EP0955321A2

Olefin copolymers and processes for preparing same

Abstract

In accordance with the present invention, there are provided ethylene copolymers composed of structural units (a) derived from ethylene and structural units (b) derived from α-olefin of 3 ∼ 20 carbon atoms, said ethylene copolymers having [A] a density of 0.85 ∼ 0.92 g/cm3,[B] an intrinsic viscosity [η] as measured in decalin at 135°C of 0.1 ∼ 10 dl/g,[C] a ratio (M¯w/M¯n) of a weight average molecular weight (M¯w) to a number average molecular weight (M¯n) as measured by GPC of 1.2 ∼ 4, and[D] a ratio (MFR10/MFR2) of MFR10 under a load of 10 kg to MFR2 under a load of 2.16 kg at 190°C of 8 ∼ 50, and being narrow in molecular weight distribution and excellent in flowability.

EP0955321A2, drawing sheet 1
Sheet 1 of 115

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Projected expiry passed 21 December 2009, 16.8 years ago.

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9 claims: 8 independent, 1 dependent

  1. 1
    In ethylene copolymers composed of structural units (a) derived from ethylene and structural units (b) derived from α-olefin of 3 ∼ 20 carbon atoms, the improvement which resides in that the ethylene copolymers have (A) a density of 0.85 ∼ 0.92 g/cm3,(B) an intrinsic viscosity [η] as measured in decalin at 135°C of 0.1 ∼ 10 dl/g,(C) a ratio (M¯w/M¯n) of a weight average molecular weight (M¯w) to a number average molecular weight (M¯n) as measured by GPC of 1.2 ∼ 4, and(D) a ratio (MFR10/MFR2) of MFR10 under a load of 10 kg to MFR2 under a load of 2.16 kg at 190°C of 8 ∼ 50.
  2. 2
    In a process for preparing ethylene copolymers, the improvement which comprises copolymerizing ethylene and α-olefin of 3 ∼ 20 carbon atoms in the presence of a catalyst so that the resulting copolymers have a density of 0.85 ∼ 0.92 g/cm3, said catalyst being composed of [A] a hafnium compound having as a ligand a multidentate compound in which at least two groups selected from among indenyl groups or substituted groups thereof are linked together via lower alkylene groups or hafnium compounds obtained by treating the above-mentioned hafnium compounds with alkylsilylated silica gel, and[B] an organoaluminum oxy-compound.
  3. 3
    In propylene random copolymers composed of structural units (a) derived from propylene and structural units (b) derived from α-olefin of 4 ∼ 20 carbon atoms, the improvement which resides in that the propylene random copolymers have (i) the structural units (a) in an amount of 90 ∼ 99 mol% and the structural units (b) in an amount of 1 ∼ 10 mol%,(ii) an intrinsic viscosity [η] as measured in decalin at 135°C of 0.5 ∼ 6 dl/g,(iii) a melting point [Tm] as measured by a differential scanning calorimeter falling within the range of90 < Tm < 155 - 3.5 (100 - P) wherein P is the propylene content (mol%) present in the copolymer,(iv) a ratio (M¯w/M¯n) of a weight average molecular weight (M¯w) to a number average molecular weight (M¯n) as measured by gel permeation chromatography of less than 3.5, and(v) a boiling trichloroethylene-insoluble content of less than 5% by weight.
  4. 4
    In a process for preparing propylene random copolymers, the improvement which comprises copolymerizing propylene and α-olefin of 4 ∼ 20 carbon atoms at a temperature of 40 ∼ 100°C in the presence of a catalyst so that the resulting copolymers have structural units (a) derived from propylene in an amount of 90 ∼ 99 mol% and structural units (b) derived from α-olefin in an amount of 1 ∼ 10 mol%, said catalyst being formed from [A] a hafnium compound having as a ligand a multidentate compound in which at least two groups selected from among cycloalkadienyl groups or substituted groups thereof are linked together via lower alkylene groups, and[B] an organoaluminum oxy-compound.
  5. 5
    In propylene random copolymers composed of structural units (a) derived from propylene, structural units (b) derived from ethylene and structural units (c) derived from α-olefin of 4 ∼ 20 carbon atoms, the improvement which resides in that the propylene random copolymers have (i) the structural units (a) in an amount of 90 ∼ 99 mol%, the structural units (b) in an amount of 0.5 ∼ 9.5 mol% and the structural units (c) in an amount of 0.5 ∼ 9.5 mol%,(ii) an intrinsic viscosity [η] as measured in decalin at 135°C of 0.5 ∼ 6 dl/g,(iii) a melting point [Tm] as measured by a differential scanning calorimeter falling with in the range of70 < Tm < 155 ∼ 5.5 (100 - P) wherein P is the propylene content (mol%) present in the copolymer, and(iv) a boiling trichloroethylene-insoluble content of less than 5% by weight.
  6. 6
    In a process for preparing propylene random copolymers, the improvement which comprises copolymerizing propylene, ethylene and α-olefin of 4 ∼ 20 carbon atoms in the presence of a catalyst so that the resulting copolymers have structural units (a) derived from propylene in an amount 90 ∼ 99 mol%, structural units (b) derived from ethylene in an amount of 0.5 ∼ 9.5 mol% and structural units (c) derived from α-olefin in an amount of 0.5 ∼ 9.5 mol%, said catalyst being formed from [A] a hafnium compound having as a ligand a multidentate compound in which at least two groups selected from among cycloalkadienyl groups or substituted groups thereof are linked together via lower alkylene groups, and[B] an organoaluminum oxy-compound.
  7. 8
    An olefin polymerization catalyst formed from [A] a hafnium compound having as a ligand a multidentate compound in which at least two groups selected from among conjugated cycloalkadienyl groups or substituted groups thereof are linked together via lower alkylene groups,[B] an organoaluminum oxy-compound, and[C] an organoaluminum compound.
  8. 9
    An olefin polymerization catalyst formed from [A] a hafnium compound having as a ligand a multidentate compound in which at least two groups selected from among conjugated cycloalkadienyl groups or substituted groups thereof are linked together via lower alkylene groups,[B] an organoaluminum oxy-compound formed from tri-n-alkylaluminum, and[C] an organoaluminum oxy-compound in which at least one hydrocarbon group other than n-alkyl group has been linked to Al atom.