Claims
- 1. A crystalline propylene copolymer composition having:(i). a composition MFR L(1) value before degradation of from 0.3 to 5 g/10 min.; (ii). a composition MFR L(2) value after degradation of from 2 to 15 g/10 min; and (iii). a ratio of MFR L(2) to MFR L(1) of from 2 to 20, the propylene copolymer composition comprising (percent by weight): A) 20-80% of one or more propylene copolymers selected from the group consisting of (A 1) propylene/ethylene copolymers containing 1-7% of ethylene; (A 2) copolymers of propylene with one or more C4-C8 alpha-olefins, containing 2-10% of the C4-C8 alpha-olefins; (A 3) copolymers of propylene with ethylene and one or more C4-C8 alpha-olefins, containing 0.5-4.5% of ethylene and 2-6% of C4-C8 alpha-olefins, provided that the total content of ethylene and C4-C8 alpha-olefins in (A 3) be equal to or lower than 6.5%; B) 20-80% of one or more propylene copolymers selected from the group consisting of (B 1) copolymers of propylene with one or more C4-C8 alpha-olefins, containing from more than 10% to 30% of C4-C8 alpha-olefins; (B 2) copolymers of propylene with ethylene and one or more C4-C8 alpha-olefins, containing 1-7% of ethylene and 6-15% of C4-C8 alpha-olefins.
- 2. The crystalline propylene copolymer composition of claim 1, comprising (percent by weight):A) 20-60% of a propylene/ethylene copolymer containing 1-7% of ethylene; B) 40-80% of a copolymer of propylene with ethylene and one or more C4-C8 alpha-olefins, containing 1-7% of ethylene and 6-15% of C4-C8 alpha-olefins; the total content of ethylene in the compositions being 1-5% and the total content of C4-C8 alpha-olefins in the composition being 2.4-12%.
- 3. A monolayer or multilayer film or sheet, wherein at least one layer comprises the crystalline propylene copolymer composition of claim 1.
- 4. A process for preparing the crystalline propylene copolymer composition of claim 1, comprising the following stages:1) preparing a precursor composition by polymerizing the monomers in at least two sequential steps, wherein components A) and B) are prepared in separate subsequent steps, operating in each step in the presence of the polymer formed and the catalyst used in the preceding step, and dosing the molecular weight regulator in such amounts as to obtain a MFR L (1) value for the precursor composition of from 0.3 to 5 g/10 min.; 2) subjecting the precursor composition obtained in 1) to a degradation treatment in order to obtain MFR L (2) values for the final composition from 3 to 15 g/10 min., with a degradation ratio, in terms of ratio MFR L (2) to MFR L (1), of from 2 to 20.
- 5. The process of claim 4, wherein the degradation ratio is from 3 to 15.
Priority Claims (1)
Number |
Date |
Country |
Kind |
98202800 |
Aug 1998 |
EP |
|
Parent Case Info
This application is a U.S. National Phase application of PCT international application PCT/EP99/05262 filed on Jul. 23, 1999, which claimed priority to European Patent Application No. 98202800.3, filed on August 20, 1998. The entire disclosures of PCT international application PCT/EP99/05262 and European Patent Application No. 98202800.3, each as filed, are incorporated herein by reference.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/EP99/05262 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO00/11076 |
3/2/2000 |
WO |
A |
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