IP Library Patent Application 11043305
Patent Application
App. No. 11/043,305

Optical recording medium and manufacturing method thereof

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Patent No.
US None
App. No.
11/043,305
Abstract

A manufacturing method of an optical recording medium comprises the processes of repeating not less than twice a treatment of coating an embrocation containing an optical recording material with a thickness not more than 150 μm on a transparent support of a thickness of 10 to 200 μm, then of drying a coated film till a solvent content in the coated film becomes not more than 10 mass %, and of forming an optical recording material layer till a total thickness of an optical information recording layer composed of a plurality of the optical recording material layers formed on the transparent support becomes not less than 150 μm; thus forming a lamination body; shaping the obtained lamination body into a predetermined form; and laminating the shaped lamination body with a substrate so that the optical information recording layer is provided between the transparent support and the substrate.

Claims (28)

1 . A manufacturing method of an optical recording medium comprising the processes of:

(1) repeating not less than twice a treatment of coating an embrocation containing an optical recording material with a thickness not more than 150 μm on a transparent support of a thickness of 10 to 200 μm, then of drying the coated embrocation till a solvent content in a coated film of the coated embrocation becomes not more than 10 mass %, and of forming an optical recording material layer till a total thickness of an optical information recording layer composed of a plurality of said optical recording material layers formed on said transparent support becomes not less than 150 μm, and thus forming a lamination body;

(2) shaping an obtained lamination body into a predetermined form; and

(3) laminating the shaped lamination body with a substrate so that said optical information recording layer is provided between said transparent support and said substrate.

2 . A manufacturing method of an optical recording medium according to claim 1 , wherein said optical information recording layer is laminated with said substrate by thermal sticking.

3 . A manufacturing method of an optical recording medium according to claim 1 , wherein said optical information recording layer and said substrate is laminated through any an adhesive layer and a gummy layer.

4 . A manufacturing method of an optical recording medium according to claim 1 , wherein said optical information recording layer is laminated with said substrate by any of an adhesive constituent and a gummy constituent, and wherein the adhesive constituent is contained by an optical recording material layer contacting said substrate.

5 . A manufacturing method of an optical recording medium according to claim 1 , wherein said optical recording material is a material whose dye colors or vanishes in color and whose optical property changes in a recording wavelength in response to an intensity of a laser beam when the laser beam is radiated.

6 . A manufacturing method of an optical recording medium according to claim 5 , wherein said optical recording material is any of a two-photon absorption optical recording material, many-photon absorption optical recording material, and a hologram optical recording material.

7 . A manufacturing method of an optical recording medium according to claim 6 , wherein any of said two-photon absorption optical recording material and said many-photon absorption optical recording material is any of (a) a compound that causes some chemical or physical change by absorbing two photons or many photons; (b) a constituent containing the two-photon absorption compound or the many-photon absorption compound, a second compound where some chemical or physical change is induced by absorbing two photons or many photons, and furthermore, a third compound where some chemical or physical change is induced by receiving some chemical or physical reaction from the second compound; and (c) a constituent containing the two-photon absorption compound or the many-photon absorption compound, the second compound where some chemical or physical change is induced by absorbing two photons or many photons, and further a third compound having a role of adjusting an action of information recording by the two-photon absorption compound or the many-photon absorption compound and the second compound.

8 . A manufacturing method of an optical recording medium according to claim 6 , wherein said hologram optical recording material is at least one kind selected from a group comprising silver halide, bichromate gelatin, a photorefractive material, a photochromic material, a photopolymer material.

9 . A manufacturing method of an optical recording medium according to claim 8 , wherein said optical recording material is a photopolymer material.

10 . A manufacturing method of an optical recording medium according to claim 9 , wherein said photopolymer material comprises a binder and a monomer having a refractivity different from that of said binder.

11 . A manufacturing method of an optical recording medium according to claim 1 , wherein a total thickness of an optical information recording layer is not less than 500 μm.

12 . A manufacturing method of an optical recording medium according to claim 1 , wherein a total thickness of said transparent support is from 10 to 200 μm.

13 . A manufacturing method of an optical recording medium according to claim 1 , wherein a thickness uniformity of said transparent support is not more than λ/4 in a thickness variation for a light wavelength λ used for recording/reproducing optical information.

14 . A manufacturing method of an optical recording medium according to claim 1 , wherein a viscosity of said embrocation is from 0.1 to 50 Ps.

15 . A optical recording medium comprising:

a substrate;

a transparent support having a thickness of 10 to 200 μm; and

an optical information recording layer provided between said transparent support and said substrate by repeating not less than twice a treatment of coating an embrocation containing an optical recording material with a thickness not more than 150 μm on said transparent support of a thickness of 10 to 200 μm, then of drying a coated film till a solvent content in the coated film becomes not more than 10 mass %, and of forming said optical recording material layer till a total thickness of said optical information recording layer composed of a plurality of said optical recording material layers formed on said transparent support becomes not less than 150 μm,

shaping an obtained lamination body into a predetermined form; and

laminating the shaped lamination body with the substrate.

16 . An optical recording medium according to claim 15 , wherein said optical recording material is a material whose dye colors or vanishes in color and whose optical property changes in a recording wavelength in response to an intensity of a laser beam when the laser beam is radiated.

17 . A manufacturing method of an optical recording medium according to claim 15 , wherein a boundary face has a reflective layer between said substrate and said optical information recording.

18 . A manufacturing method of an optical recording medium according to claim 15 , wherein said substrate has a servo signal recording area on a face in contact with said optical information recording layer.

19 . A manufacturing method of an optical recording medium according to claim 15 , wherein a total thickness of an optical information recording layer is not less than 500 μm.

20 . A manufacturing method of an optical recording medium according to claim 15 , wherein a thickness of said transparent support is from 10 to 200 μm.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2007
From: FUJIFILM HOLDINGS CORPORATION (FORMERLY FUJI PHOTO FILM CO., LTD.)
To: FUJIFILM CORPORATION
Reel/Frame 018904/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2005
From: INOUE, NORIKO; TAKANO, HIROAKI
To: FUJI PHOTO FILM CO., LTD.
Reel/Frame 016232/0612 →