IP Library › Granted Patent US 10,403,319
Granted Patent B2
US 10,403,319 · App. 15/380,309 · Granted Sep 3, 2019

Magnetic tape having characterized magnetic layer, tape cartridge, and recording and reproducing device

Inventor: Norihito Kasada (Kanagawa, JP)
Assignee: FUJIFILM Corporation
G11B5/78G11B5/70G11B5/7085
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Quick Facts
Patent No.
US 10,403,319
App. No.
15/380,309
Granted
Sep 3, 2019
Kind
B2
Abstract

The magnetic tape includes a nonmagnetic layer containing nonmagnetic powder and binder on a nonmagnetic support, and a magnetic layer containing ferromagnetic powder, abrasive, and binder on the nonmagnetic layer, wherein a thickness of the nonmagnetic layer is less than or equal to 0.50 μm, a coefficient of friction as measured on a base portion of a surface of the magnetic layer is less than or equal to 0.35, and ΔSFD in a longitudinal direction of the magnetic tape as calculated with Equation 1, ΔSFD=SFD 25° C. −SFD −190° C. , is greater than or equal to 0.50, wherein, in Equation 1, SFD 25° C. denotes a SFD as measured in the longitudinal direction of the magnetic tape in an environment with a temperature of 25° C., and SFD −190° C. denotes a SFD as measured in the longitudinal direction of the magnetic tape in an environment with a temperature of −190° C.

Claims (58)

1. A magnetic tape,

which comprises a nonmagnetic layer comprising nonmagnetic powder and binder on a nonmagnetic support, and a magnetic layer comprising ferromagnetic powder, abrasive, and binder on the nonmagnetic layer, wherein:

the thickness of the nonmagnetic layer is less than or equal to 0.50 μm;

the coefficient of friction as measured on a base portion of a surface of the magnetic layer is less than or equal to 0.35;

ΔSFD in a longitudinal direction of the magnetic tape as calculated with Equation 1 is greater than or equal to 0.50:

Δ SFD=SFD 25° C. −SFD −190° C.   Equation 1

wherein, in Equation 1, SFD 25° C. denotes the switching field distribution SFD as measured in the longitudinal direction of the magnetic tape in an environment with a temperature of 25° C., and SFD −190° C. denotes the switching field distribution SFD as measured in the longitudinal direction of the magnetic tape in an environment with a temperature of −190° C.; and

the base portion of the surface of the magnetic layer is defined as follows:

defining a plane where volumes of protruding components and volumes of indenting components equal out in a field of view as measured by an atomic force microscope as a reference plane, and defining protrusions as protrusions greater than or equal to 15 nm in height from the reference plane, the base portion is defined as the portion where the number of protrusions greater than or equal to 15 nm in height from the reference plane is zero.

2. The magnetic tape according to claim 1 ,

wherein the abrasive comprises alumina.

3. The magnetic tape according to claim 1 ,

wherein the coefficient of friction as measured on the base portion of the surface of the magnetic layer is greater than or equal to 0.10 but less than or equal to 0.35.

4. The magnetic tape according to claim 1 ,

wherein the ΔSFD is greater than or equal to 0.50 but less than or equal to 1.50.

5. The magnetic tape according to claim 1 ,

wherein the combined thickness of the magnetic layer and nonmagnetic layer is less than or equal to 0.60 μm.

6. The magnetic tape according to claim 1 ,

which comprises a backcoat layer comprising nonmagnetic powder and binder on an opposite side of the nonmagnetic support from a side on which the nonmagnetic layer and magnetic layer are present.

7. The magnetic tape according to claim 1 ,

wherein the total thickness of the magnetic tape is less than or equal to 6.00 μm.

8. The magnetic tape according to claim 1 ,

wherein the ferromagnetic powder is selected from the group consisting of ferromagnetic hexagonal ferrite powder and ferromagnetic metal powder.

