Calcium carbonate barrier films and uses thereof
The present invention provides polyolefin films comprising calcium carbonate that have a reduced moisture vapor transmission rate, methods of making the films, and packaging materials comprising the films.
1. A multilayer film for packaging a moisture-sensitive material, wherein the multilayer film consists of an inner layer, an outer layer and a core layer, wherein the core layer and the outer layer each comprises:
a) a medium molecular weight high density polyethylene (MMW-HDPE) base resin; and
b) a MMW-HDPE carrier resin admixed with natural ground CaCO 3 ;
wherein the base resin and the carrier resin differ in molecular weight, density, melt index and/or polydispersity index, wherein the CaCO 3 and the carrier resin are present in a ratio of 15/85 to 80/20 by weight, wherein the CaCO 3 is present in the multilayer film in a total concentration of 20-35% by weight, wherein the CaCO 3 is contained in the outer and core layers and not in the inner layer, wherein the multilayer film has a moisture vapor transmission rate (MVTR) that is reduced by 10-30% in comparison to the film in the absence of CaCO 3 , wherein the multilayer film is a moisture-sensitive material packaging film, wherein the CaCO 3 has a median particle size of 0.7-2.5 μm and a top cut d98 of 4-15 μm, and wherein the CaCO 3 is treated with 0.3 to 2.3% by weight of a surface treatment agent selected from the group consisting of one or more fatty acids having 8 to 24 carbon atoms.
2. The multilayer film of claim 1 , wherein the carrier resin has a melt index of 4-10 dg/min.
3. The multilayer film of claim 1 , wherein the carrier resin has a density of 0.958-0.963 g/cm 3 .
4. The multilayer film of claim 1 , wherein the base resin has a melt index of 0.05-2.0 dg/min.
5. The multilayer film of claim 1 , wherein the base resin has a density of 0.958-0.963 g/cm 3 .
6. The multilayer film of claim 1 , wherein the base resin has a melt index of 0.05-2.0 dg/min and a density of 0.958-0.963 g/cm 3 , and the carrier resin has a melt index of 4-10 dg/min and a density of 0.958-0.963 g/cm 3 .
7. The multilayer film of claim 1 , wherein the carrier resin has a melt index of 6.5-8.0 dg/min.
8. The multilayer film of claim 1 , wherein the carrier resin has a melt index of 6.5 dg/min.
9. The multilayer film of claim 1 , wherein the carrier resin has a density of 0.962 g/cm 3 .
10. The multilayer film of claim 1 , wherein the base resin has a melt index of 1 dg/min.
11. The multilayer film of claim 1 , wherein the base resin has a density of 0.962 g/cm 3 .
12. The multilayer film of claim 1 , wherein the concentration of CaCO 3 in the multilayer film is 20-30% by weight.
13. The multilayer film of claim 1 , wherein the concentration of CaCO 3 in the multilayer film is 25% by weight.
14. The multilayer film of claim 1 , wherein the CaCO 3 and the carrier resin are present in a ratio of 40/60 to 80/20 by weight.
15. The multilayer film of claim 1 , wherein the CaCO 3 and the carrier resin are present in a ratio of 40/60 to 60/40 by weight.
16. The multilayer film of claim 1 , wherein the CaCO 3 and the carrier resin are present in a ratio of 45/55 to 55/45 by weight.
17. The multilayer film of claim 1 , wherein the CaCO 3 /carrier resin ratio is 50/50 by weight.
18. The multilayer film of claim 1 , wherein the carrier resin has a melt index of 0.85 to 1.5 dg/min.
19. The multilayer film of claim 1 , wherein the base resin has a melt index of 0.85 to 1.5 dg/min.
20. The multilayer film of claim 1 , wherein the base resin has a melt index of 0.05-2.0 dg/min and a density of 0.958-0.963 g/cm 3 , and the carrier resin has a melt index of 4-10 dg/min and a density of 0.958-0.963 g/cm 3 , and wherein the CaCO 3 has a median particle size of 1.4-2.0 μm, a top cut d98 of 8-10 μm, and a surface area of 3.3-10.0 m 2 /g.
21. The multilayer film of claim 1 , having a moisture vapor transmission rate (MVTR) that is reduced by 20-30% in comparison to the film in the absence of CaCO 3 .
22. The multilayer film according to claim 1 , obtained by coextrusion of the inner layer, outer layer and core layer.
23. The multilayer film according to claim 1 , wherein the inner layer comprises one or more of ethylene vinyl acetate (EVA), ethylene ethyl acetate (EEA), and ethylene acrylic acid (EAA).
24. The multilayer film according to claim 1 , wherein the inner layer comprises ethylene vinyl acetate (EVA).
25. The multilayer film according to claim 1 , in combination with a moisture sensitive material contained therein.
26. The multilayer film according to claim 1 , wherein the one or more fatty acids having 8 to 24 carbon atoms is one or more of arachidic acid, behenic acid, capric acid, cerotic acid, isostearic acid, lauric acid, myristic acid, montanic acid, palmitic acid or stearic acid.
27. The multilayer film according to claim 1 , wherein the one or more fatty acids having 8 to 24 carbon atoms is one or more of palmitic acid or stearic acid.
28. The multilayer film according to claim 1 , wherein the one or more fatty acids having 8 to 24 carbon atoms is stearic acid.
29. A packaging material comprising the film of claim 1 .
30. A multilayer film consisting of an inner layer, an outer layer and a core layer, wherein the core layer and the outer layer each comprises:
a) a medium molecular weight high density polyethylene (MMW-HDPE) base resin; and
b) a MMW-HDPE carrier resin admixed with natural ground CaCO 3 ;
wherein the base resin and the carrier resin differ in molecular weight, density, melt index and/or polydispersity index, wherein the CaCO 3 and the carrier resin are present in a ratio of 15/85 to 80/20 by weight, wherein the CaCO 3 is present in the multilayer film in a total concentration of 20-35% by weight, wherein the CaCO 3 is contained in the outer and core layers and not in the inner layer, and wherein the multilayer film has a moisture vapor transmission rate (MVTR) that is reduced by 10-30% in comparison to the film in the absence of CaCO 3 , wherein the CaCO 3 has a median particle size of 0.7-2.5 μm and a top cut d98 of 4-15 μm, and wherein the CaCO 3 is treated with 0.3 to 2.3% by weight of a surface treatment agent selected from the group consisting of one or more fatty acids having 8 to 24 carbon atoms.