IP Library Granted Patent US 8,672,492
Granted Patent B2
US 8,672,492 · App. 12/672,841 · Granted Mar 18, 2014

Optical film and method for manufacturing the same, antiglare film, polarizer with optical layer, and display apparatus

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Quick Facts
Patent No.
US 8,672,492
App. No.
12/672,841
Granted
Mar 18, 2014
Kind
B2
Abstract

An optical film includes a base member and an optical layer provided on the base member. The optical layer has an irregular shape on a surface thereof, and the irregular shape is obtained by applying a coating material containing fine particles and a resin onto the base member, distributing the fine particles densely in some regions and sparsely in other regions by convection that occurs in the coating material, and curing the coating material. The resin contains 3% by weight or more and 20% by weight or less of a polymer, the fine particles are organic fine particles having an average particle diameter of 2 μm or more and 8 μm or less, a ratio ((D/T)×100) of the average particle diameter D of the fine particles to an average film thickness T of the optical layer is 20% or more and 70% or less, and a transmitted image clarity value measured with an optical comb having a width of 0.125 mm is 45 or more.

Claims (79)

1. An optical film comprising:

a base member; and

an optical layer provided on the base member,

wherein the optical layer has an irregular shape on a surface thereof,

the irregular shape is obtained by applying a coating material containing fine particles and a resin onto the base member, distributing the fine particles densely in some regions and sparsely in other regions by convection that occurs in the coating material, and curing the coating material,

the resin contains 3% by weight or more and 20% by weight or less of a polymer,

the fine particles are organic fine particles having an average particle diameter of 2 μm or more and 8 μm or less,

a ratio ((D/T)×100) of the average particle diameter D of the fine particles to an average film thickness T of the optical layer is 20% or more and 70% or less, and

a transmitted image clarity value measured with an optical comb having a width of 0.125 mm is 45 or more.

2. The optical film according to claim 1 , wherein the fine particles contain an acryl/styrene copolymer as a main component.

3. The optical film according to claim 1 , wherein a ratio ([C(0.125)/C(2.0)]×100) of the transmitted image clarity C(0.125) measured with an optical comb having a width of 0.125 mm to a transmitted image clarity C(2.0) measured with an optical comb having a width of 2.0 mm is 50% or more.

4. The optical film according to claim 1 , wherein the sum of transmitted image clarity measured with optical combs having a width of 0.125 mm, 0.5 mm, 1.0 mm, and 2.0 mm is 220 or more.

5. The optical film according to claim 1 , wherein a surface haze of the optical film is zero.

6. The optical film according to claim 1 , wherein when a 20° glossiness is represented by Gs(20°) and a 60° glossiness is represented by Gs(60°), Gs(20°) and Gs(60°) satisfy the relationship represented by formula (1) below:

Gs (60°)> Gs (20°)×0.75+48  (1).

7. The optical film according to claim 6 , wherein the 20° glossiness is 40 or less.

8. The optical film according to claim 1 , wherein when a 20° glossiness is represented by Gs(20°) and a 60° glossiness is represented by Gs(60°),

Gs(20°) and Gs(60°) satisfy the relationship represented by formula (2) below:

Gs (60°)> Gs (20°)×0.25+72  (2)

(where Gs(20°) is in the range of 40≦Gs(20°)≦80).

9. The optical film according to claim 1 , wherein the amount of fine particles added is 8 parts by weight or more and 50 parts by weight or less per 100 parts by weight of the resin.

10. The optical film according to claim 1 , wherein the difference in refractive index between the fine particles and the resin contained in the optical layer is 0.03 or less.

11. The optical film according to claim 1 , wherein the average film thickness of the optical layer is 8 μm or more and 25 μm or less.

12. The optical film according to claim 1 , wherein the resin contains 3% by weight or more and 20% by weight or less of a polymer and 80% by weight or more and 97% by weight or less of an oligomer and/or a monomer.

13. The optical film according to claim 12 , wherein the resin contains 3% by weight or more and 20% by weight or less of a polymer and 80% by weight or more and 97% by weight or less of an oligomer.

14. An antiglare film comprising:

a base member; and

an antiglare layer provided on the base member,

wherein the antiglare layer has an irregular shape on a surface thereof,

the irregular shape is obtained by applying a coating material containing fine particles and a resin onto the base member, distributing the fine particles densely in some regions and sparsely in other regions by convection that occurs in the coating material, and curing the coating material,

the resin contains 3% by weight or more and 20% by weight or less of a polymer,

the fine particles are organic fine particles having an average particle diameter of 2 μm or more and 8 μm or less,

a ratio ((D/T)×100) of the average particle diameter D of the fine particles to an average film thickness T of the antiglare layer is 20% or more and 70% or less, and

a transmitted image clarity value measured with an optical comb having a width of 0.125 mm is 45 or more.

