EP2016127B1

High-density polyethylene compositions, method of making the same, articles made therefrom, and method of making such articles

Abstract

This record has no abstract on file.

EP2016127B1, drawing sheet 1
Sheet 1 of 10

Term

Projected expiry 2 May 2027.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Projected expiry

43 claims: 6 independent, 37 dependent

  1. 1
    A high-density polyethylene composition comprising:a first component, said first component being a high molecular weight ethylene alpha-olefin copolymer having a density in the range of 0.915 to 0.940 g/cm 3 , and a melt index (I 21.6 ) in the range of 0.5 to 10 g/10 minutes;and a second component, said second component being a low molecular weight ethylene polymer having a density in the range of 0.965 to 0.980 g/cm 3 , and a melt index (I 2 ) in the range of 50 to 1500 g/10 minutes;wherein said high-density polyethylene composition having a melt index (I 2 ) of at least 1 g/10 minutes, a density in the range of 0.950 to 0.960 g/cm 3 , and g' of equal or greater than 1.
  2. 2
    The high-density polyethylene composition according to Claim 1, wherein said first component having a density in the range of 0.920 to 0.940 g/cm 3 .
  3. 3
    The high-density polyethylene composition according to Claim 1, wherein said first component having a density in the range of 0.921 to 0.936 g/cm 3 .
  4. 4
    The high-density polyethylene composition according to Claim 1, wherein said first component having a melt index (I 21.6 ) in the range of 1 to 7 g/10 minutes.
  5. 5
    The high-density polyethylene composition according to Claim 1, wherein said first component having a melt index (I 21.6 ) in the range of 1.3 to 5 g/10 minutes.
  6. 6
    The high-density polyethylene composition according to Claim 1, wherein said second component having a density in the range of 0.970 to 0.975 g/cm 3 .
  7. 7
    The high-density polyethylene composition according to Claim 1, wherein said second component having a melt index (I 2 ) in the range of 100 to 1500 g/10 minutes.
  8. 8
    The high-density polyethylene composition according to Claim 1, wherein said second component having a melt index (I 2 ) in the range of 200 to 1500 g/10 minutes.
  9. 9
    The high-density polyethylene composition according to Claim 1, wherein said high-density polyethylene composition having a melt index (I 2 ) in the range of 1 to 2 g/10 minutes.
  10. 10
    The high-density polyethylene composition according to Claim 1, wherein said high-density polyethylene composition having a melt index (I 2 ) of at least 2 g/10 minutes.
  11. 11
    The high-density polyethylene composition according to Claim 1, wherein said first component having a molecular weight in the range of 150,000 to 375,000.
  12. 12
    The high-density polyethylene composition according to Claim 1, wherein said second component having a molecular weight in the range of 12,000 to 40,000.
  13. 13
    The high-density polyethylene composition according to Claim 1, wherein said first component having a density in the range of 0.921 to 0.936 g/cm 3 , and a melt index (I 21.6 ) in the range of 1.3 to 5 g/10 minutes;wherein said second component having a density in the range of 0.970 to 0.975 g/cm 3 , and a melt index (I 2 ) in the range of 200 to 1500 g/10 minutes.
  14. 14
    The high-density polyethylene composition according to Claim 1, wherein said first component being substantially free of any long chain branching, and said second component being substantially free of any long chain branching.
  15. 15
    The high-density polyethylene composition according to Claim 14, wherein said high-density polyethylene composition being substantially free of any long chain branching.
  16. 16
    The high-density polyethylene composition according to Claim 1, wherein said high-density polyethylene composition having a single ATREF temperature peak, wherein said ATREF temperature peak having a temperature peak maximum between 90 °C to 105 °C;wherein said high-density polyethylene composition having a calculated high density fraction in the range of 20 percent to 50 percent, said calculated high density fraction being defined as [(2)X(the weight ratio of the high-density polyethylene that elutes in ATREF-DV at temperatures greater than or equal to said temperature peak maximum)], wherein said high-density polyethylene composition having a relative minimum in the log of the relative viscosity average molecular weight at about 90 °C in ATRF-DV;wherein said high-density polyethylene composition having a regression slope of the log of the relative viscosity average molecular weight versus the ATREF-DV viscosity versus temperature plot of less than about 0, said elution temperature measured between 70 °C to 90 °C.
  17. 17
