EP0119979A2

Terpolymers useful as processing aids for vinyl halide polymers.

Abstract

Terpolymers having a molecular weight of at least about 100,000 and a glass transition temperature of at least about 50°C comprising repeating units derived from an olefin, a diester of an addition polymerizable unsaturated dicarboxylic acid, and a solubilizing monomer which promotes compatibility of the terpolymer with a vinyl halide polymer are useful in particulate form as processing aids for polyvinyl halide polymers. Compositions comprising blends of vinyl halide polymers and the terpolymers are adapted for use in producing polyvinyl halide polymer products such as shaped plastic articles.

EP0119979A2, drawing sheet 1
Sheet 1 of 30

Term

Term ended

Projected expiry passed 16 March 2004, 22.5 years ago.

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40 claims: 20 independent, 20 dependent

  1. 1
    A terpolymer having a molecular weight of at least about 100,000 and a glass transition temperature of at least about 50°C., said terpolymer comprising between about 30% and about 90% by weight of repeating units derived from an olefin, between about 1% and about 30% by weight of repeating units derived fran a diester of an addition-polymerizable unsaturated dicarboxylic acid, and between about 1% and about 40% by weight of repeating units derived from a solubilizing monomer which promotes compatibility of the terpolymer with a vinyl halide polymer.
  2. 2
    A terpolymer as set forth in Claim 1 wherein :said olefin comprises a vinyl aromatic compound;said diester is selected from dialkyl fumarates, diaryl fumarates, aryl alkyl fumarates, dialkyl maleates, diaryl maleates, aryl alkyl maleates, dialkyl itaconates, diaryl itaconates, and aryl alkyl itaconates;and said solubilizing monomer is selected from acrylic acid, methacrylic acid, alkyl acrylates, alkyl methacrylates, acrylonitrile and methacrylonitrile.
  3. 3
    A terpolymer as set forth in Claim 2 wherein said diester comprises a dialkyl fumarate.
  4. 4
    A terpolymer as set forth in either of Claims 2 and 3 wherein said solubilizing monomer comprises acrylonitrile or methacrylonitrile.
  5. 5
    A terpolymer as set forth in any of Claims 2 to 4 wherein said vinyl aromatic compound is styrene.
  6. 6
    A terpolymer as set forth in any of Claims 1 to 5 having a molecular weight between about 500,000 and about 2,000,000.
  7. 7
    A terpolymer as set forth in any of Claims 1 to 6 having a glass transition temperature of between about 60°C. and about 100°C.
  8. 8
    A terpolymer as set forth in any of Claims 1 to 7 containing between about 0.01% and about 5% by weight repeating units derived from a free addition-polymerizable dicarboxylic acid.
  9. 9
    A terpolymer as set forth in any of Claims 1 to 8 wherein said terpolymer comprises between about 60% and about 85% by weight of said olefin, between about 5% and about 20% by weight of said diester, and between about 10% and about 20% by weight of said solubilizing monomer.
  10. 10
    A terpolymer as set forth in Claim 9 wherein said olefin is styrene, said diester is a dialkyl fumarate, and said solubilizing monomer is acrylonitrile or methacrylonitrile.
  11. 11
    A terpolymer as set forth in any of Claims 1 to 8 having a nonrandom distribution of repeating units, a terminal portion of said terpolymer containing a proportion of said solubilizing mmonomer at least sufficient to impart dispersive compatibility with said vinyl halide polymer.
  12. 12
    A terpolymer as set forth in Claim 11 and having a segmented structure comprising :a first segment containing between about 30% and about 90% by weight of said olefin, between about 1% and about 30% by weight of said diester and between O and about 40% by weight of said solubilizing monomer, and at least one terminal segment comprising between about 10% and about 90% by weight of said olefin, between 0 and about 10% by weight of said diester and between about 10% and about 90% by weight of said solubilizing monomer.
  13. 13
    A terpolymer as set forth in Claim 12 wherein said first segment contains between about 60% and about 85% by weight of said olefin, between about 5% and about 20% by weight of said diester and between about 10 and about 20% by weight of said solubilizing monomer, and said terminal segment contains between about 60% and about 80% by weight of said olefin and between about 20% and about 40% by weight of said solubilizing monomer.
  14. 14
    A terpolymer as set forth in either of Claims 12 and 13 comprising between about 0.2 and about 1.0 part by weight of terminal segment per part by weight of said first segment.
  15. 15
    A terpolymer as set forth in any of Claims 12 to 14 wherein said first segment has a molecular weight of at least about.100,000 (weight average).
  16. 16
    A terpolymer as set forth in any of Claims 12 to 15 wherein said olefin comprises styrene, said diester comprises dialkyl fumarate and said solubilizing monomer comprises acrylonitrile or methacrylonitrile.
  17. 17
    A segmented terpolymer as set forth in Claim 16 comprising between about 14 and about 18 parts by weight dibutyl fumarate per 100 parts by weight of terpolymer, and wherein said terminal segment contains between about 4 and about 8 parts by weight acrylonitrile and between about 12 and about 16 parts by weight styrene per 100 parts by weight of said terpolymer.
  18. 18
    A segmented terpolymer as set forth in Claim 17 having a molecular weight of between about 800,000 and about 1,500,000 and a glass transition temperature of between about 80°C. and about 100°C.
  19. 19
    A terpolymer as set forth in any of Claims 1 to 10 which is particulate and is adapted for use as a processing aid for a vinyl halide polymer.
  20. 20
    A terpolymer as set forth in any of Claims 11 to 18 which is particulate and is adapted for use as a processing aid for a vinyl halide polymer.
  21. 21
    A terpolymer as set forth in either of Claims 19 or 20 in which at least about 90% by weight of the particles are smaller than about 100 micrometres.
  22. 22
    A granular processing aid adapted to be reduced to a powder and blended with a vinyl halide polymer to produce a composition having superior mechanical processing properties, the granules thereof comprising agglomerates of a particulate terpolymer as defined in Claim 19, said agglomerates having a particle size of between 0.4 mm and about 1.6 mm.
