Claims
- 1. A cast stretch film comprising an interpolymer composition which further comprises;
(A) a substantially linear ethylene/α-olefin interpolymer present in the composition in an amount of from about 10 to about 100% by weight based on the combined weight of Components A and B; and (B) a heterogeneous interpolymer present in the composition in an amount of from about 0 to about 90% by weight based on the combined weight of Components A and B; and wherein said interpolymer composition is characterized as having a viscosity at 100 rad/s and a relaxation time (r) which satisfies either of the following relationships; Log(viscosity at 100 rad/s)≦4.43−0.8log(I2) or log(τ)>−1.2−1.3*log(I2).
- 2. The cast stretch film of claim 1 wherein Component A is present in the interpolymer composition in an amount of from about 10 to about 90% by weight based on the combined weight of Components A and B, and Component B is present in the composition in an amount of from about 10 to about 90% by weight based on the combined weight of Components A and B, wherein said interpolymer composition has a density of from about 0.910 to about 0.922 g/cm3, a melt index (I2) of from about 0.5 to about 10 g/10 min and an I10/I2 of less than about 10.0; and wherein
(a) Component A has a density of from about 0.860 to about 0.925 g/cm3, a melt index (I2) of from about 0.2 to about 7.0 g/10 min, an I10/I2≧5.63, and is an interpolymer of ethylene with at least one C3-C20 α-olefin; and (b) Component B has a density of from about 0.895 to about 0.955 g/cm3, a melt index (I2) of from about 0.2 to about 500 g/10 min.
- 3. The cast stretch film of claim 1 wherein Component A is present in the composition in an amount of from about 10 to about 90% by weight based on the combined weight of Components A and B, and Component B is present in the composition in an amount of from about 10 to about 90% by weight based on the combined weight of Components A and B, wherein said interpolymer composition has a density of from about 0.912 to about 0.920 g/cm3, a melt index (I2) of from about 1.0 to about 7.0 g/10 min and an I10/I2 of less than about 9.0; and wherein
(a) Component A has a density of from about 0.880 to about 0.920 g/cm3, a melt index (I2) of from about 0.4 to about 4.0 g/10 min, an I10/I2≧5.63, and is an interpolymer of ethylene with at least one C3-C8, α-olefin; and (b) Component B has a density of from about 0.900 to about 0.945 g/cm3, and a melt index (I2) of 0.4 to 250 g/10 min.
- 4. The cast stretch film of claim 1 wherein Component A is present in the composition in an amount of from about 35 to about 55% by weight based on the combined weight of Components A and B, and Component B is present in the composition in an amount of from about 45 to about 65% by weight based on the combined weight of Components A and B, wherein said interpolymer composition has a density of from about 0.915 to about 0.919 g/cm3, a melt index (I2) of from about 2.0 to about 6.0 g/10 min and an I10/I2 of less than about 8.0; and wherein
(a) Component A has a density of from about 0.895 to about 0.915 g/cm3, a melt index (12) of from about 0.5 to about 2.0 g/10 min, an I10/I2≧5.63, a Mw/Mn, of from about 1.8 to about 3.0, and is an interpolymer of ethylene and octene-1; and (b) Component B has a density of from about 0.910 to about 0.935 g/cm3, a melt index (I2) of 0.5 to 50 g/10 min.
- 5. The cast stretch film of claim 1, comprising at least one substantially linear ethylene/α-olefin interpolymer, wherein the substantially linear ethylene/α-olefin interpolymer is characterized as having:
a) a melt flow ratio, I10/I2, ≧5.63, b) a molecular weight distribution, Mw/Mn, defined by the equation: Mw/Mn≦(I10/I2)−4.63, and c) a critical shear rate at onset of surface melt fracture of at least 50 percent greater than the critical shear rate at the onset of surface melt fracture of a linear ethylene/α-olefin polymer having about the same I2 and Mw/Mn.
- 6. The cast stretch film of claim 1 wherein Component A comprises at least one substantially linear ethylene/α-olefin interpolymer characterized as having:
a) a melt flow ratio, I10/I2≧5.63, b) a molecular weight distribution, Mw/Mn, defined by the equation: Mw/Mn≦(I10/I2)−4.63, and c) a processing index less than or equal to about 70 percent of the PI of a linear ethylene/α-olefin interpolymer having about the same I2 and Mw/Mn.
- 7. The cast stretch film of claim 1, wherein the substantially linear ethylene/α-olefin interpolymer has from about 0.01 to about 3 long chain branches/1000 carbons along the polymer backbone.
- 8. The cast stretch film of claim 1, wherein;
(A) Component A is prepared by contacting ethylene and at least one other α-olefin under polymerization conditions in the presence of a constrained geometry catalyst composition in the presence of the cocatalyst containing either no aluminum cocatalyst or only a small amount of aluminum cocatalyst in at least one reactor to produce a first interpolymer which has a narrow composition distribution and a narrow molecular weight distribution; and (B) Component B is prepared by contacting ethylene and at least one other α-olefin under polymerization conditions in the presence of a heterogeneous Ziegler catalyst in at least one other reactor to produce a second interpolymer which has a broad composition distribution and a broad molecular weight distribution, and (C) combining the first interpolymer with the second interpolymer to form a polymer mixture.
