EP0832318A2

Controlling the porosity and permeation of a web

Abstract

Products and methods for controlling the porosity and permeation of a web are provided using a curable thixotropic shear thinnable polymer composition that preferably encapsulates a plurality of fibers of the web and/or forms an internal layer within the web. Webs suitable for several different uses are featured, for example medical garments resistant to permeation by a virus or bacteria. The effective pore size of the web is controlled by regulating various factors such as the thickness of the polymer composition encapsulating the fibers and the thickness and placement of the internal polymer layer. Other factors include the polymer density, structure, and crosslinking orientation, as well as the diffusion, permeation and sorption of the polymer.

EP0832318A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 16 May 2016, 10.4 years ago.

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84 claims: 7 independent, 77 dependent

  1. 1
    Claims of equivalent WO 9636761 A2 That which is claimed is:1. A method of controlling the effective pore size of a web having a plurality of web members with interstices therebetween comprising the steps of: selecting a curable, shear thinnable, thixotropic polymer composition having physical entanglements and a predetermined number of crosslinking reactive sites;tensioning the web;applying said polymer composition to said web;subjecting the polymer composition to sufficient shear thinning to reduce the physical entanglements and to form (a) a thin film of predetermined thickness encapsulating at least some ofthe web members and/or (b) a substantially continuous internal layer within the web;and curing the web to provide a treated web with a predetermined effective pore size.
  2. 51
    The method claim 1 wherein said curable thixotropic material is cured at a temperature between 250°F and 500°F.
  3. 52
    The method claim 1 wherein said curable thixotropic material is cured for a period of time between 30 and 120 seconds.
  4. 55
    A method of controlling the effective pore size of a web having a matrix with open cells therein comprising the steps of:selecting a curable, shear thinnable, thixotropic polymer composition having physical entanglements and a predetermined number of crosslinking reactive sites;tensioning the web;applying said polymer composition to said web;subjecting the polymer composition to sufficient shear thinning to reduce the physical entanglements and to form (a) a thin film of predetermined thickness lining at least some of the open cells and/or (b) a substantially continuous intemal layer within the web;and curing the web to provide a treated web with a predetermined effective pore size.
  5. 56
    A method of controlling the effective pore size of a web having a plurality of web members with interstices therebetween comprising the steps of:applying tension to the web;applying a curable, shear thinnable, thixotropic polymer composition onto a surface ofthe tensioned web;shear thinning the polymer composition to form (a) a thin film of predetermined thickness encapsulating at least some ofthe web members and/or (b) a substantially continuous intemal layer within the web;curing the web;and controlling the tension ofthe web, the amount of polymer composition applied, and the shear thinning forces to obtain an effective pore size upon cure of between 0.025 and 1 micron.
  6. 60
    An article comprising a web having a shear thinnable, thixotropic material positioned within the web which is cured to a predetermined cross linking density to conrol the effective pore size ofthe web.
  7. 77
    A porous, non-rigid, shear thinned silicone polymer composition having a thickness of up to 20 microns comprising:(i) 50 to 400 parts of a liquid vinyl chain-terminated polysiloxane having the formula: wherein R and R1 are monovalent hydrocarbon radicals free of aliphatic unsaturation with at least 50 mole percent ofthe R1 groups being methyl, and wherein n is sufficient to produce a viscosity of 40,000 - 200,000 centipoise at 25 degrees Celsius;(ii) 100-800 parts of a resinous organopolysiloxane copolymer comprising: (a) (R )3Si005 units and Si02 units, or (b) (R3)2Si0o j units, (R3)2SiO units and Si02 units, or (c) mixtures thereof, where R2and R3 are selected from the group consisting of vinyl radicals and monovalent hydrocarbon radicals free of aliphatic unsaturation, where from about 1.5 to about 10 mole percent ofthe silicon atoms contain silicon-bonded vinyl groups, where the ratio of monofunctional units to tetrafunctional units is from about 0.5 : 1 to about 1:1, and the ratios of difunctional units to tetrafunctional units ranges up to about 0.1 : 1 ;(iii) 0.02 to 2 parts of a platinum or platinum containing catalyst;and (iv) 50 to 100 parts of a liquid organohydrogenpolysiloxane having the formula: (R)a(H)bSiOc wherein c= (4-a-b)/2, b is in the range of 0.3 to 0.35, and the sum of a and b is in the range of 2.0 to 2.7.