15. A method for manufacturing an optical film, the method comprising:

applying a coating material containing fine particles and a resin onto a base member and distributing the fine particles densely in some regions and sparsely in other regions by convection that occurs in the coating material; and

curing the coating material in such a manner that the coating material in the regions where the fine particles are sparsely distributed is significantly shrunk compared with the coating material in the regions where the fine particles are densely distributed to form an optical layer,

wherein the resin contains 3% by weight or more and 20% by weight or less of a polymer,

the fine particles are organic fine particles having an average particle diameter of 2 μm or more and 8 μm or less,

a ratio ((D/T)×100) of the average particle diameter D of the fine particles to an average film thickness T of the optical layer is 20% or more and 70% or less, and

a transmitted image clarity value measured with an optical comb having a width of 0.125 mm is 45 or more.

16. A polarizer with an optical layer, comprising:

a polarizer; and

an optical layer provided on the polarizer,

wherein the optical layer has an irregular shape on a surface thereof,

the irregular shape is obtained by applying a coating material containing fine particles and a resin, distributing the fine particles densely in some regions and sparsely in other regions by convection that occurs in the coating material, and curing the coating material,

the resin contains 3% by weight or more and 20% by weight or less of a polymer,

the fine particles are organic fine particles having an average particle diameter of 2 μm or more and 8 μm or less,

a ratio ((D/T)×100) of the average particle diameter D of the fine particles to an average film thickness T of the optical layer is 20% or more and 70% or less, and

a transmitted image clarity value measured with an optical comb having a width of 0.125 mm is 45 or more.

17. A display apparatus comprising:

a display unit that displays an image; and

an optical layer provided on a display surface side of the display unit,

wherein the optical layer has an irregular shape on a surface thereof,

the irregular shape is obtained by applying a coating material containing fine particles and a resin, distributing the fine particles densely in some regions and sparsely in other regions by convection that occurs in the coating material, and curing the coating material,

the resin contains 3% by weight or more and 20% by weight or less of a polymer,

the fine particles are organic fine particles having an average particle diameter of 2 μm or more and 8 μm or less,

a ratio ((D/T)×100) of the average particle diameter D of the fine particle s to an average film thickness T of the optical layer is 20% or more and 70% or less, and

a transmitted image clarity value measured with an optical comb having a width of 0.125 mm is 45 or more.

18. A display apparatus comprising:

a display unit;

a front surface member provided at a front surface side of the display unit; and

an optical layer provided on at least one of the front surface side of the display unit and a rear surface side of the front surface member,

wherein the optical layer has an irregular shape on a surface thereof,

the irregular shape is obtained by applying a coating material containing fine particles and a resin, distributing the fine particles densely in some regions and sparsely in other regions by convection that occurs in the coating material, and curing the coating material,

the resin contains 3% by weight or more and 20% by weight or less of a polymer,

the fine particles are organic fine particles having an average particle diameter of 2 μm or more and 8 μm or less,

a ratio ((D/T)×100) of the average particle diameter D of the fine particles to an average film thickness T of the optical layer is 20% or more and 70% or less, and

a transmitted image clarity value measured with an optical comb having a width of 0.125 mm is 45 or more.

19. A display apparatus comprising:

a display unit;

a rear surface member provided at a rear surface side of the display unit; and

an optical layer provided on at least one of the rear surface side of the display unit and a front surface side of the rear surface member,

wherein the optical layer has an irregular shape on a surface thereof,

the irregular shape is obtained by applying a coating material containing fine particles and a resin, distributing the fine particles densely in some regions and sparsely in other regions by convection that occurs in the coating material, and curing the coating material,

the resin contains 3% by weight or more and 20% by weight or less of a polymer,

the fine particles are organic fine particles having an average particle diameter of 2 μm or more and 8 μm or less,

a ratio ((D/T)×100) of the average particle diameter D of the fine particles to an average film thickness T of the optical layer is 20% or more and 70% or less, and

a transmitted image clarity value measured with an optical comb having a width of 0.125 mm is 45 or more.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2017
From: SONY CORPORATION
To: SATURN LICENSING LLC
Reel/Frame 043177/0794 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2010
From: NAGAHAMA, TSUTOMU; HAGA, YUMI; MATSUMURA, SHINICHI; SUZUKI, RYO
To: SONY CORPORATION
Reel/Frame 023981/0650 →