- 9. The cast stretch film of claim 1, wherein;
(A) Component A is prepared by contacting ethylene and at least one other α-olefin under solution polymerization conditions in the presence of a constrained geometry catalyst composition containing either no aluminum cocatalyst or only a small amount of aluminum cocatalyst in at least one reactor to produce a solution of a first interpolymer which has a narrow composition distribution and a narrow molecular weight distribution; and, (B) Component B is prepared by contacting ethylene and at least one other α-olefin under solution polymerization conditions and at a higher polymerization reaction temperature than used in step (A) in the presence of a heterogeneous Ziegler catalyst in at least one other reactor to produce a solution of a second interpolymer which has a broad composition distribution and a broad molecular weight distribution, and (C) combining the solution of the first interpolymer with the solution of the second interpolymer to form a high temperature polymer solution comprising the ethylene/α-olefin interpolymer composition, and (D) removing the solvent from the polymer solution of step (C) and recovering the ethylene/oα-olefin interpolymer composition.
- 10. The cast stretch film of claim 1, wherein Component A and Component B are interpolymers of ethylene with octene-1.
- 11. The cast stretch film of claim 1, wherein the interpolymer composition has a viscosity at 100 rad/s≦10,000 poise.
- 12. A cast stretch film comprising an interpolymer composition which has two or more distinct peaks in the ATREF curve; and wherein
- 13. The cast stretch film of claim 12 wherein the interpolymer composition comprises a substantially linear ethylene/α-olefin copolymer said composition having a density of from about 0.910 to about 0.922 g/cm3, a melt index (I2) of from about 0.5 to about 10 g/10 min and an I10/I2 of less than about 10.0.
- 14. The cast stretch film of claim 12 wherein the interpolymer composition is an interpolymer of ethylene with at least one C3-C8 α-olefin and has a density of from about 0.912 to about 0.920 g/cm3, a melt index (I2) of from about 1.0 to about 7.0 g/10 min and an I10/I2 of less than about 9.0.
- 15. The cast stretch film of claim 12 wherein the interpolymer composition is an interpolymer of ethylene and octene-1 and has a density of from about 0.915 to about 0.919 g/cm3, a melt index (I2) of from about 2.0 to about 6.0 g/10 min and an I10/I2 of less than about 8.0.
- 16. An interpolymer composition comprising;
(A) a substantially linear ethylene/α olefin interpolymer present in the composition in an amount of from about 10 to about 100% by weight based on the combined weight of Components A and B; and (B) a heterogeneous interpolymer having a broad molecular weight distribution and a broad composition distribution present in the composition in an amount of from about 0 to about 90% by weight based on the combined weight of Components A and B; and wherein said interpolymer composition is characterized as having a viscosity at 100 rad/s and a relaxation time (τ) which satisfies either of the following relationships; Log(viscosity at 100 rad/s)≦4.43−0.8log(I2) or log(τ)>−1.2−1.3*log(I2).
- 17. The interpolymer composition of claim 16 wherein Component A is present in the composition in an amount of from about 10 to about 90% by weight based on the combined weight of Components A and B, and Component B is present in the composition in an amount of from about 10 to about 90% by weight based on the combined weight of Components A and B, and wherein said interpolymer composition has a density of from about 0.910 to about 0.922 g/cm3, a melt index (I2) of from about 0.5 to about 10 g/10 min and an I10/I2 of less than about 10.0; and wherein
(a) Component A has a density of from about 0.860 to about 0.925 g/cm3, a melt index (I2) of from about 0.2 to about 7.0 g/10 min, an I10/I2≧5.63, and is an interpolymer of ethylene with at least one C3-C20 α-olefin; and (b) Component B has a density of from about 0.895 to about 0.955 g/cm3, and a melt index (I2) of from about 0.2 to about 500 g/10 min.
- 18. The interpolymer composition of claim 16 wherein Component A is present in the composition in an amount of from about 10 to about 90% by weight based on the combined weight of Components A and B, and Component B is present in the composition in an amount of from about 10 to about 90% by weight based on the combined weight of Components A and B, and wherein said interpolymer composition has a density of from about 0.912 to about 0.920 g/cm3, a melt index (I2) of from about 1.0 to about 7.0 g/10 min and an I10/I2 of less than about 9.0; and wherein
(a) Component A has a density of from about 0.880 to about 0.920 g/cm3, a melt index (I2) of from about 0.4 to about 4.0 g/10 min, an I10/I2≧5.63, and is an interpolymer of ethylene with at least one C3-C8 α-olefin; and (b) Component B has a density of from about 0.900 to about 0.945 g/cm3, and a melt index (I2) of 0.4 to 250 g/10 min.
