EP0200351A2

Liquid ethylene-type random copolymer, process for production thereof, and use thereof.

Abstract

A liquid ethylene-type random copolymer, useful as such or when hydrogenated as a synthetic lubricant oil, is characterized in that (a) it has an ethylene unit content of from 10 to 85 mole% and an alpha-olefin unit content of from 15 to 90 mole%,(b) it has a number average molecular weight (Mn), measured by gel permeation chromatography, of from 3 x 102 to 1 x 104,(c) is has a molecular weight distribution (Mw/Mn), determined by gel permeation chromatography, of not more than 2.5,(d) it has a B value, defined by the following equation (I), as defined by the following equation (II) wherein PE represents the molar fraction of the ethylene component in the copolymer, Po is the molar fraction of the alpha-olefin component in the copolymer, POE is the molar fraction of alpha-olefin/ethylene chains in the total dyad chains, (e) signals of αβ and βγ based on a methylene chain between two adjacent tertiary carbon atoms in the main chain of the copolymer are not substantially observed in the 13C-NMR spectrum of the copolymer, and(f) it has an iodine value of from 0 to 85.

EP0200351A2, drawing sheet 1
Sheet 1 of 31

Term

Term ended

Projected expiry passed 25 March 2006, 20.5 years ago.

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18 claims: 7 independent, 11 dependent

  1. 1
    A liquid ethylene-type random copolymer consisting essentially of units derived from ethylene and an alpha-olefin having 3 to 20 carbon atoms, said copolymer being characterized in that (a) it has an ethylene unit content of from 10 to 85 mole% and an alpha-olefin unit content of from 15 to 90 mole%, (b) it has a number average molecular weight ( M _), measured by gel permeation chromatography, of from 3 x 10 to 1 x 10 4 , (c) it has a molecular weight distribution ( M w / M n ), determined by gel permeation chromatography, of not more than 2.5, (d) it has a B value, defined by the following equation (I), as defined by the following equation (II) wherein P E represents the molar fraction of the ethylene component in the copolymer, P 0 is the molar fraction of the alpha-olefin component in the copolymer, P OE is the molar fraction of alpha-olefin/ethylene chains in the total dyad chains, (e) signals of αβ and βγ based on a methylene chain between two adjacent tertiary carbon atoms in the main chain of the copolymer are not substantially observed in the 13 C-NMR spectrum of the copolymer, and (f) it has an iodine value of from 0 to 85.
  2. 4
    A copolymer according to any one of the preceding claims which has a number average molecular weight (b) of from 5 x 10 2 to 5 x 10 3 .
  3. 5
    A copolymer according to any one of the preceding claims which has a molecular weight distribution (c) of not more than 2.2.
  4. 6
    A copolymer according to any one of the preceding claims which has an ethylene unit content of not more than 50 mole% and a B value (d) defined by the formula 1.0 + 0.3xP E ≦B≦1/(1 - PE).
  5. 7
    A copolymer according to any one of claims 1 to 5 which has an ethylene content of more than 50 mole% and a B value (d) defined by the equation 1.3 - 0.3xP E ≦B≦1/P E .
  6. 8
    A copolymer according to any one of the preceding claims which has an iodine value of from 0 to 50.
  7. 9
    A process for producing a liquid ethylene-type random copolymer according to any one of the preceding claims, which comprises copolymerizing ethylene and an alpha-olefin having 3 to 20 carbon atoms in the presence of a catalyst comprising a compound of a transition metal of Group IVb of the periodic table and an aluminoxane.
  8. 13
    A process according to any one of claims 9 to 12 wherein the aluminoxane is a compound represented by the following formula (IV) or (V) wherein R 20 represents an alkyl group and m is more than 20, or wherein R 20 and m are as defined above.
  9. 14
    A process according to any one of claims 9 to 13 wherein the copolymerization reaction is carried out in a hydrocarbon medium.
  10. 15
    A process according to any one of claims 9 to 14 wherein the copolymerization reaction is carried out at a temperature of from -50°C to 200°C.
  11. 16
    A process for producing a hydrogenated liquid ethylene-type random copolymer, which process comprises hydrogenating a liquid ethylene-type random copolymer as claimed in any one of claims 1 to 8 or which has been produced by a process as claimed in any one of claims 9 to 15.