9. A magnetic tape cartridge,

which houses a magnetic tape, which comprises a nonmagnetic layer comprising nonmagnetic powder and binder on a nonmagnetic support, and a magnetic layer comprising ferromagnetic powder, abrasive, and binder on the nonmagnetic layer, wherein:

the thickness of the nonmagnetic layer is less than or equal to 0.50 μm;

the coefficient of friction as measured on a base portion of a surface of the magnetic layer is less than or equal to 0.35;

ΔSFD in a longitudinal direction of the magnetic tape as calculated with Equation 1 is greater than or equal to 0.50:

Δ SFD=SFD 25° C. −SFD −190° C.   Equation 1

wherein, in Equation 1, SFD 25° C. denotes the switching field distribution SFD as measured in the longitudinal direction of the magnetic tape in an environment with a temperature of 25° C., and SFD −190° C. denotes the switching field distribution SFD as measured in the longitudinal direction of the magnetic tape in an environment with a temperature of −190° C.; and

the base portion of the surface of the magnetic layer is defined as follows:

defining a plane where volumes of protruding components and volumes of indenting components equal out in a field of view as measured by an atomic force microscope as a reference plane, and defining protrusions as protrusions greater than or equal to 15 nm in height from the reference plane, the base portion is defined as the portion where the number of protrusions greater than or equal to 15 nm in height from the reference plane is zero.

10. The magnetic tape cartridge according to claim 9 ,

wherein the total length of the magnetic tape that is housed in the magnetic tape cartridge is greater than or equal to 10 m.

11. The magnetic tape cartridge according to claim 9 ,

wherein the abrasive comprises alumina.

12. The magnetic tape cartridge according to claim 9 ,

wherein the coefficient of friction as measured on the base portion of the surface of the magnetic layer is greater than or equal to 0.10 but less than or equal to 0.35.

13. The magnetic tape cartridge according to claim 9 ,

wherein the ΔSFD is greater than or equal to 0.50 but less than or equal to 1.50.

14. The magnetic tape cartridge according to claim 9 ,

wherein the combined thickness of the magnetic layer and nonmagnetic layer is less than or equal to 0.60 μm.

15. The magnetic tape cartridge according to claim 9 ,

wherein the magnetic tape comprises a backcoat layer comprising nonmagnetic powder and binder on an opposite side of the nonmagnetic support from a side on which the nonmagnetic layer and magnetic layer are present.

16. The magnetic tape cartridge according to claim 9 ,

wherein the total thickness of the magnetic tape is less than or equal to 6.00 μm.

17. The magnetic tape cartridge according to claim 9 ,

wherein the ferromagnetic powder is selected from the group consisting of ferromagnetic hexagonal ferrite powder and ferromagnetic metal powder.

18. A magnetic recording and reproducing device,

which comprises a magnetic tape cartridge and a magnetic head,

wherein the tape cartridge houses a magnetic tape, which comprises a nonmagnetic layer comprising nonmagnetic powder and binder on a nonmagnetic support, and a magnetic layer comprising ferromagnetic powder, abrasive, and binder on the nonmagnetic layer, wherein:

the thickness of the nonmagnetic layer is less than or equal to 0.50 μm;

the coefficient of friction as measured on a base portion of a surface of the magnetic layer is less than or equal to 0.35;

ΔSFD in a longitudinal direction of the magnetic tape as calculated with Equation 1 is greater than or equal to 0.50:

Δ SFD=SFD 25° C. −SFD −190° C.   Equation 1

wherein, in Equation 1, SFD 25° C. denotes the switching field distribution SFD as measured in the longitudinal direction of the magnetic tape in an environment with a temperature of 25° C., and SFD −190° C. denotes the switching field distribution SFD as measured in the longitudinal direction of the magnetic tape in an environment with a temperature of −190° C.; and

the base portion of the surface of the magnetic layer is defined as follows:

defining a plane where volumes of protruding components and volumes of indenting components equal out in a field of view as measured by an atomic force microscope as a reference plane, and defining protrusions as protrusions greater than or equal to 15 nm in height from the reference plane, the base portion is defined as the portion where the number of protrusions greater than or equal to 15 nm in height from the reference plane is zero.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2016
From: KASADA, NORIHITO
To: FUJIFILM CORPORATION
Reel/Frame 040961/0806 →
Priority Claims (3)
JP 2015-245142 · Dec 16, 2015 · national
JP 2016-014401 · Jan 28, 2016 · national
JP 2016-241073 · Dec 13, 2016 · national
Continuity (1)
Related Publication 20170178677A1 · Jun 22, 2017