expansion of perforations is small when the film is perforated; and its change with time (dimensional change) is small and its sizes are stable.

EP0210040A2, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Projected expiry passed 15 July 2006, 20.2 years ago.

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10 claims: 3 independent, 7 dependent

  1. 1
    A highly heat-sensitive film for stencil, comprising a thermoplastic resin having a coefficient of temperature and melt viscosity (AT/A log VI) of not more than 100 and a thermal shrinkage (X%) at 100°C and a thermal shrinkage stress (Y g/mm 2 ) at 100°C falling respectively in the ranges of the formulas;15 S X ≦ 80 and 75 ≦ Y ≦ 500;and both falling in the range of the formula;-8X + 400 ≦ Y ≦ -10X + 1000;having a thickness in the range of 0.5 to 15 µm, and excelling in low-energy perforation property.
  2. 2
    A film according to Claim 1, wherein said thermoplastic resin has a degree of crystallinity in the range of 0 to 30%.
  3. 3
    A film according to Claim 1, wherein said thermoplastic resin has a Vicat softening point in the range of 40 to 200°C.
  4. 4
    A film according to Claim 1 or Claim 2, wherein said thermoplastic resin in a state forming a film has a constitution falling between substantially amorphous level and a degree, 15%, of crystallinity.
  5. 5
    A film according to Claim 1, Claim 2, Claim 3, or Claim 4, wherein said thermoplastic resin has, as an additive component, at least one monomer copolymerized therewith in an amount of not less than 10 mol% and not more than 40 mol%.
  6. 6
    A film according to Claim 1, Claim 4, or Claim 5, wherein said thermoplastic resin is selected from among the thermoplastic resins having copolymerized polyesters and copolymerized polyamides as main components thereof.
  7. 7
    A highly sensitive stencil sheet excellent in low-energy perforation property, which stencil sheet comprises a film 0.5 to 15 µm in thickness consisting of a thermoplastic resin having a coefficient of temperature and melt viscosity ( ΔT/Δ log VI) of not more than 100 and exhibiting a thermal shrinkage (X%) at 100°C and a thermal shrinkage stress (Y g/mm 2 ) respectively falling in the ranges of the formulas;15 ≦ X ≦ 80 and 75 ≦ Y ≦ 500, and both falling in the range of the formula;-8X + 400 ≦ Y ≦ -10X + 1000;and a porous supporting member permitting permeation therethrough of printing ink, avoiding being substantially degenerated under the heating conditions existing during the perforation of said film, and having said film laminated thereon.
  8. 8
    A stencil sheet according to Claim 7, wherein said porous supporting member is selected from among tissues obtained by combining and bundling fibers of basis weight of 30 to 3 (g/m 2 ) and woven fabrics obtained by weaving fibers 500 to 15 mesh.
  9. 9
    A stencil sheet according to Claim 7, wherein said film and said porous supporting member are bonded to each other with an adhesive composition of basis weight of 0.1 to 8 (g/m 2 ).
  10. 10
    A perforated film comprising a film prepared by perforating a film comprising a thermoplastic resin having a coefficient of temperature and melt viscosity ( AT/A log VI) of not more than 100 and a thermal shrinkage (X%) at 100°C and a thermal shrinkage stress (Y g/mm 2 ) at 100°C falling respectively in the ranges of the formulas;15 ≦ X ≦ 80 and 75 ≦ Y ≦ 500;and both falling in the range of the formula;-8X + 400 ≦ Y ≦ -10X + 1000;having a thickness in the range of 0.5 to 15 µm, and possessing substantially discontinuous perforations 1 to 200 dots/mm at least in one direction of a perforated area.