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Liquid curable polyorganosiloxane compositions

  • US 4,529,789 A
  • Filed: 08/09/1984
  • Issued: 07/16/1985
  • Est. Priority Date: 03/23/1984
  • Status: Expired due to Term
First Claim
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1. A pressure sensitive optical waveguide device where at least one beam of light passing through said waveguide is interrupted or deflected by deformation of said waveguide, where said waveguide consists essentially of a gel obtained by curing a curable liquid polyorganosiloxane composition consisting essentially of the produte obtained by mixing (A) 100 parts by weight of at least one liquid triorganosiloxy endblocked polydimethylsiloxane, said triorganosiloxy radicals being selected from dimethylvinylsiloxy and methylphenylvinylsiloxy, where said polydimethylsiloxane exhibits a viscosity of from 1.0 to 500 Pa.s at 25°

  • C.;

    (B) from 5 to 25 parts of a benzene-soluble copolymer consisting essentially of units of the formulae CH2

    CH(CH3)2 SiO1/2, (CH3)3 SiO1/2 and SiO4/2, where the molar ratio of the combination of CH2

    CH(CH3)2 SiO1/2 and (CH3)3 SiO1/2 units to SiO4/2 units is from 0.7;

    1 to 1.2;

    1, inclusive, and CH2

    CH(CH3)2 SiO2 units constitute from 2 to 8 percent by weight of said copolymer;

    (C) an organosiloxane of the formula H(CH3)2 SiO[Si(CH3)2 O]x Si(CH3)2 H, where x is an integer from 0 to 50, in an amount sufficient to provide at least 1.6 silicon-bonded hydrogen atoms per vinyl radical present in said composition;

    (D) a polyorganosiloxane containing at least three silicon-bonded hydrogen atoms per molecule in an amount sufficient to provide from 5 to 15 percent of the silicon-bonded hydrogen atoms present in (C) and (D), with the proviso that the total number of silicon-bonded hydrogen atoms present in (C) and (D) is from 1.90 to 2.80 times the number of vinyl radicals present in said composition; and

    (E) an amount of platinum catalyst sufficient to promote curing of said composition; and

    where said composition when cured is transparent and exhibits the following physical properties;

    a compressibility of 2.2 mm. under a load of from 14 to 50 g. applied by a 1.6 cm. diameter spherical foot; and

    a resistance to penetration under a load of at least 400 g. applied by a 1.2 cm. diameter cylindrical foot.

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