EP0248628A2

Polyurea-Polyurethane from the reaction of a polyol, an aromatic amine and an isocyanate terminated polyoxy-propylene prepolymer.

Abstract

Mid and high modulus reaction injection molding (RIM) processed polyurea-polyurethanes with excellent tensile strength, green strength, heat resistance and moisture resistance, are prepared in a "prepolymer" RIM process by reacting an organic polyisocyanate with a polyol and a chain extender wherein the polyisocyanate includes an isocyanate terminated prepolymer wherein the isocyanate terminated prepolymer is prepared by reacting an aromatic isocyanate with a polyoxypropylene polyol and a glycol. Polyurea-polyurethane moldings can be prepared from this process.

EP0248628A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 1 June 2007, 19.3 years ago.

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11 claims: 7 independent, 4 dependent

  1. 1
    A process for producing a polyurea- polyurethane, comprising reacting, in the presence of a catalyst, a polyol, a suitable chain extender, and an organic polyisocyanate prepolymer derived from an aromatic polyisocyanate having a number-averaged isocyanate functionality between about 1.8 and about 4.0 and an equivalent weight of between about 70 and about 1000, said polyisocyanate also comprising at least 50 mole percent diisocyanates, wherein said organic polyisocyanate prepolymer is produced by a process comprising reacting said aromatic polyisocyanate with (i) a polyoxypropylene polyol having a molecular weight between 600 and 12,000 and a number-averaged functionality between 1.8 and 5, and (ii) a glycol having a number-averaged molecular weight between about 70 and about 450, the weight ratio of said glycol (ii) to said polyoxypropylene polyol (i) being in the range of about 0.01 to about 1.00.
  2. 4
    A process according to any one of the preceding claims wherein said glycol comprises a mixture of tripropylene glycol and dipropylene glycol.
  3. 5
    A process according to any one of the preceding claims wherein said glycol comprises a mixture of three glycols wherein each glycol makes up at least 15 mole percent of said glycol mixture.
  4. 6
    A process according to any one of the preceding claims wherein said ratio of said glycol to said polyoxypropylene polyol by weight is in the range of between about 0.05 to about 0.50.
  5. 7
    A process according to any one of the preceding claims wherein said organic polyisocyanate pre­polymer has a final number averaged isocyanate functionality in the range between about 1.9 and about 2.5, and said aromatic isocyanate having a number averaged functionality of isocyanate groups of between about 1.9 and about 3.0, an equivalent weight of between about 85 and about 500, and comprising at least 80 mole percent diisocyanates;and said polyoxypropylene polyol has an equivalent weight of between 1000 and 4000 and a number averaged functionality of between 2 and 3;and said glycol having a molecular weight of between about 100 and about 250.
  6. 9
    A process for producing a polyurea-polyurethane molding comprising mixing, under high pressure in a reaction injection molding process, a stream A and stream B, wherein :said stream A comprises an organic polyisocyanate prepolymer which is the reaction product of reactants comprising (i)   an aromatic polyisocyanate having a number-­averaged isocyanate functionality between about 1.8 and 4.0, an equivalent weight between about 70 and about 1000, and which comprises at least 50 mole percent diisocyanates, (ii)   a polyoxypropylene polyol having a molecular weight between 600 and 12,000, and a number-­averaged functionality between 1.8 and about 5, and (iii)   a glycol having a number-averaged molecular weight between 60 and 450, wherein the weight ratio of said glycol (ii) to said polyoxypropylene polyol (iii) is between 0.01 and about 1.00;said stream B comprises a blend of a polyol having a molecular weight from about 1000 to about 10,000 and a functionality between 2.0 and 4.0, a chain extender, and a catalyst for the reaction between hydroxyl groups and isocyanate groups, and wherein said streams A and B are mixed and reacted in weight proportions within a range of about 0.3:1 to about 3:1 parts of stream A per part of stream B and such that the ratio of isocyanate groups in stream A to the total active hydrogen-containing groups in stream B is from about 0.75 to about 1.30.
  7. 10
    A process in accordance with claim 9 wherein said chain extender is a mixture of aromatic and aliphatic polyamines, having a number averaged amine functionality in the range of 1.90 to 2.25 and having a number-averaged amine equivalent weight of 250 or less.
  8. 11
    A polyurea-polyurethane prepared in accordance with any one of the preceding claims.