IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0236769
(2002-09-06)
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발명자
/ 주소 |
- Sun, Edward I.
- Heydarpour, Ramin
- Josephy, Karl
- Schut, Johannes
- Chang, Eng-Pi
- Wang, Yao-Feng
|
출원인 / 주소 |
- Avery Dennison Corporation
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대리인 / 주소 |
Renner, Otto, Boisselle & Sklar, LLP
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인용정보 |
피인용 횟수 :
13 인용 특허 :
210 |
초록
▼
This invention relates to a die-cuttable, biaxially stretch-oriented monolayer film comprising a polyethylene having a density of about 0.940 g/cm 3 or less, a propylene polymer or copolymer, or mixtures thereof, wherein the tensile modulus of the film in the machine direction is greater than the t
This invention relates to a die-cuttable, biaxially stretch-oriented monolayer film comprising a polyethylene having a density of about 0.940 g/cm 3 or less, a propylene polymer or copolymer, or mixtures thereof, wherein the tensile modulus of the film in the machine direction is greater than the tensile modulus in the cross direction, the tensile modulus of the film in the cross direction is about 150,000 psi or less, and the film is free of copolymers of ethylene with an ethylenically unsaturated carboxylic acid or ester. Die-cuttable, stretch-oriented multilayer films also are described comprising the above films as a base layer, and a thermoplastic polymer skin layer bonded to the upper surface of the base layer. The biaxially oriented monolayer and multilayer films are useful in particular in preparing adhesive containing labelstock for use in adhesive labels.
대표청구항
▼
1. A die-cuttable, biaxially stretch-oriented monolayer film comprising a polyethylene having a density of about 0.940 g/cm 3 or less, a propylene polymer or copolymer, or mixtures thereof, wherein the tensile modulus of the film in the machine direction is greater than the tensile modulus in the c
1. A die-cuttable, biaxially stretch-oriented monolayer film comprising a polyethylene having a density of about 0.940 g/cm 3 or less, a propylene polymer or copolymer, or mixtures thereof, wherein the tensile modulus of the film in the machine direction is greater than the tensile modulus in the cross direction, the tensile modulus of the film in the cross direction is about 150,000 psi or less, and the film is free of copolymers of ethylene with an ethylenically unsaturated carboxylic acid or ester. 2. The film of claim 1 comprising a propylene copolymer. 3. The film of claim 2 wherein the propylene copolymer is a copolymer of propylene and up to about 40% by weight of at least one α-olefin selected from ethylene and α-olefins containing from 4 to about 8 carbon atoms. 4. The film of claim 3 wherein the α-olefin is ethylene or 1-butene. 5. The film of claim 1 comprising a polyethylene having a density of from about 0.890 to about 0.925 g/cm 3 . 6. The film of claim 1 which is free of inert particulate filler. 7. The film of claim 1 containing inert particulate filler. 8. The film of claim 1 having a haze of less than about 10%. 9. The film of claim 1 having a haze of less than about 6%. 10. The film of claim 1 having a haze of less than about 2%. 11. The film of claim 1 wherein the stretch-orientation in the machine direction is greater than the orientation in the cross direction by at least about 10%. 12. The film of claim 11 wherein the film is oriented in the machine direction at a stretch ratio of from about 5:1 to about 10:1. 13. The film of claim 1 wherein the film contains at least one nucleating agent. 14. The film of claim 1 having a Gurley stiffness in the machine direction of from about 10 to about 50. 15. The film of claim 1 having a thickness of about 3.5 mils or less. 16. The film of claim 1 having a thickness of from about 2 to about 2.5 mils. 17. The film of claim 1 wherein the film has been biaxially stretch-oriented and heat set. 18. The film of claim 1 wherein the film comprises polyethylene having a density of from about 0.890 to about 0.925 g/cm 3 . 19. The film of claim 1 wherein the film has been oriented in the machine direction at a stretch ratio of about 9:1 to about 10:1, and oriented in the cross direction at a stretch ratio of greater than 1:1 up to about 3:1. 20. The film of claim 19 wherein the stretch ratio in the cross direction is less than about 2:1. 21. The film of claim 1 having a friction energy of less than about 120 g-cm. 22. The film of claim 1 having a thickness of from about 1 to about 3.5 mils. 23. The film of claim 1 wherein the film has been stretched in the cross direction at a ratio of from greater than 1:1 up to about 5:1. 24. The film of claim 1 wherein the film has been stretched in the cross direction at a ratio of from greater than 1:1 up to about 4:1. 25. The film of claim 1 wherein the biaxially oriented film is prepared by a simultaneous biaxial orientation process. 26. A die-cuttable, biaxially stretch-oriented monolayer film comprising polyethylene having a density of 0.940 g/cm 3 or less, a propylene polymer or copolymer, or mixtures thereof wherein the stretch orientation of the film in the machine direction is greater than the stretch orientation in the cross direction by at least 10%, the tensile modulus of the film in the cross direction is 150,000 psi or less, and the film is free of copolymers of ethylene with an ethylenically unsaturated carboxylic acid or ester. 27. The film of claim 26 wherein the stretch-orientation in the machine direction is greater than the stretch-orientation in the cross direction by at least about 20%. 28. The film of claim 26 wherein the film has been stretched in the machine direction at a ratio of from about 5:1 to about 10:1. 29. The film of claim 26 comprising a polyethylene having a density of from about 0.890 to about 0.925 g/cm 3 . 30. The film of claim 26 comprising a copolymer of propylene and up to a bout 40% by weight of at least one olefin selected from ethylene and α-olefins containing from 4 to about 8 carbon atoms. 31. The film of claim 26 wherein the film has been stretch oriented in the machine direction at a ratio of from about 9:1 to about 10:1, and in the cross direction at a ratio of greater than 1:1 to about 3:1. 32. The film of claim 26 having a thickness of from about 1 to about 3.5 mils. 33. The film of claim 26 wherein the film has been stretched in the cross direction at a ratio of from greater than 1:1 up to about 5:1. 34. The film of claim 26 wherein the film has been stretched in the cross direction at a ratio of from grater than 1:1 up to about 4:1. 35. The film of claim 26 wherein the biaxially oriented film is prepared by a simultaneous biaxial orientation process. 36. The film of claim 26 having a haze of less than 10%. 37. A die-cuttable, biaxially stretch-oriented monolayer film having a thickness of from about 1 mil to about 3.5 mils and comprising a polyethylene having a density of about 0.940 g/cm 3 or less, a propylene polymer or copolymer, or mixtures thereof, wherein the tensile modulus of the film in the machine direction is greater than the tensile modulus in the cross direction, the tensile modulus of the film in the cross direction is about 150,000 psi or less, the film has been oriented in the machine direction at a stretch ratio of from about 5:1 to about 10:1 and in cross-direction at a stretch ratio of from greater than 1:1 up to about 4:1, and the film is free of copolymers of ethylene with an ethylenically unsaturated carboxylic acid or ester. 38. A die-cuttable, biaxially stretch-oriented monolayer film having a thickness of from about 1 mil to about 3.5 mils and comprising polyethylene having a density of 0.940 g/cm 3 or less, a propylene polymer or copolymer, or mixtures thereof wherein the stretch orientation of the film in the machine direction is greater than the stretch orientation in the cross direction by at least 10%, the tensile modulus of the film in the cross direction is 150,000 psi or less, the film has been oriented in the machine direction at a stretch ratio of from about 5:1 to about 10:1 and in cross-direction at a stretch ratio of from greater than 1:1 up to about 5:1, and the film is free of copolymers of ethylene with an ethylenically unsaturated carboxylic acid or ester.
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