Claims
- 1. A polymer composition comprising ethylene interpolymerized with at least one unsaturated comonomer, wherein the composition is characterized as having:a) a Mw/Mn of less than or equal to 3.3, as determined by gel permeation chromatography (GPC), b) an I10/I2 in the range of from greater than 6.6 to about 8.2, as determined in accordance ASTM D-1238, Condition 190° C./2.16 kg and Condition 190° C./10 kg, c) a composition density less than 0.945 gram/cubic centimeter, as defined according to ASTM-792, d) at least two polymer components, the first component having a first viscosity average molecular weight, Mv1, and the second component having a second viscosity average molecular, Mv2, wherein Mv1/Mv2 is less than or equal to 1, as determined using ATREF-DV, and e) a first ATREF peak temperature, Tpeak1 and a second ATREF peak temperature, Tpeak2, corresponding to the at least two components and as determined using analytical temperature rising elution fraction (ATREF), wherein the temperature differential between Tpeak2 and Tpeak1, ΔT, decreases with increased composition density such that ΔT is less than 23° C. at composition densities of greater than or equal to 0.926 g/cm3, greater than 23° C. at composition densities less than or equal to 0.92 g/cm3, and in the range of from about 10 to about 22° C. at composition densities from about 0.92 to about 0.926 g/cm3, wherein the first component polymer is a substantially linear ethylene interpolymer characterized as having: i. melt flow ratio, I10/I2≧5.63, and ii. a gas extrusion rheology such that the critical shear rate at onset of surface melt fracture for the substantially linear ethylene polymer is at least 50 percent greater than the critical shear rate at the onset of surface melt fracture for a linear ethylene polymer, wherein the substantially linear ethylene polymer and the linear ethylene polymer comprise the same comonomer or comonomers, the linear ethylene polymer has an I2 and Mw/Mn within ten percent of the substantially linear ethylene polymer and wherein the respective critical shear rates of the substantially linear ethylene polymer and the linear ethylene polymer are measured at the same melt temperature using a gas extrusion rheometer.
- 2. A polymer composition comprising ethylene interpolymerized with at least one unsaturated comonomer, wherein the composition is characterized as having:a) a Mw/Mn of less than or equal to 3.3, as determined by gel permeation chromatography (GPC), b) an I10/I2 ration greater than 6.6, as determined in accordance with ASTM D-1238, Condition 190° C./2.16 kg and Condition 190° C./10 kg, c) a composition density less than 0.945 gram/cubic centimeter, as determined according to ATM-792, d) at least two polymer components, the first component having a first viscosity average molecular weight, Mv1, and the second component having a viscosity average molecular, Mv2, wherein Mv1/Mv2 is in the range from about 0.6 to about 1.0, as determined using ATREF-DV, and e) a first ATREF peak temperature, Tpeak1 and a second ATREF peak temperature, Tpeak2, corresponding to the at least two components and as determined using analytical temperature rising elution fraction (ATREF), wherein the temperature differential between Tpeak2, and Tpeak1, ΔT, a ΔT which is equal to or less than the product of the equation: ΔT−[5650.842×ρ2]−[11334.5×ρ]+5667.93 wherein ΔT is in degrees Celsius and ρ is composition density in g/cm3 and wherein the first component is a substantially linear ethylene interpolymer.
- 3. The composition of claim 1 wherein the at least one unsaturated comonomer is α-olefin selected from the group consisting of propylene, 1-butene, 1-isobutylene, 1-hexene, 4-methyl-1-pentene, 1-pentene, 1-heptene and 1-octene.
- 4. The composition of claim 1 wherein the I10/I2 ratio is greater than or equal to 7.1, as determined in accordance with ASTM D-1238, Condition 190° C./2.16 kg and Condition 190° C./10 kg.
- 5. The composition of claim 1 further characterized as having a density differential less than or equal to 0.028 g/cm3, as measured in accordance with ASTM D-792.
