Claims
- 1. A gas fluidised bed process for the production of copolymers having a density comprised between 0.900 and 0.935, this process being characterised in that it comprises a copolymerisation of (a) ethylene, (b) propylene and/or 1-butene, and (c) alpha-olefins comprising 5 to 8 carbon atoms in the gaseous state in admixture with an inert gas and optionally hydrogen, the gas mixture circulating from bottom to top through the fluidised bed of the copolymer in course of formation, the copolymerisation being effected at a temperature comprised between 50.degree. C. and 100.degree. C. under a total pressure comprised between 0.5 to 4 MPa with a speed of fluidisation from 40 to 80 cm/sec in the presence of a catalyst system comprising:
- a solid catalyst prepared by reacting at between -20.degree. C. and 150.degree. C. magnesium metal with an alkyl halide R.sub.2 X and one or more tetravalent titanium compounds having the formula TiX.sub.4-t (OR.sub.1 1).sub.t, wherein R.sub.1 is an alkyl group containing 2 to 8 carbon atoms, R.sub.2 is an alkyl group containing 2 to 12 carbon atoms, X is chlorine or bromine and t is an integer or fraction from 0 to 3; in molar ratios such that:
- 0.1.ltoreq.TiX.sub.4-t (OR.sub.1).sub.t /Mg.ltoreq.0.33
- and 0.5.ltoreq.(R.sub.2 X/Mg.ltoreq.8
- and, a cocatalyst consisting of at least one organoaluminium or halogen-organoaluminium compound in a quantity such that the atomic ratio of the quantity of aluminium to the quantity of titanium is comprised between 1 and 30, the partial pressure (pp) of the various ingredients of the gas mixture being such that:
- 0.05.ltoreq.pp comonomer (b)/pp ethylene .ltoreq.0.4
- 0.05.ltoreq.pp comonomer (c)/pp ethylene .ltoreq.0.2
- 0.ltoreq.pp hydrogen/pp ethylene .ltoreq.0.5
- 0.2.ltoreq.pp inert gas/total pressure .ltoreq.0.8, and
- 0.01 Mpa.ltoreq.pp comonomer (c) .ltoreq.0.1 MPa
- and such that the ratio by weight of the quantity of comonomer (c) to the quantity of comonomer (b) fixed in the copolymer is comprised between 0.1 and 1.5, comonomer (b) being propylene or 1-butene or a mixture of these two olefins, comonomer (c) being an alpha-olefin comprising 5 to 8 carbon atoms or a mixture of these alpha olefins, further characterised in that before performing in said copolymerisation, the catalyst system is subjected to prepolymerisation during which the catalyst and cocatalyst are brought into contact with ethylene, so as to obtain from 0.1 to 300 g of polyethylene or copolymer of ethylene per milligramme atom of titanium.
- 2. Process in accordance with claim 1, characterised in that the solid catalyst is obtained by reacting at between 60.degree. C. and 90.degree. C., magnesium metal with an alkyl halide R.sub.2 X and one or more tetravalent titanium compounds having the formula TiX.sub.4-t (OR.sub.1).sub.t wherein t is an integer or a fraction from 0 to 3.
- 3. Process in accordance with claim 1, characterised in that the commencement of prepolymerisation is carried out in suspension in a liquid hydrocarbon medium.
- 4. Process in accordance with claim 1, characterised in that the prepolymerisation is carried out in two stages, the first stage being performed in suspension in a liquid hydrocarbon medium, so as to obtain from 0.1 to 10 g of polymer or copolymer per milligramme atom of titanium, the second stage being performed either in suspension in a liquid hydrocarbon medium or in the gas phase.
