IP Library Granted Patent US 10,679,657
Granted Patent B2
US 10,679,657 · App. 16/368,271 · Granted Jun 9, 2020

Magnetic tape and magnetic recording and reproducing device

Inventors: Takuto Kurokawa (Minami-ashigara, JP); Eiki Ozawa (Minami-ashigara, JP)
Assignee: FUJIFILM Corporation
G11B5/70684G11B5/127G11B5/712G11B5/78
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Quick Facts
Patent No.
US 10,679,657
App. No.
16/368,271
Granted
Jun 9, 2020
Kind
B2
Abstract

The magnetic tape includes a non-magnetic support; a magnetic layer including a ferromagnetic powder and a binding agent on one surface of the non-magnetic support; and a back coating layer including a non-magnetic powder and a binding agent on the other surface of the non-magnetic support, in which a center line average surface roughness Ra measured regarding a surface of the back coating layer is equal to or smaller than 7.0 nm, and a difference (S after −S before ) between a spacing S after measured by optical interferometry regarding the surface of the back coating layer after ethanol cleaning and a spacing S before measured by optical interferometry regarding the surface of the back coating layer before ethanol cleaning is greater than 0 nm and equal to or smaller than 15.0 nm.

Claims (45)

1. A magnetic tape comprising:

a non-magnetic support;

a magnetic layer including a ferromagnetic powder and a binding agent on one surface of the non-magnetic support; and

a back coating layer including a non-magnetic powder and a binding agent on the other surface of the non-magnetic support,

wherein the center line average surface roughness Ra measured regarding a surface of the back coating layer is equal to or smaller than 7.0 nm,

the difference (S after −S before ) between a spacing S after measured by optical interferometry regarding the surface of the back coating layer after ethanol cleaning and a spacing S before measured by optical interferometry regarding the surface of the back coating layer before ethanol cleaning is greater than 0 nm and equal to or smaller than 15.0 nm, and

the spacing measured by optical interferometry is measured by the following method:

overlapping a test piece of the magnetic tape on which ethanol cleaning has not been performed and a transparent plate-shaped member so that the surface of the back coating layer of the tape faces the transparent plate-shaped member;

pressing a pressing member against the side of the magnetic tape opposite to the back coating layer side at pressure of 5.05×10 4 N/m;

in this state, irradiating the surface of the back coating layer of the magnetic tape with light through the transparent plate-shaped member;

acquiring a spacing S before between the surface of the back coating layer of the magnetic tape and the surface of the transparent plate-shaped member on the magnetic tape based on intensity of interference light generated due to a difference in a light path between reflected light from the surface of the back coating layer of the magnetic tape and reflected light from the surface of the transparent plate-shaped member on the magnetic tape;

acquiring a spacing S after by the same method, employing a test piece of the magnetic tape on which ethanol cleaning has been performed; and

subtracting the results for the measurement of S before from the results for the measurement of S after to obtain the difference (S after −S before ).

2. The magnetic tape according to claim 1 ,

wherein the difference (S after −S before ) is 1.0 nm to 15.0 nm.

3. The magnetic tape according to claim 1 ,

wherein the difference (S after −S before ) is 2.0 nm to 13.0 nm.

4. The magnetic tape according to claim 1 , further comprising:

a non-magnetic layer including a non-magnetic powder and a binding agent between the non-magnetic support and the magnetic layer.

5. The magnetic tape according to claim 1 ,

wherein the center line average surface roughness Ra measured regarding the surface of the back coating layer is 3.0 nm to 7.0 nm.

6. A magnetic recording and reproducing device comprising:

a magnetic tape; and

a magnetic head,

wherein the magnetic tape is a magnetic tape comprising:

a non-magnetic support;

a magnetic layer including a ferromagnetic powder and a binding agent on one surface of the non-magnetic support; and

a back coating layer including a non-magnetic powder and a binding agent on the other surface of the non-magnetic support,

wherein the center line average surface roughness Ra measured regarding a surface of the back coating layer is equal to or smaller than 7.0 nm,

the difference (S after −S before ) between a spacing S after measured by optical interferometry regarding the surface of the back coating layer after ethanol cleaning and a spacing S before measured by optical interferometry regarding the surface of the back coating layer before ethanol cleaning is greater than 0 nm and equal to or smaller than 15.0 nm, and

the spacing measured by optical interferometry is measured by the following method:

overlapping a test piece of the magnetic tape on which ethanol cleaning has not been performed and a transparent plate-shaped member so that the surface of the back coating layer of the tape faces the transparent plate-shaped member;

pressing a pressing member against the side of the magnetic tape opposite to the back coating layer side at pressure of 5.05×10 4 N/m;

in this state, irradiating the surface of the back coating layer of the magnetic tape with light through the transparent plate-shaped member;

acquiring a spacing S before between the surface of the back coating layer of the magnetic tape and the surface of the transparent plate-shaped member on the magnetic tape based on intensity of interference light generated due to a difference in a light path between reflected light from the surface of the back coating layer of the magnetic tape and reflected light from the surface of the transparent plate-shaped member on the magnetic tape;

acquiring a spacing S after by the same method, employing a test piece of the magnetic tape on which ethanol cleaning has been performed; and

subtracting the results for the measurement of S before from the results for the measurement of S after to obtain the difference (S after −S before ).

7. The magnetic recording and reproducing device according to claim 6 ,

wherein the difference (S after −S before ) is 1.0 nm to 15.0 nm.

8. The magnetic recording and reproducing device according to claim 6 ,

wherein the difference (S after −S before ) is 2.0 nm to 13.0 nm.

9. The magnetic recording and reproducing device according to claim 6 ,

wherein the magnetic tape further comprises a non-magnetic layer including a non-magnetic powder and a binding agent between the non-magnetic support and the magnetic layer.

10. The magnetic recording and reproducing device according to claim 6 ,

wherein the center line average surface roughness Ra measured regarding the surface of the back coating layer is 3.0 nm to 7.0 nm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2019
From: KUROKAWA, TAKUTO; OZAWA, EIKI
To: FUJIFILM CORPORATION
Reel/Frame 049239/0223 →
Priority Claims (2)
JP 2018-064073 · Mar 29, 2018 · national
JP 2019-054757 · Mar 22, 2019 · national
Continuity (1)
Related Publication 20190304499A1 · Oct 3, 2019