- 6. The composition of claim 1 wherein Mv1/Mv2 is in the, range of from about 0.8 to about 1, as determined using an ATREF-DV technique.
- 7. The composition of claim 1 further characterized as having greater than or equal to 0.08 long chain branches per 10,000 carbons.
- 8. The composition of claim 1 wherein the second polymer component is prepared using a homogeneous catalyst system.
- 9. The composition of claim 8 wherein the homogenous catalyst system is a constrained geometry catalyst system.
- 10. The composition of claim 1 wherein the second polymer component is prepared using a heterogeneous titanium, vanadium or zirconium catalyst system.
- 11. The composition of claim 1 wherein the second polymer component is a heterogeneously branched ethylene polymer.
- 12. The composition of claim 1 wherein the second polymer component is a homogeneously branched linear ethylene polymer.
- 13. The composition of claim 1 wherein the second polymer component is a substantially linear ethylene polymer is characterized as having:(a) a molecular weight distribution, Mw/Mn defined by the equation: Mw/Mn≦(I10/I2)−4.63, (b) a melt flow ratio, I10/I2≧5.63, and (c) a gas extrusion rheology such that the critical shear rate at onset of surface melt fracture for the substantially linear ethylene polymer is at least 50 percent greater than the critical shear rate at the onset of surface melt fracture for a linear ethylene polymer, wherein the substantially linear ethylene polymer and the linear ethylene polymer comprise the same comonomer or comonomers, the linear ethylene polymer has an I2 and Mw/Mn within ten percent of the substantially linear ethylene polymer and wherein the respective critical shear rates of the substantially linear ethylene polymer and the linear ethylene polymer are measured at the same melt temperature using a gas extrusion rheometer.
- 14. The composition of claim 13 wherein the substantially linear ethylene polymer is further characterized as having a single DSC melting point and is an interpolymer of ethylene with at least one C3-C20 α-olefin.
- 15. The composition of claim 1 further characterized as having a high density fraction greater than 15.5 weight percent, based on the total weight of the composition, as determined using a temperature rising elution fractionation technique.
- 16. The composition of claim 15, wherein the high density fraction is greater than or equal to 22.2 weight percent, based on the total weight of the composition.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part application of U.S. provisional application No. 60/059,555, filed Sep. 19, 1997, now abandoned, the disclosure of which is incorporated herein, in its entirety, by reference.
US Referenced Citations (9)
Foreign Referenced Citations (17)
Number |
Date |
Country |
0 572 034 |
Jan 1993 |
EP |
0 575 123 |
Dec 1993 |
EP |
WO 9313143 |
Jul 1993 |
WO |
WO 9409060 |
Apr 1994 |
WO |
9417112 |
Aug 1994 |
WO |
9425523 |
Nov 1994 |
WO |
WO 9515851 |
Jun 1995 |
WO |
WO 9530713 |
Nov 1995 |
WO |
WO 9530714 |
Nov 1995 |
WO |
9607680 |
Mar 1996 |
WO |
WO 9612762 |
May 1996 |
WO |
WO 9635750 |
Nov 1996 |
WO |
WO 9730111 |
Aug 1997 |
WO |
WO 9821274 |
May 1998 |
WO |
WO 9821276 |
May 1998 |
WO |
WO 9903902 |
Jan 1999 |
WO |
WO 9914271 |
Mar 1999 |
WO |
Non-Patent Literature Citations (3)
Entry |
U.S. patent application Ser. No. 08/880006, DeKunder et al., filed on Jun. 20, 1997. |
U.S. patent application Ser. No. 08/966465, Van Dun et al., filed on Nov. 06, 1997. |
U.S. patent application Ser. No. 09/943853, Anderson et al., filed Aug. 31, 2001. |
Provisional Applications (1)
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Number |
Date |
Country |
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60/059555 |
Sep 1997 |
US |