- 5. A novel copolymer of (a) ethylene, comonomer (b) being propylene or 1-butene or a mixture of these two olefins, and comonomer (c) being an alpha olefin comprising 5 to 8 carbon atoms or a mixture of these alpha olefins, said copolymer being produced by a gas fluidised bed process comprising copolymerising said comonomers (a), (b) and (c), in the gaseous state in admixture with an inert gas and optionally hydrogen, the gas mixture circulating from bottom to top through the fluidised bed of the copolymer in course of formation, the copolymerisation being effected at a temperature comprised between 50.degree. C. and 100.degree. C. under a total pressure comprised between 0.5 to 4 MPa with a speed of fluidisation from 40 to 80 cm/sec in the presence of a catalyst system comprising:
- a solid catalyst prepared by reacting at between -20.degree. C. and 150.degree. C. magnesium metal with an alkyl halide R.sub.2 and one or more tetravalent titanium compounds having the formula TiX.sub.4-t (OR.sub.1).sub.t1, wherein R.sub.1 is an alkyl group containing 2 to 8 carbon atoms, R.sub.2 is an alkyl group containing 2 to 12 carbon atoms, X is chlorine or bromine and t is an integer or fraction from 0 to 3, in molar ratios such that:
- 0.1.ltoreq.TiX.sub.4-t (OR.sub.1).sub.t /Mg.ltoreq.0.33
- and 0.5.ltoreq.(R.sub.2)X/Mg.ltoreq.8
- and a cocatalyst consisting of at least one organoaluminium compound in a quantity such that the atomic ratio of the quantity of aluminium to the quantity of titanium is comprised between 1 and 30, the partial pressure (pp) of the various ingredients of the gas mixture being such that
- 0.05.ltoreq.pp comonomer (b)/pp ethylene .ltoreq.0.4
- 0.05.ltoreq.pp comonomer (c)/pp ethylene .ltoreq.0.2
- 0.ltoreq.pp hydrogen/pp ethylene .ltoreq.0.5
- 0.2.ltoreq.pp inert gas/total pressure .ltoreq.0.8, and
- 0.01 MPa.ltoreq.pp comonomer (c)/0.1 MPa
- comonomer (b) and comonomer (c) being defined above, further characterised in that before performing the said copolymerisation, the catalyst system is subjected to prepolymerisation during which the catalyst and cocatalyst are brought into contact with ethylene, so as to obtain from 0.1 to 300 g of polymer of copolymer per milligramme atom of titanium, said copolymer being characterised in that it has:
- (i) a density comprised between 0.900 and 0.935,
- (ii) a total content of units derived from comonomers (b) and (c) comprised between 4 and 15% by weight
- (iii) contents of units derived from comonomers (b) and (c) such that the ratio by weight of the quantity of comonomer (c) to the quantity of comonomer (b) is comprised between 0.1 and 1.5,
- (iv) a melt index (MI.sub.2.16) measured under 2.16 kg, comprised between 0.1 and 30 g/10 minutes,
- (v) a flow parameter comprised between 20 and 40, calculated by the ratio of the melt index (MI.sub.21.6) measured under 21.6 kg to the melt index (MI.sub.2.16) measured under 2.16 kg,
- (vi) a content of copolymers soluble in n-hexane at 50.degree. C. less than or equal to 2.0% by weight, when the copolymer has a density equal to or greater than 0.918,
- (vii) a total content of comonomers (b) and (c) present in the fraction of the copolymers which is soluble in boiling n-hexane which does not exceed by more than 15% the total content in comonomers (b) and (c) present in the fraction of the copolymer which is insoluble in boiling n-heptane,
- (viii) an ethylenic unsaturation level of the vinyl, vinylene, and vinylidene type of less than 0.2 ethylenic double bond per 1000 carbon atoms,
- (ix) a single melting point comprised between 116.degree. and 128.degree. C., determined by scanning differential calorimetric analysis after stoving at 200.degree. C., cooling at a speed of 16.degree. per minute and heating at a speed of 16.degree. C. per minute,
- (x) a structure with a low level of long chain branchings, such that g*.ltoreq.0.90, g*=(.eta.):(.eta..sub.1), (.eta.) being the intrinsic viscosity of the copolymer and (.eta..sub.1) being the intrinsic viscosity of a linear polyethylene having the same weight average molecular weight as that of the said copolymer,
- (k) the copolymer contains per gram less than 5.times.10.sup.-4 milligram atoms or titanium,
- (l) the bulk density is between 0.30 and 0.45 g/cm.sup.3 and
- (m) the copolymer contains less than 350 ppm of inorganic residues.
- 6. A novel copolymer according to claim 5, characterised in that its molecular structure, determined by carbon 13 nuclear magnetic resonance (NMR) is such that the units derived from comonomers (b) and (c) are distributed along the copolymer chain, at least 95% of these units being completely isolated from each other, separated by more than one unit derived from ethylene.
- 7. A process for the production of a finished object comprising producing said object by injection moulding the copolymer according to claim 5.
- 8. A process for the production of a finished object comprising producing said object by rotational moulding the copolymer according to claim 5.
- 9. A process for the production of a finished object comprising producing said object by extrusion forming the copolymer according to claim 5.
- 10. A process for the production of a finished object comprising producing said object by blowing extrusion of the copolymer according to claim 5.
- 11. The copolymer of claim 5, wherein in (c), the weight ratio of comonomer (c) to comonomer (b) is between 0.25 and 1.
Priority Claims (1)
Number |
Date |
Country |
Kind |
8406773 |
May 1984 |
FRX |
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Parent Case Info
This application is a continuation of application Ser. No. 07/085,255, filed Aug. 11, 1987, which is a continuation of Ser. No. 06/810,328, filed Dec. 9, 1985, all now abandoned.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
102e Date |
371c Date |
PCT/GB85/00184 |
4/30/1985 |
|
|
12/9/1985 |
12/9/1985 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO85/05111 |
11/21/1985 |
|
|
US Referenced Citations (8)
Foreign Referenced Citations (2)
Number |
Date |
Country |
99774 |
Feb 1984 |
EPX |
2006232 |
May 1979 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Encyclopedia of Polymer Science and Technology, J. Wiley & Sons, New York, vol. 9, pp. 47, 48, 84, 118, 119, (1968). |
Continuations (2)
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Number |
Date |
Country |
Parent |
85255 |
Aug 1987 |
|
Parent |
810328 |
Dec 1985 |
|