- 19. The interpolymer composition of claim 16 wherein Component A is present in the composition in an amount of from about 35 to about 55% by weight based on the combined weight of Components A and B, and Component B is present in the composition in an amount of from about 45 to about 65% by weight based on the combined weight of Components A and B, and wherein said interpolymer composition has a density of from about 0.915 to about 0.919 g/cm3, a melt index (I2) of from about 2.0 to about 6.0 g/10 min and an I10/I2 of less than about 8.0; and wherein
(a) Component A has a density of from about 0.895 to about 0.915 g/cm3, a melt index (I2) of from about 0.5 to about 2.0 g/10 min, an I10/I2≧5.63, a Mw/Mn of from about 1.8 to about 3.0, and is an interpolymer of ethylene and octene-1; and (b) Component B has a density of from about 0.910 to about 0.935 g/cm3, and a melt index (I2) of 0.5 to 50 g/10 min.
- 20. The interpolymer composition of claim 16 comprising at least one substantially linear ethylene/α-olefin interpolymer, wherein the substantially linear ethylene/α-olefin polymer is characterized as having:
a) a melt flow ratio, I10/I2, ≧5.63, b) a molecular weight distribution, Mw/Mn, defined by the equation: Mw/Mn≦(I10/I2)−4.63, and c) a critical shear rate at onset of surface melt fracture of at least 50 percent greater than the critical shear rate at the onset of surface melt fracture of a linear ethylene/α-olefin polymer having about the same I2 and Mw/Mn.
- 21. The interpolymer composition of claim 16 wherein Component A comprises at least one substantially linear ethylene/α-olefin interpolymer characterized as having:
a) a melt flow ratio, I10/I2≧5.63, b) a molecular weight distribution, Mw/Mn, defined by the equation: Mw/Mn≦(I10/I2)−4.63, and c) a processing index less than or equal to about 70 percent of the PI of a linear ethylene/α-olefin polymer having about the same I2 and Mw/Mn.
- 22. The interpolymer composition of claim 16, wherein the substantially linear ethylene/α-olefin interpolymer has from about 0.01 to about 3 long chain branches/1000 carbons along the polymer backbone.
- 23. The interpolymer composition of claim 16 wherein the interpolymer composition has a viscosity at 100 rad/s≦10,000 poise.
- 24. An interpolymer composition which has two or more distinct peaks in the ATREF curve; and wherein
- 25. The interpolymer composition of claim 24 which comprises a substantially linear ethylene/α-olefin copolymer, said composition having a density of from about 0.910 to about 0.922 g/cm3, a melt index (I2) of from about 0.5 to about 10 g/10 min and an I10/I2 of less than about 10.0.
- 26. The interpolymer composition of claim 24 having a density of from about 0.912 to about 0.920 g/cm3, a melt index (I2) of from about 1.0 to about 7.0 g/10 min and an I10/I2 of less than about 9.0; which is an interpolymer of ethylene with at least one C3-C8 α-olefin.
- 27. The interpolymer composition of claim 24 having a density of from about 0.915 to about 0.919 g/cm3, a melt index (I2) of from about 2.0 to about 6.0 g/10 min and an I10/I2 of less than about 8.0; which is an interpolymer of ethylene and octene-1.
- 28. The interpolymer composition of claim 16 wherein;
(A) Component A is prepared by contacting ethylene and at least one other α-olefin under polymerization conditions in the presence of a constrained geometry catalyst composition in the presence of the cocatalyst containing either no aluminum cocatalyst or only a small amount of aluminum cocatalyst in at least one reactor to produce a first interpolymer which has a narrow composition distribution and a narrow molecular weight distribution; and, (B) Component B is prepared by contacting ethylene and at least one other α-olefin under polymerization conditions in the presence of a heterogeneous Ziegler catalyst in at least one other reactor to produce a second interpolymer which has a broad composition distribution and a broad molecular weight distribution, and (C) combining the first interpolymer with the second interpolymer to form a polymer mixture.
- 29. The interpolymer composition of claim 16 wherein;
(A) Component A is prepared by contacting ethylene and at least one other α-olefin under solution polymerization conditions in the presence of a constrained geometry catalyst composition containing either no aluminum cocatalyst or only a small amount of aluminum cocatalyst in at least one reactor to produce a solution of a first interpolymer which has a narrow composition distribution and a narrow molecular weight distribution; and, (B) Component B is prepared by contacting ethylene and at least one other α-olefin under solution polymerization conditions and at a higher polymerization reaction temperature than used in step (A) in the presence of a heterogeneous Ziegler catalyst in at least one other reactor to produce a solution of a second interpolymer which has a broad composition distribution and a broad molecular weight distribution, and (C) combining the solution of the first interpolymer with the solution of the second interpolymer to form a high temperature polymer solution comprising the ethylene/α-olefin interpolymer composition, and (D) removing the solvent from the polymer solution of step (C) and recovering the ethylene/α-olefin interpolymer composition.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. application Ser. No. 08/966,465 filed Nov. 6, 1997 which claims the benefit of U.S. Provisional Application No. 60/032,825 filed Dec. 12, 1996.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60032825 |
Dec 1996 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
08966465 |
Nov 1997 |
US |
Child |
10200814 |
Jul 2002 |
US |