Nova Patents
EP0380353A2

Porous film.

Abstract

Disclosed herein is a porous film having a thickness of 90 µm or less obtained by uniaxially stretching a film produced by blow-extruding a composition comprising a linear polyethylene, a filler and a radical forming agent, the bending resistance of the porous film in both the machine and transverse directions being 50 mm or less, the moisture permeability of the porous film being 1500 g/m²·24hr or above, and the surface strength of the porous film satisfying the following relation (I): Surface strength (kg) ≧ 35 x film thickness (mm)      (I) and the process for producing the porous film defined above.

EP0380353A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 26 January 2010, 16.7 years ago.

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14 claims: 2 independent, 12 dependent

  1. 1
    A porous film having a thickness of 90 µm or less, which is obtained from a composition comprising a linear polyethylene, 0 to 50 parts by weight of a branched low-density polyethylene based on 50 to 100 parts by weight of said linear polyethylene, a filler and a radical forming agent, and has a bending resistance of 50 mm or less in both the machine and transverse directions, a moisture permeability of 1500 g/m²·24hr or above, and a surface strength satisfying the following relation (I):Surface strength (kg) ≧ 35 × film thickness (mm)      (I).
  2. 12
    A process for producing a porous film having a thickness of 90 µm or less, a bending resistance of 50 mm or less in both the machine and transverse directions, a moisture permeability of 1500 g/m²·24hr or above, and a surface strength satisfying the following relation (I):Surface strength (kg) ≧ 35 × film thickness (mm)      (I) which comprises blow-extruding a composition comprising a linear polyethylene, a filler and a radical forming agent at a blow-up ratio of 2 to 8 with a frost line height of 2 to50 times the die diameter to form a film, and uniaxially stretching the film 1.2 to 8 times the original length in the film take-up direction at a temperature in the range of MP-100 to MP-20°C, wherein MP is the melting point of said composition.