Nova Patents
EP0953675A2

Silicone coated textile fabrics

Abstract

A textile fabric which has been coated with an elastomer-forming silicone-based composition, comprising an organopolysiloxane polymer having a siloxane backbone being end-blocked with at least two silicon-bonded reactive groups, preferably alkenyl, a cross-linking organosilicon material having at least 3 silicon-bonded reactive groups, preferably SiH, a catalyst, a first reinforcing filler, preferably silica or a silicone resin, and at least 2 parts by weight for every part of the first filler, of a second substantially laminar filler, preferably talc, pyrophillite, vermiculite, smectite or mica. The coated fabric may have among other benefits, a lower friction value and limiting oxygen index. Fabrics are specifically useful for inflatable safety restraints.

EP0953675A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 27 April 2019, 7.4 years ago.

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11 claims: 7 independent, 4 dependent

  1. 1
    A textile fabric which has been coated with an elastomer-forming silicone-based composition, comprising A. an organopolysiloxane polymer having a siloxane backbone being end-blocked with at least two silicon-bonded groups R, wherein R denotes an olefinically unsaturated hydrocarbon substituent, an alkoxy group or a hydroxyl group, B. a cross-linking organosilicon material having at least 3 silicon-bonded reactive groups, capable of reacting with organopolysiloxane polymer A, C. a catalyst capable of promoting the reaction between the silicon-bonded groups R of compound A and the silicon-bonded reactive group of compound B, D. a first filler which is a reinforcing filler for the silicone-based composition characterised in that the composition also comprises E. at least 2 parts by weight for every part of the first filler, of a second filler, which has a substantially laminar form.
  2. 2
    A textile fabric according to Claim 1, further characterised in that organopolysiloxane polymer (A) has the general structure II wherein R 1 is a monovalent hydrocarbon group having up to 18 carbon atoms, R 2 is a monovalent hydrocarbon or hydrocarbonoxy group or a hydroxyl group, and wherein x is an integer having a value of from 10 to 1500.
  3. 3
    A textile fabric according to Claim 2, further characterised in that in organopolysiloxane (A) R 2 denotes an alkenyl group having up to 8 carbon atoms, with the formula -R 4 y -CH=CH 2 , where R 4 denotes a divalent hydrocarbon group having up to 6 carbon atoms, y has a value of 0 or 1, and x has a value of from 10 to 1500.
  4. 4
    A textile fabric according to any one of the preceding claims, further characterised in that the cross-linking organosilicon material (B) comprises at least one unit of the general formula R 1 a R 5 b SiO 4-a-b/2 wherein R 1 is a monovalent hydrocarbon group having up to 18 carbon atoms, a and b have a value of from 0 to 3, provided a+b is less than or equal to 3 and R 5 is a hydrogen atom, a hydroxyl or an alkoxy group.
  5. 5
    A textile fabric according to Claim 4 further characterised in that organosilicon material (B) has the general formula (VIII) or (IX)         R 7 R 6   2 SiO(R 6   2 SiO) p (R 6 HSiO) q SiR 6   2 R 7      (VIII) wherein R 6 denotes an alkyl or aryl group having up to 10 carbon atoms, R 7 is a group R 6 or a hydrogen atom, p has a value of from 0 to 20, g has a value of from 1 to 70, and there are at least 3 silicon-bonded hydrogen atoms present per molecule and wherein catalyst (C) is a Group VIII metal-based catalyst based on rhodium, ruthenium, palladium, osmium, irridium or platinum compounds or complexes.
  6. 6
    A textile fabric according to any one of the preceding claims, further characterised in that the first filler (D) is selected from silica, titania, ground quartz, calcium carbonate, alumino silicates and organosilicon resins, having an average particle size of from 0.1 to 20 µm.
  7. 7
    A textile fabric according to Claim 6, further characterised in that the surface of the first filler is made hydrophobic.
  8. 8
    A textile fabric according to any one of the preceding claims, further characterised in that the width and length of the second filler particles (E) is at least ten times greater than the height of the filler particles and the average diameter is from 5 to 500µm, and the height or thickness from 1 to 100 Ångstrom.
  9. 9
    A textile fabric according to any one of the preceding claims, further characterised in that filler (E) is selected from philosilicates, laminar quartz, metal flakes, expanded graphite, zeolites, clays, micas, laminar graphite, laminar silicates, pyrophillite, talc, mica, vermiculite and smectite.
  10. 10
    A textile fabric according to any one of the preceding claims, further characterised in that the fabric is made from synthetic fibres or blends of natural and synthetic fibres, polyester, polyimides, polyethylene, polypropylene, polyester-cotton, glass fibres or polyamide fibres.
  11. 11
    A process for making a textile fabric according to any one of the preceding claims, which comprises applying to a textile fabric an elastomer-forming silicone-based composition and allowing the composition to cure to an elastomeric material, characterised in that the composition comprises A. an organopolysiloxane polymer having a siloxane backbone being end-blocked with at least two silicon-bonded groups R, wherein R denotes an olefinically unsaturated hydrocarbon substituent, an alkoxy group or a hydroxyl group, B. a cross-linking organosilicon material having at least 3 silicon-bonded reactive groups, C. a catalyst capable of promoting the reaction between the silicon-bonded groups R of compound A and the silicon-bonded reactive group of compound B, D. a first filler which is a reinforcing filler for the silicone-based composition E. at least 2 parts by weight for every part of the first filler, of a second filler, which has a substantially laminar form.