High performance cast power stretch films with enhanced application and end-use properties
A stretch film including at least a first layer and a second layer, in which the first layer includes a metallocene linear low density polyethylene (m-LLDPE) with incorporated long chain branching resin and a lower density m-LLDPE resin; and the second layer includes a lower melt index m-LLDPE resin.
1. A cast stretch film comprising:
a first core layer, a second core layer, a first skin layer, and a second skin layer,
wherein said first core layer of said cast stretch film comprises a metallocene linear low density polyethylene (m-LLDPE) with incorporated long chain branching (LCB) resin and a lower density m-LLDPE resin; and said second core layer comprises a lower melt index m-LLDPE resin having a melt index of no more than about 1.8 (g/10 min. @190° C.),
further wherein said first core layer and said second core layer are located between said first skin layer and said second skin layer.
2. The cast stretch film of claim 1 , wherein said first core layer further comprises at least one additional resin chosen from the group consisting of polyethylenes, polyethylene copolymers, polypropylenes, and polypropylene copolymers.
3. The cast stretch film of claim 1 , wherein the metallocene linear low density polyethylene (m-LLDPE) with incorporated long chain branching resin has a melt index ranging from about 0.2 to about 8.0 (g/10 min. @190° C.).
4. The cast stretch film of claim 3 , wherein the metallocene linear low density polyethylene (m-LLDPE) with incorporated long chain branching resin has a melt index ranging from about 0.3 to about 3.0 (g/10 min. @190° C.).
5. The cast stretch film of claim 3 , wherein the metallocene linear low density polyethylene (m-LLDPE) with incorporated long chain branching resin has a melt index of about 0.5 (g/10 min. @190° C.).
6. The cast stretch film of claim 1 , wherein the metallocene linear low density polyethylene (m-LLDPE) with incorporated long chain branching resin has a density ranging from about 0.900 g/cc to about 0.940 g/cc.
7. The cast stretch film of claim 6 , wherein the metallocene linear low density polyethylene (m-LLDPE) with incorporated long chain branching resin has a density of about 0.920 g/cc.
8. The cast stretch film of claim 1 , wherein the lower density m-LLDPE resin has a melt index ranging from about 2.0 to about 6.0 (g/10 min. @190° C.).
9. The cast stretch film of claim 8 , wherein the lower density m-LLDPE resin has a melt index of about 3.5 (g/10 min. @190° C.).
10. The cast stretch film of claim 1 , wherein the lower density m-LLDPE resin has a density ranging from about 0.900 g/cc to about 0.915 g/cc.
11. The cast stretch film of claim 10 , wherein the lower density m-LLDPE resin has a density of about 0.912 g/cc.
12. The cast stretch film of claim 1 , wherein the lower melt index m-LLDPE resin has a melt index of about 1.5 (g/10 min. @190° C.).
13. The cast stretch film of claim 1 , wherein the lower melt index m-LLDPE resin has a density ranging from about 0.900 g/cc to about 0.940 g/cc.
14. The cast stretch film of claim 1 , wherein the lower melt index m-LLDPE resin has a density of about 0.918 g/cc.
15. A cast stretch film comprising:
a first skin layer, a second skin layer, a first core layer, and a second core layer; said first core layer adjacent to the second core layer and interior to the first skin layer;
wherein said first core layer comprises a metallocene linear low density polyethylene (m-LLDPE) with incorporated long chain branching (LCB) resin and a lower density m-LLDPE resin; said second core layer comprises a lower melt index m-LLDPE resin having a melt index of no more than about 1.8 (g/10 min. @190° C.); and said first skin layer and said second skin layer comprise at least one resin chosen from the group consisting of polyethylenes, polyethylene copolymers, polypropylenes, and polypropylene copolymers,
further wherein said second core layer is located interior to said second skin layer.