Claims
- 1. A cellulose ester film comprising a property of:
a peak of infrared absorption spectrum being in a range from 520 cm−1 to 480 cm−1.
- 2. A cellulose ester film as claimed in claim 1, further comprising a property of:
retardation in thickness direction (Rth) being at least 35 nm.
- 3. A cellulose ester film as claimed in claim 2, further comprising a property of:
retardation in-plane (Re) being in a range of −50 nm to 5 nm, wherein a feeding direction in producing said cellulose ester film is a positive direction.
- 4. A cellulose ester film as claimed in claim 3, wherein the thickness of said cellulose ester film is in a range of 35 μm to 65 μm.
- 5. A cellulose ester film as claimed in claim 4, wherein said cellulose ester is cellulose acylate.
- 6. A cellulose ester film produced by casting a dope containing cellulose ester and a solvent, said cellulose ester film comprising a property of:
a tear strength being at least 6 g.
- 7. A cellulose ester film as claimed in claim 6, further comprising a property of:
a peak of infrared absorption spectrum being in a range of 520 cm−1 to 480 cm−1.
- 8. A cellulose ester film as claimed in claim 7, further comprising a property of:
retardation in thickness direction (Rth) being at least 35 nm.
- 9. A cellulose ester film as claimed in claim 8, further comprising a property of:
retardation in-line (Re) being in a range of −50 nm to 5 nm, wherein a feeding direction in producing said cellulose ester film being a positive direction.
- 10. A cellulose ester film as claimed in claim 9, wherein said cellulose ester film is in a range of 35 μm to 65 μm thickness.
- 11. A cellulose ester film as claimed in claim 10, wherein said cellulose ester is cellulose acylate.
- 12. A producing method of a cellulose ester film comprising the steps of:
A. casting a dope on a substrate from a casting die to form a gel-like film, said dope containing a solvent and solid contents such as cellulose ester; B. peeling said gel-like film from said substrate; C. regulating temperature of said gel-like film in a range of 80° C. to 140° C. when the content of said solvent in said gel-like film is in a range of 20 wt. % to 100 wt. % to said solid contents, said gel-like film forming said cellulose ester film after dry.
- 13. A producing method of a cellulose ester film comprising the steps of:
A. casting a dope on a substrate from a casting die to form a gel-like film, said dope containing a solvent and solid contents such as cellulose ester; B. peeling said gel-like film from said substrate; C. applying tension of 25 kg/m to 250 kg/m in a widthwise direction of said gel-like film when the content of said solvent in said gel-like film is in a range of 20 wt % to 100 wt. % to said solid contents, said gel-like film forming said cellulose ester film after dry.
- 14. A producing method of a cellulose ester film as claimed in claim 13, temperature of said gel-like film ranges from 80° C. to 140° C. in said step C.
- 15. A producing method of a cellulose ester film as claimed in claim 14, said dope is cooled to have a temperature of at most 5° C. in said step A.
- 16. A producing method of a cellulose ester film, an infrared absorption spectrum of said cellulose ester film having a peak in a range of 520 cm−1 to 480 cm−1, a tear strength being at least 6 g, and retardation in thickness direction (Rth) being at least 35 nm, said producing method comprising the steps of:
A. cooling a substrate to have temperature at most 5° C.; B. casting a dope on said substrate from a casting die section to form a gel-like film, said dope containing a solvent and solid contents such as cellulose ester; C. peeling said gel-like film out of said substrate; D. applying tension in a range of 25 kg/m to 250 kg/m to a widthwise direction of said gel-like film when the content of said solvent in said gel-like film is in a range of 20 wt % to 100 wt. % to said solid contents, said gel-like film forming said cellulose ester film after dry.
- 17. A producing method of a cellulose ester film as claimed in claim 16, wherein temperature of said gel-like film ranges from 80° C. to 140° C. in said step D.
- 18. A producing method as claimed in claim 17, further comprising the steps of:
measuring infrared absorbance in said cellulose ester film after said step D to obtain a peak intensity in a range of 520 cm−1 to 480 cm−1; adjusting temperature or tension of said gel-like film of said step D in accordance with said peak intensity.
- 19. A producing method of a cellulose ester film as claimed in claim 17, wherein said gel-like film has a multi-layer structure.
- 20. A producing method of a cellulose ester film as claimed in claim 19, wherein said casting die section is a multimanifold casting die having plural manifolds.
- 21. A producing method of a cellulose ester film as claimed in claim 19, wherein said casting die section is a casting die having a feed block on an upstream side to a flow of said dope.
- 22. A producing method of a cellulose ester film as claimed in claim 19, wherein said casting die section includes plural casting dies.
- 23. A producing method of a cellulose ester film as claimed in claim 19, wherein the thickness of said cellulose ester film is in a range of 20 μm to 120 μm.
- 24. A producing method of a cellulose ester film as claimed in claim 23, wherein said cellulose ester is cellulose acylate.
- 25. A producing method of a cellulose ester film as claimed in claim 24, wherein said cellulose ester film is used for a protective film for a polarizing filter.
- 26. A producing method of a cellulose ester film as claimed in claim 24, wherein said cellulose ester film is used for an optical functional film.
- 27. A producing method of a cellulose ester film as claimed in claim 24, wherein said cellulose ester film is used for a polarizing filter.
- 28. A producing method of a cellulose ester film as claimed in claim 24, wherein said cellulose ester film is used for a liquid crystal display device.
- 29. A producing method of a cellulose ester film, said cellulose ester film being produced by casting a dope containing a solvent and solid contents such as cellulose ester to form a gel-like film and by drying said gel-like film with applying tension on it, said producing method comprising:
measuring infrared absorbance in said cellulose ester film during continuous production to obtain a peak intensity in a range of 520 cm−1 to 480 cm−1; and adjusting temperature of said gel-like film for drying and said tension of said gel-like film in accordance with said peak intensity.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2002-273896 |
Sep 2002 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation of application Ser. No. 10/663,792 filed Sep. 17, 2003, the disclosure of which is incorporated herein by reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
10663792 |
Sep 2003 |
US |
Child |
10756506 |
Jan 2004 |
US |