Polyester film and laminate using same
A polyester film suitable for use in battery packages, particularly for use in deep drawn packages of lithium ion secondary batteries that includes an electrolyte (in a solid state or in a liquid state), and which is also suitable for use in packages of pharmaceutical products that have various shapes. The polyester film is characterized in that the stresses at 5% elongation (F5 values) and the stresses at 10% elongation (F10 values) of the film in the longitudinal direction and in the transverse direction at 25° C., respectively, satisfy (I) and (II): 1.5≧ F 10 MD /F 5 MD ≧1 (I) 1.5≧ F 10 TD /F 5 TD ≧1 (II).
1. A polyester film having a stress at 5% elongation (F5 value) and a stress at 10% elongation (F10 value) at 25° C. in a longitudinal direction (MD) and those in a transverse direction (TD) that satisfy formulae (I), (II), (III) and (IV):
1.5≧ F 10 MD /F 5 MD ≧1 (I)
1.5≧ F 10 TD /F 5 TD ≧1 (II)
F 10 MD ≧120 MPa (III)
F 10 TD ≧120 MPa (IV),
wherein in the polyester film 95 mol % or more of glycol units are structural units derived from ethylene glycol and 95 mol % or more of dicarboxylic acid units are structural units derived from terephthalic acid.
2. The polyester film as defined in claim 1 , wherein the stress at 10% elongation at 25° C. in the longitudinal direction and that in the transverse direction satisfy formula (V):
1.2≧ F 10 MD /F 10 TD ≧0.8 (V).
3. The polyester film as defined in claim 1 , wherein the polyester film has a degree of heat shrinkage at 200° C. is −5 to 5% both in the longitudinal and transverse directions.
4. The polyester film as defined in claim 1 , wherein at least either of its surfaces has a dynamic friction coefficient μd of 0.3 to 0.8.
5. A laminate comprising the polyester film as defined in claim 1 laminated to a metal foil.
6. Packaging for batteries comprising the polyester film as defined in claim 1 .
7. Medical packaging containers comprising polyester film as defined in claim 1 .
8. Laminates comprising polyester film as defined in claim 1 , wherein at least either of surfaces is laminated with aluminum foil with a thickness of 10 μm or more and 60 μm or less.
9. Packaging for batteries comprising laminates as defined in claim 8 .
10. The polyester film as defined in claim 2 , wherein the polyester film has a degree of heat shrinkage at 200° C. is −5 to 5% both in the longitudinal and transverse directions.
11. The polyester film as defined in claim 2 , wherein at least either of its surfaces has a dynamic friction coefficient μd of 0.3 to 0.8.
12. A polyester film having a stress at 5% elongation (F5 value) and a stress at 10% elongation (F10 value) at 25° C. in a longitudinal direction (MD) and those in a transverse direction (TD) that satisfy formulae (I), (II), (III) and (IV):
1.5≧ F 10 MD /F 5 MD ≧1 (I)
1.5≧ F 10 TD /F 5 TD ≧1 (II)
F 10 MD ≧120 MPa (III)
F 10 TD ≧120 MPa (IV).
13. A polyester film having a stress at 5% elongation (F5 value) and a stress at 10% elongation (F10 value) at 25° C. in a longitudinal direction (MD) and those in a transverse direction (TD) that satisfy formulae (I) and (II):
1.5≧ F 10 MD /F 5 MD ≧1 (I)
1.5≧ F 10 TD /F 5 TD ≧1 (II),
wherein the polyester film has a degree of heat shrinkage at 200° C. is −5 to 5% both in the longitudinal and transverse directions.
14. A polyester film having a stress at 5% elongation (F5 value) and a stress at 10% elongation (F10 value) at 25° C. in a longitudinal direction (MD) and those in a transverse direction (TD) that satisfy formulae (I) and (II) given below:
1.5≧ F 10 MD /F 5 MD ≧1 (I)
1.5≧ F 10 TD /F 5 TD ≧1 (II)
wherein in the polyester film 95 mol % or more of glycol units are structural units derived from ethylene glycol and 95 mol % or more of dicarboxylic acid units are structural units derived from terephthalic acid.