EP0352802A2

Breathable microporous film and method for making it.

Abstract

A method for making soft, flexible, microporous films having high tensile strength and high breathability levels for air and water vapor and high hydrostatic resistance to penetration by liquid water, in which a film fabricated by blending a mixture of a polymer or copolymer of an alpha-olefin with 60 to 75% by weight of an inorganic filler or glass beads having particle sizes within the range of 10 to 15 micrometers and calcium stearate as a processing aid is biaxially stretched from about 1.5 to about 7 times in each direction at a temperature of from about 20 DEG to about 160 DEG C, and the moisture level in the blended composition is maintained below 700 parts per million before fabricating the film; the film so made having a Gurley porosity of from 0.1 to 20 seconds; and its use in disposable items such as panty liners, diapers, bed sheets, and hospital gowns, or, if the filler consists of glass beads, its use as a battery separator.

Term

Term ended

Projected expiry passed 27 July 2009, 17.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

25 claims: 9 independent, 16 dependent

  1. 1
    A method for making soft, flexible, microporous films having high tensile strength and good permeance or "breathability" levels for air and water vapor and high hydrostatic resistance to penetration by liquid water, in­cluding the steps of melt-blending a mixture of a polymer or copolymer of an alpha-olefin, a particulate filler, and cal­cium stearate as a processing aid, fabricating a film, and biaxially stretching the film, characterized in that the mixture contains 60 to 75% by weight of an inorganic filler or glass beads having particle sizes within the range of 10 to 15 micrometers in mean diameter, the moisture level in the blended composition is maintained below 700 parts per million prior to fabricating the film, and the film is stretched in two directions from about 1.5 to about 7 times in each direction at a temperature range of from about 20° to about 160°C.
  2. 5
    A method for making microporous films as claimed in any of the preceeding claims, further characterized in that the blended and extruded composition is cooled and its mois­ture level is simultaneously maintained by flowing air over it on a moving conveyor belt.
  3. 6
    A method for making microporous films as claimed in any of the preceeding claims, further characterized in that the polymer or copolymer of an alpha-olefin is an alpha-olefin having 1-8 carbon atoms or a copolymer of ethylene with pro­pylene or with an alpha-olefin of 4-8 carbon atoms.
  4. 9
    A-method for making microporous films as claimed in any of the preceeding claims, further characterized in that the mixture contains about 20 to 37% by weight of polypropylene, and the filler is calcium carbonate.
  5. 12
    A method for making microporous films as claimed in any of the preceeding claims, further characterized in that the mixture contains about 20 to 37% by weight of poly­propylene, and the filler is glass beads.
  6. 15
    A method for making microporous films as claimed in any of the preceeding claims, further characterized in that the mixture contains about 65 to 75% by weight of polybutylene, and the filler is calcium carbonate.
  7. 18
    A method for making microporous films as claimed in any of the preceeding claims, further characterized in that the mixture contains about 60 to 70% by weight of polyethylene, and the filler is calcium carbonate.
  8. 21
    A method for making microporous films as claimed in any of the preceeding claims, further characterized in that the mixture contains from about 0.1 to about 2% by weight of a stabilizer against degradation by exposure to UV light, oxygen, and heat.
  9. 22
    A biaxially oriented microporous film comprising a polymer or copolymer of an alpha-olefin, a particulate filler, and calcium stearate, characterized in that it is made by the method as claimed in any of the preceeding claims and further characterized in that it has a Gurley porosity, based on method B, ASTM D-726, of 0.1 second to 20 seconds so that the film has good air and water vapor transmission rates but is substantially impenetrable by liquid water.