Claims
- 1. A semitransparent reflector satisfying the following optical characteristics (1) and (2):
- 2. A semitransparent reflector satisfying the following optical characteristics (1) and (2):
- 3. A semitransparent reflector satisfying the following optical characteristics (1) and (2):
- 4. The semitransparent reflector as claimed in claim 1, which is a multi-layered, biaxially-oriented film comprising a base layer (A) and protective layers (B) and (C) that contain a thermoplastic resin, a flaky inorganic fine powder and/or an organic filler, and which has flaky pores (D).
- 5. The semitransparent reflector as claimed in claim 4, wherein the flaky pores (D) satisfy the following (1) to (3):
- 6. The semitransparent reflector as claimed in claim 4, wherein the flaky pores (D) satisfy the following (1) to (3):
- 7. The semitransparent reflector as claimed in claim 4, wherein the mean particle size of the flaky inorganic fine powder is from 3 to 30 μm, the mean aspect ratio thereof is from 2 to 100, the amount of the flaky inorganic fine powder in the base layer (A) is from 2 to 30% by weight, and the amount of the flaky inorganic fine powder in the protective layers (B) and (C) is from 0 to 30% by weight.
- 8. The semitransparent reflector as claimed in claim 4, wherein the mean dispersion particle size of the organic filler is from 10 to 50 μm, the mean aspect ratio there of after biaxially stretched is from 10 to 1000, the amount of the organic filler in the base layer (A) is from 2 to 30% by weight, and the amount of the organic filler in the protective layers (B) and (C) is from 0 to 30% by weight.
- 9. The semitransparent reflector as claimed in claim 4, wherein the multi-layered biaxially-oriented film satisfies an optical characteristic of 0%≦|(T−R)|≦60%.
- 10. The semitransparent reflector as claimed in claim 4, wherein the multi-layered biaxially-oriented film satisfies an optical characteristic of 0%≦|(T−R)|≦40%.
- 11. The semitransparent reflector as claimed in claim 4, wherein the ratio of the draw ratio in the machine direction LMD to that in the transverse direction LTD of the multi-layered biaxially-oriented film, LMD/LTD is from 0.1 to 10.
- 12. The semitransparent reflector as claimed in claim 4, wherein the ratio of the draw ratio in the machine direction LMD to that in the transverse direction LTD of the multi-layered biaxially-oriented film, LMD/LTD is from 0.4 to 1.5.
- 13. The semitransparent reflector as claimed in claim 4, wherein the areal draw ratio (LMD×LTD) of the multi-layered biaxially-oriented film is from 9 to 80 times.
- 14. The semitransparent reflector as claimed in claim 4, wherein the areal draw ratio (LMD×LTD) of the multi-layered biaxially-oriented film is from 30 to 60 times.
- 15. The semitransparent reflector as claimed in claim 4, wherein the thermoplastic resin includes a polyolefin resin.
- 16. The semitransparent reflector as claimed in claim 15, wherein the polyolefin resin is a propylene based resin having a melting point of not lower than 140° C.
- 17. A display device comprising the semitransparent reflector of claim 1.
- 18. A display device with a member comprising the semitransparent reflector of claim 1 and a polarizer bonded thereto, in which the member satisfies the following optical characteristics (1) and (2):
- 19. A display device with a member comprising the semitransparent reflector of claim 1 and a polarizer bonded thereto, in which the member satisfies the following optical characteristics (1) and (2):
- 20. A display device with a member comprising the semitransparent reflector of claim 1 and a polarizer bonded thereto, in which the member satisfies the following optical characteristics (1) and (2):
Priority Claims (1)
Number |
Date |
Country |
Kind |
2001-299547 |
Sep 2001 |
JP |
|
Parent Case Info
[0001] This application is a continuation-in-part of PCT/JP02/10032 filed Sep. 27, 2002 claiming priority of Japanese Patent Application No. 299547/2001 filed Sep. 28, 2001.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/JP02/10032 |
Sep 2002 |
US |
Child |
10810684 |
Mar 2004 |
US |