EP2376567A2

Thermoplastic elastomer polyolefin in-reactor blends and molded articles therefrom

Abstract

This record has no abstract on file.

Term

Projected expiry 15 December 2029.

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  2. Filed
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  4. Today
  5. Projected expiry

24 claims: 14 independent, 10 dependent

  1. 1
    Claims of equivalent WO 2010075111 A2 US Claims 1. An in-reactor polymer blend comprising:(a) a first ethylene-containing polymer having a density of greater than 0.90 g/cm and a Mw of more than 20,000 g/mol and (b) a second ethylene-containing polymer having a density of less than 0.90 g/cm , wherein the polymer blend has a Tm of at least 90 0 C (DSC second melt), a density of less than 0.92 g/cm , and the densities of the first and second polymers differ by at least 1%.
  2. 2
    An in-reactor polymer blend comprising:(a) a first ethylene polymer comprising 90 to 100 wt% ethylene and from 0 to less than 10 wt% comonomer, said first ethylene polymer component having density of greater than 0.920 g/cm , an Mw of 20,000 g/mol or more ;and (b) a second ethylene polymer comprising from 70 to 90 wt% ethylene and 30 to 10 wt% comonomer, said second ethylene polymer having a density of 0.910 g/cm or less, wherein the polymer blend has: (a) a Tm of at least 100 0 C over a density ranging from 0.84 to 0.92 g/cm 3 ;(b) a elongation at break of 300% or more;(c) a strain hardening index M300/M100 of at least 1.2;(d) a ratio of complex viscosity at 0.01 rad/s to the viscosity at 100 rad/s is of at least 30;and (e) a shear thinning slope of the plot of log(dynamic viscosity) versus log(frequency) less than -0.2.
  3. 6
    The blend of any of claims 1 to 5 wherein the blend has a strain hardening index M500/M100 of at least 1.2.
  4. 7
    The blend of any of claims 1 to 6 wherein the blend has a critical relaxation exponent, n, of between 0.1 and 0.92.
  5. 8
    The blend of any of claims 1 to 7 wherein the blend has a tensile strength of greater than 15 MPa.
  6. 9
    The blend of any of claims 1 to 8 wherein the blend has an elongation at break of greater than 400%.
  7. 10
    The blend of any of claims 1 to 9 wherein the blend has a toughness of 40 megajoule/m or more.
  8. 11
    The blend of any of claims 1 to 10 wherein the blend has a melt index at 190 0 C, under a 2.16 kg load of 0.01 to 100 dg/min.
  9. 12
    The blend of any of claims 1 to 11 wherein the first ethylene containing polymer has 95 to 100 wt% ethylene and 0 to 5 wt% comonomer selected from the group consisting of propylene, butene, hexene or octene.
  10. 13
    The blend of any of claims 1 to 12 wherein the second ethylene containing polymer has 70 to 85 wt% propylene and 15-30 wt% comonomer selected from the group consisting of ethylene, butene, hexene or octene.
  11. 14
    The blend of any of claims 1 to 13 wherein the first ethylene containing polymer has a melting point of 140 0 C or more and a melt index at 190 0 C, under a 2.16 kg load of 0.01 to 800 dg/min, and the second ethylene containing polymer has a melt index at 190 0 C, under a 2.16 kg load of 200 dg/min or less.
  12. 15
    The blend of any of claims 1 to 14 wherein the second ethylene containing polymer has the second ethylene containing polymer has a 1% secant flexural modulus from 5 to 100 MPa.
  13. 16
    The blend of any of claims 1 to 15 wherein the polymer blend has a cyclohexane refluxing insoluble fraction of 70 wt% or less.
  14. 17
    A process to produce the blends of any of claims 1 to 16 comprising:a metallocene catalyst compound and an activator with ethylene, comonomer, and a macromonomer having at least 50% vinyl terminal unsaturation based on the total unsaturated olefin chain ends, where the macromonomer has an Mw of 20,000 g/mol or more, a density of 0.920 or more, and optionally a melting point of 110 0 C or more.