    The high-density polyethylene composition according to Claim 1, wherein said high-density polyethylene composition having a comonomer content in weight percent of equal or greater that [(-228.41 *density of said high-density polyethylene composition) + 219.36)] *[1(weight percent)/(g/cm 3 )], wherein the density being measured in g/cm 3 .
  18. 18
    The high-density polyethylene composition according to Claim 1, wherein said high-density polyethylene composition having an ATREF high-density fraction in percent of equal or less than [(2750*density of the high-density polyethylene composition) - 2552.2] *[1(percent)/(g/cm 3 )], where the density being measured in g/cm 3 .
  19. 19
    A method of producing a high-density polyethylene composition comprising the steps of:introducing ethylene, and an alpha-olefin comonomer into a first reactor;polymerizing said ethylene in the presence of said alpha-olefin comonomer in said first reactor thereby producing a first component, wherein said first component being a high molecular weight ethylene alpha-olefin copolymer having a density in the range of 0.915 to 0.940 g/cm 3 , and a melt index (I 21 ) in the range of 0.5 to 10 g/10 minutes;introducing said first component and additional ethylene into a second reactor;polymerizing said additional ethylene in said second reactor thereby producing a second component, wherein said second component being a low molecular weight ethylene polymer having a density in the range of 0.965 to 0.980 g/cm 3 , and a melt index (I 2 ) in the range of 50 to 1500 g/10 minutes;and thereby producing said high-density polyethylene composition, wherein high-density polyethylene composition having a melt index (I 2 ) of at least 1 g/10 minutes, a density in the range of 0.950 to 0.960 g/cm 3 , and g' of equal or greater than 1.
  20. 20
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said first component having a density in the range of 0.920 to 0.940 g/cm 3 .
  21. 21
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said first component having a density in the range of 0.921 to 0.936 g/cm 3 .
  22. 22
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said first component having a melt index (I 21.6 ) in the range of 1 to 7 g/10 minutes.
  23. 23
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said first component having a melt index (I 21.6 ) in the range of 1.3 to 5 g/10 minutes.
  24. 24
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said second component having a density in the range of 0.970 to 0.975 g/cm 3 .
  25. 25
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said second component having a melt index (I 2 ) in the range of 100 to 1500 g/10 minutes.
  26. 26
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said second component having a melt index (I 2 ) in the range of 200 to 1500 g/10 minutes.
  27. 27
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said high-density polyethylene composition having a melt index (I 2 ) in the range of 1 to 2 g/10 minutes.
  28. 28
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said high-density polyethylene composition having a melt index (I 2 ) of at least 2 g/10 minutes.
  29. 29
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said first component having a molecular weight in the range of 150,000 to 375,000.
  30. 30
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said second component having a molecular weight in the range of 12,000 to 40,000.
  31. 31
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said first component having a density in the range of 0.921 to 0.936 g/cm 3 , and a melt index (I 21.6 ) in the range of 1.3 to 5 g/10 minutes;wherein said second component having a density in the range of 0.970 to 0.975 g/cm 3 , and a melt index (I 2 ) in the range of 200 to 1500 g/10 minutes.
  32. 32
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said first component being substantially free of any long chain branching, and said second component being substantially free of any long chain branching.
  33. 33
    The method of producing a high-density polyethylene composition according to Claim 32, wherein said high-density polyethylene composition being substantially free of any long chain branching.
  34. 34
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said high-density polyethylene composition having a single ATREF temperature peak, wherein said ATREF temperature peak having a temperature peak maximum between 90 °C to 105 °C;wherein said high-density polyethylene composition having a calculated high density fraction in the range of 20 percent to 50 percent, said calculated high density fraction being defined as [(2)*(the weight ratio of the high-density polyethylene that elutes in ATREF-DV at temperatures grater than or equal to said temperature peak maximum)], wherein said high-density polyethylene composition having a relative minimum in the log of the relative viscosity average molecular weight at about 90 °C in ATRF-DV;wherein said high-density polyethylene composition having a regression slope of the log of the relative viscosity average molecular weight versus the ATREF-DV viscosity versus temperature plot of less than about 0, said elution temperature measured between 70 °C to 90 °C.
