EP0447035B1

Method for the preparation of ethylene polymer compositions

Abstract

This record has no abstract on file.

EP0447035B1, drawing sheet 1
Sheet 1 of 34

Term

Term ended

Expired 13 February 2011, 15.6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

3 claims: 1 independent, 2 dependent

  1. 1
    A method for the preparation of an ethylene polymer composition having a density of 0.88 to 0.92 g/cm 3 , an intrinsic viscosity (η) of 1.2 to 4 dl/g, a melt flow ratio MFR 10 /MFR 2 of 8 to 40 and satisfying the relationship between density D of the composition and a temperature T (°C) showing the highest peak in an endothermic curve measured by differential scanning calorimetry of T 550 x D - 391,    comprising ;(b) copolymerizing ethylene and an alpha-olefin having from 3 to 20 carbon atoms in the presence of an olefin polymerization catalyst comprising (A) a transition metal compound which contains a ligand having a cycloalkadienyl skeleton and (B) an organoaluminium oxy-compound to form an ethylene polymer (II) having a density of lower by at least 0.005 g/cm 3 than that of the below-defined ethylene polymer (I), and an intrinsic viscosity (η) of from 1.5 to 7 dl/g and which intrinsic viscosity (η) is 2 to 10 times that of the below-mentioned ethylene polymer (I), and satisfying the relationship between density D of the copolymer (II) and a temperature T (°C) thereof showing the highest peak in an endothermic curve measured by differential scanning calorimetry of T 550 x D - 391;and (a) polymerizing ethylene or copolymerizing ethylene and an alpha-olefin of from 3 to 20 carbon atoms in the presence of ethylene copolymer (II) obtained in step (b) and without addition of fresh olefin polymerization catalyst to obtain an ethylene polymer (I) having a density of 0.88 to 0.94 g/cm 3 and an intrinsic viscosity (η) of 0.5 to 2.0 dl/g, and satisfying the relationship between density D of the copolymer (I) and a temperature T (°C) thereof showing the highest peak in an endothermic curve measured by differential scanning calorimetry of T 550 x D - 391,    and the relationship between density D of the copolymer (I) and an amount (W) of a portion soluble therein at 23°C in n-decane of log W ≤ - 50 x D + 46.2,    and wherein the amount of ethylene polymer (II) produced in step (b) is such that the amount of ethylene copolymer (II) is from 10 to 1000 parts by weight based on 100 parts by weight of ethylene polymer (I).