EP0443853A2

Controlled pore cmposite polytetrafluoroethylene article and method therefor.

Abstract

A composite article having controlled void volume and mean pore size comprises: (a) polytetrafluoroethylene (PTFE) fibril matrix, and(b) insoluble, non-swellable sorptive particles enmeshed in said matrix, the ratio of non-swellable sorptive particles to PTFE is in the range of 40:1 to 1:4 by weight, the composite article having a porosity in the range of 30 to 80 percent void volume and a mean pore size in the range of 0.3 to 5 micrometers, preferably with at least 90 percent of pores having a size less than 3.6 micrometers. The article is prepared by incorporating lubricant in the precursor admixture in an amount sufficient to provide a soft dough-like mass and exceed the lubricant sorptive capacity of the particles by at least 3 weight percent and up to an amount at which the mass loses its integrity.

EP0443853A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 21 February 2011, 15.6 years ago.

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11 claims: 8 independent, 3 dependent

  1. 1
    A method for controlling porosity and mean pore size in a composite sheet comprising the steps of:a) admixing lubricant with a blend comprising insoluble, non-swellable, sorptive particles and polytetrafluoroethylene to form a soft dough-like mass, the lubricant being present in an amount to exceed the sorptive capacity of the particles by at least 3 weight percent, said mass having a cohesive consistency, and the ratio of insoluble particles to PTFE being in the range of 40:1 to 1:4;b) intensively mixing said mass at a temperature and for a time sufficient to cause initial fibrillation of said PTFE particles;c) biaxially calendering said mass between gaps in calendering rolls maintained at a temperature and for a time, while closing the gap between the calendering rolls with each successive calendering operation, to cause additional fibrillation of said PTFE particles to form a self-supporting tear-resistant sheet.
  2. 3
    The method according to claims 1 and 2 wherein said lubricant is water, water-based solvent, or organic solvent.
  3. 4
    The method according to claims 1 to 3 wherein said lubricant exceeds the lubricant sorptive capacity of particles by an amount in the range of 3 to 200 weight percent.
  4. 5
    The method according to claims 1 to 4 wherein said particles are carbon, an organic compound, a polymer, an inorganic oxide, or ion exchange or chelating particles.
  5. 6
    The method according to claims 1 to 5 wherein said sorptive particles are selected from the group consisting of silica, alumina, titania, zirconia, and combinations thereof.
  6. 7
    The method according to claims 1 to 6 wherein said particles comprise a support having an insoluble sorptive coating thereon.
  7. 8
    The method according to claims 1 to 7 wherein said blend further comprises more than 0 and up to 28.99 parts per part PTFE of non-swellable property modifiers, provided that the total particles do not exceed 29 parts particles to 1 part PTFE.
  8. 11
    The composite article according to claims 9 and 10 useful in extraction applications, separations applications, diagnostic applications, or environmental applications.