  35. 35
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said high-density polyethylene composition having a comonomer content in weight percent of equal or greater that [(-228.41 *density of said high-density polyethylene composition) + 219.36)] *[1 (weight percent)/(g/cm 3 )], wherein the density being measured in g/cm 3 .
  36. 36
    The method of producing a high-density polyethylene composition according to Claim 19, wherein said high-density polyethylene composition having an ATREF high-density fraction in percent of equal or less than [(2750*density of the high-density polyethylene composition) - 2552.2] *[(1(percent)/(g/cm 3 )], where the density being measured in g/cm 3 .
  37. 37
    An article comprising:a high-density polyethylene composition comprising: a first component, said first component being a high molecular weight ethylene alpha-olefin copolymer having a density in the range of 0.915 to 0.940 g/cm 3 , and a melt index (I 21.6 ) in the range of 0.5 to 10 g/10 minutes;and a second component, said second component being a low molecular weight ethylene polymer having a density in the range of 0.965 to 0.980 g/cm 3 , and a melt index (I 2 ) in the range of 50 to 1500 g/10 minutes;wherein said high-density polyethylene composition having a melt index (I 2 ) of at least 1 g/10 minutes, a density in the range of 0.950 to 0.960 g/cm 3 , and g' of equal or greater than 1.
  38. 38
    The article according to Claim 37, wherein said high-density composition having an environmental stress crack resistance of at least 150 hours measured via ASTM D-1693 condition B, 10 percent Igepal, or at least 300 hours measured via ASTM D-1693 condition B, 100 percent Igepal.
  39. 39
    The article according to Claim 37, wherein said article being a wire cable jacketing, a conduit pipe, or an injection blow molded bottle.
  40. 40
    A bottle cap closure comprising:a high-density polyethylene composition comprising: a first component, said first component being a high molecular weight ethylene alpha-olefin copolymer having a density in the range of 0.915 to 0.940 g/cm 3 , and a melt index (I 21.6 ) in the range of 0.5 to 10 g/10 minutes;and a second component, said second component being a low molecular weight ethylene polymer having a density in the range of 0.965 to 0.980 g/cm 3 , and a melt index (I 2 ) in the range of 200 to 1500 g/10 minutes;wherein said high-density polyethylene composition having a melt index (I 2 ) of at least 1 g/10 minutes, a density in the range of 0.950 to 0.960 g/cm 3 , and g' of equal or greater than 1.
  41. 41
    The bottle cap closure of according to Claim 40, wherein said high-density polyethylene composition having an environmental stress crack resistance of at least 150 hours measured via ASTM D-1693 condition B, 10 percent Igepal, or at least 300 hours measured via ASTM D-1693 condition B, 100 percent Igepal.
  42. 42
    A method of improving bottle cap closures comprising the steps of:providing a high-density polyethylene composition comprising;a first component, said first component being a high molecular weight ethylene alpha-olefin copolymer having a density in the range of 0.915 to 0.940 g/cm 3 , and a melt index (I 21.6 ) in the range of 0.5 to 10 g/10 minutes;and a second component, said second component being a low molecular weight ethylene polymer having a density in the range of 0.965 to 0.980 g/cm 3 , and a melt index (I 2 ) in the range of 50 to 1500 g/10 minutes;wherein said high-density polyethylene composition having a melt index (I 2 ) of at least 1 g/10 minutes, a density in the range of 0.950 to 0.960 g/cm 3 , and g' of equal or greater than 1;compression molding, blow molding, or injection molding said high-density polyethylene composition thereby forming said improved bottle cap closures.
  43. 43
    A method of producing an article comprising the steps of:providing a high-density polyethylene composition comprising;a first component, said first component being a high molecular weight ethylene alpha-olefin copolymer having a density in the range of 0.915 to 0.940 g/cm 3 , and a melt index (I 21.6 ) in the range of 0.5 to 10 g/10 minutes;and a second component, said second component being a low molecular weight ethylene polymer having a density in the range of 0.965 to 0.980 g/cm 3 , and a melt index (I 2 ) in the range of 50 to 1500 g/10 minutes;wherein said high-density polyethylene composition having a melt index (I 2 ) of at least 1 g/10 minutes, a density in the range of 0.950 to 0.960 g/cm 3 , and g' of equal or greater than 1;compression molding, blow molding, or injection molding said high-density polyethylene composition thereby forming said article.
Independent claims43