Claims
- 1. A flexible optical disk, comprising:
a disk substrate; wherein a rigidity of the disk is equal to or more than 5 Pa and equal to or less than 5000 Pa where the rigidity is defined as Young's modulus of the disk×(thickness of the disk/radius of the disk)3.
- 2. The flexible optical disk as claimed in claim 1,
wherein the rigidity is equal to or more than 20 Pa.
- 3. The flexible optical disk as claimed in claim 1,
wherein the transferring layer is formed at the disk substrate.
- 4. The flexible optical disk as claimed in claim 1,
wherein the rigidity of the disk is equal to or more than 5 Pa and equal to or less than 550 Pa.
- 5. The flexible optical disk as claimed in claim 4,
wherein the rigidity of the disk is equal to or more than 20 Pa.
- 6. The flexible optical disk as claimed in claim 1,
wherein the rigidity of the disk is controlled by a thickness of the disk substrate.
- 7. The flexible optical disk as claimed in claim 1,
wherein the rigidity of the disk is controlled by the Young's modulus of the disk substrate.
- 8. The flexible optical disk as claimed in claim 1,
wherein the rigidity of the disk is controlled by a material of the disk substrate.
- 9. The flexible optical disk as claimed in claim 1,
wherein the Young's modulus and an internal loss (internal friction) of the disk is defined by a characteristic vibration method that is a dynamic measurement method and a cantilever resonance method, wherein the internal loss is defined based on a distribution of a characteristic frequency by a ratio of a frequency and a half value thickness, and wherein the internal loss Q−1=(fU−fL)/(″3×f) is equal to or more than 0.001 and equal to or less than 0.3 where the characteristic frequency is defined as f, a frequency at a side where the half value thickness is high is defined as fU, and a frequency at a side where the half value thickness is low is defined as fL.
- 10. The flexible optical disk as claimed in claim 9,
wherein the internal loss of the disk is controlled by the thickness of the disk substrate so as to be equal to or more than 0.001 and equal to or less than 0.3.
- 11. The flexible optical disk as claimed in claim 9,
wherein the internal loss of the disk is controlled by the Young's modulus of the disk substrate so as to be equal to or more than 0.001 and equal to or less than 0.3.
- 12. The flexible optical disk as claimed in claim 9,
wherein the internal loss of the disk is controlled by the Young's modulus of the disk substrate so as to be equal to or more than 0.001 and equal to or less than 0.3.
- 13. The flexible optical disk as claimed in claim 1,
wherein a film substrate whose thickness dispersion in an any {fraction (1/100)} circumferential section in a circumferential direction at an any radial position is equal to or less than 0.1 μm, is used for the flexible optical disk.
- 14. The flexible optical disk as claimed in claim 1,
wherein a film substrate has high surface energy of one surface or both surfaces.
- 15. The flexible optical disk as claimed in claim 14,
wherein a film substrate surface is treated by an easily-adhering process so that the surface energy of one side surface or both sides surfaces of the film substrate is high.
- 16. The flexible optical disk as claimed in claim 15,
wherein a polyester process is applied as the easily-adhering process.
- 17. The flexible optical disk as claimed in claim 3,
wherein the transferring layer is formed at a film substrate, and wherein a material of the transferring layer where an uneven minute pattern of a stamper is transferred is a photopolymer material not having a cross-linked structure at the time of curing.
- 18. The flexible optical disk as claimed in claim 17,
wherein the photopolymer material is a single functional acryletemonomer material.
- 19. The flexible optical disk as claimed in claim 18,
wherein a material whose curing shrinkage is equal to or less than 10% is used as the single functional acryletemonomer material.
- 20. The flexible optical disk as claimed in claim 1,
wherein the disk is a surface recording type, and a pre-format pattern surface of the disk, where recording or reproducing is done, is provided at a pick up side of the disk.
- 21. A manufacturing method for a flexible optical disk, the flexible optical disk including a disk substrate, comprising the steps of:
a) forming a transferring layer by rotating a stamper provided at a spin disk with high speed and spreading an ultraviolet curing type resin; b) stacking a film substrate having a designated property on the transferring layer; c) irradiating an ultraviolet light to the transferring layer so that the transferring layer is cured and the stamper is peeled; and d) stacking a recording layer and a protection layer on a transferring surface of the transferring layer; and wherein rigidity of the disk is equal to or more than 5 Pa and equal to or less than 5000 Pa where the rigidity is defined as Young's modulus of the disk×(thickness of the disk/radius of the disk)3.
- 22. The manufacturing method for the flexible optical disk as claimed in claim 21,
wherein the spin disk is rotated at 1000-5000 rpm so that the transferring layer has a film thickness of 1-10 μm.
Priority Claims (2)
| Number |
Date |
Country |
Kind |
| 2003-129560 |
May 2003 |
JP |
|
| 2003-323645 |
Sep 2003 |
JP |
|
Parent Case Info
[0001] This application is a Continuation-In-Part Application of a U.S. patent application Ser. No. 10/837,703 filed May 4, 2004.
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
10837703 |
May 2004 |
US |
| Child |
10872514 |
Jun 2004 |
US |