  23. 23
    A granular processing aid adapted to be reduced to a powder and blended with a vinyl halide polymer to produce a composition having superior mechanical processing properties, the granules thereof comprising agglomerates of a particulate terpolymer as defined in Claim 20, said agglomerates having a particle size of between about 0.4 mm and about 1.6 mm.
  24. 24
    A process for preparing an addition terpolymer comprising the steps of :preparing an emulsion polymerization medium comprising water, a surfactant and a free radical initiator;slowly adding to said medium and copolymerizing therein an olefin, a diester of an addition-polymerizable unsaturated dicarbaxylic acid, and a solubilizing monomer which promotes compatibility of the terpolymer with a vinyl halide polymer, said monomers being added in such proportion as to produce a terpolymer containing between about 30% and about 90% by weight of repeating units derived from said olefin, between about 1% and about 30% by weight of repeating units derived from said diester, and between about 1% and about 40% by weight of repeating units derived from said solubilizing monomer;and polymerizing said monomers in said medium to produce a latex of said terpolymer.
  25. 25
    A process as set forth in Claim 24 wherein said medium is heated to a temperature at which the polymerization reaction proceeds and the monomers are slowly and continuously added to the medium at a rate such that the progress of the polymerization is limited by the rate of addition of monomers rather than by the kinetics of the polymerization.
  26. 26
    A process as set forth in Claim 25 wherein all of said monomers are continuously added in essentially constant relative proportions and a random terpolymer is produced.
  27. 27
    A process as set forth in Claim 26 wherein said monomers are such and are added in such relative proportions as to produce a terpolymer as defined in any of Claims 2 to 10.
  28. 28
    A process as set forth in Claim 25 wherein a segmexited polymer is produced by initially adding said monomers in such relative proportions as to produce a prepolymer containing between about 30% and about 90% by weight of said olefin, between about 1% and about 30% by weight of said diester, and between 0 and about 40% by weight of said solubilizing monaner;and thereafter modifying the relative proportions of monomers introduced into the emulsion so as to add to said prepolymer a terminal segment containing between about 10% and about 90% by weight of said olefin, between 0 and about 10% by weight of said diester, and between about 10% and about 90% of said solubilizing monomer.
  29. 29
    A process as set forth in Claim 28 wherein said prepolymer has a molecular weight of at least about 100,000 (weight average).
  30. 30
    A process as set forth in Claim 29 wherein polymerization is terminated after said terminal segment reaches a molecular weight of between about 30% and about 100% of the molecular weight of said prepolymer.
  31. 31
    A process as set forth in any of Claims 28 to 30 wherein the monomers are such and are added in such relative proportions as to produce a segmented polymer as defined in any of Claims 12 to 18.
  32. 32
    A process as set forth in any of Claims 24 to 31 wherein the polymerizate is recovered fran the emulsion polymerization medium by spray drying.
  33. 33
    A process as set forth in any of Claims 24 to 31 wherein said surfactant comprises an alkali metal soap, and a coagulating electrolyte solution is mixed with the polymerization medium after the polymerization reaction, whereby the polymerizate agglomerates and precipitates from the emulsion polymerization medium, the precipitated agglomerates are recovered by filtration, and are washed with water, thereby removing contaminating metal salts.
  34. 34
    A polymer composition adapted for use in producing vinyl halide polymer products, comprising a blend of a vinyl halide polymer and a particulate terpolymer as defined in Claim 19.
  35. 35
    A polymer composition adapted for use in producing vinyl halide polymer products, comprising a blend of a vinyl halide polymer and a particulate terpolymer as defined in Claim 20.
  36. 36
    A polymer composition as set forth in either of Claims 34 and 35 wherein at least about 90% by weight of the terpolymer particles are smaller than about 100 micrometres.
  37. 37
    A polymer composition as set forth in any of Claims 34 to 36 containing between about 0.1 and about 8 parts by weight of said terpolymer per 100 parts by weight of said vinyl halide polymer.
  38. 38
    A shaped plastic article fabricated of a polymer composition as defined in Claim 34.
  39. 39
    A shaped plastic article fabricated of a polymer composition as defined in Claim 35.
  40. 40
    A process for preparing a polymer compositiion adapted for use in the production of shaped articles, said process comprising the steps of :agitating a particulate vinyl halide polymer and introducing energy into said polymer to elevate its temperature;adding a heat stabilizer to said particulate polymer at a polymer temperature of between 52 and about 57°C.;agitating the mixture of vinyl halide polymer and heat stabilizer and introducing energy to elevate its temperature;introducing a polymer processing aid into said mixture at a mixture temperature of between about 71 and 82°C., said processing aid comprising a particulate terpolymer comprising between about 30% and about 90% by weight repeating units derived from an olefin, between about 1% and about 30% by weight repeating units derived from a diester of an addition polymerizable unsaturated dicarboxylic acid, and between about 1% and about 40% by weight repeating units derived from a solubilizing monomer which promotes compatibility of the terpolymer with said vinyl halide polymer;agitating the mixture containing said vinyl halide polymer and said processing aid and introducing energy thereinto to elevate its temperature;introducing a lubricant into the mixture containing said processing aid at a mixture temperature of between about 76 and about 99°C.;and agitating the mixture containing said lubricant and introducing energy thereinto to elevate its temperature to not higher than about 121°C.
Independent claims40