Claims
- 1. A method of measuring a lubricant film disposed on a surface of a magnetic recording medium by using an atomic force microscopy, comprising:
measuring an area of a portion covered by the lubricant film on the surface of the magnetic recording medium and an area of a portion of a protective film exposed on the surface of the magnetic recording not covered by the lubricant film, using the atomic force microscopy provided with a probe formed by a fluoride coating film including fluroalkyl groups; and determining a surface cover rate of the lubricant film on the magnetic recording medium, based on the result of the measuring step.
- 2. A method according to claim 1, wherein the surface energy of a tip of the probe is less than or equal to 20×10−3 N/m.
- 3. A method according to claim 1, wherein the fluoride coating of a tip of the probe is made by heat treatment in a range of temperature from 100 degrees Celsius to 400 degrees Celsius.
- 4. A method of producing a magnetic recording medium, comprising:
forming a protective film on the magnetic recording medium; forming a lubricant film on the protective film; and measuring a surface cover rate of the lubricant film on the magnetic recording film, wherein measuring of the surface cover rate includes a first step of measuring an area of a portion covered by the lubricant film on the surface of the magnetic recording medium and an area of a portion of the protective film exposed on the surface of the magnetic recording without being covered by the lubricant film, using the atomic force microscopy provided with a probe formed by a fluoride coating film including fluoroalkyl groups, and a second step of determining the surface cover rate of the lubricant film on the magnetic recording medium, based on the result of the first step.
- 5. A method according to claim 4, wherein the surface energy of a tip of the probe is less than or equal to 20×10−3 N/m.
- 6. A method according to claim 4, wherein the fluoride coating of a tip of the probe is made by heat treatment in a range of temperature from 100 degrees Celsius to 400 degrees Celsius.
- 7. A method of measuring the configuration of a surface being measured, by using an atomic force microscopy having a probe, comprising:
selecting a material of at least the tip of said probe to have a surface energy of the tip of said probe less than the interface energy between the tip of said probe and said surface being measured.
- 8. A method according to claim 7, wherein said surface being measured is a lubricant film disposed on the surface of magnetic recording medium.
- 9. A method of measuring the configuration of a surface being measured, by using an atomic force microscopy having a probe, comprising:
forming a fluoride coating film on the tip of the probe, said film including fluoroalkyl groups, and disposing said film on at least the tip surface of said probe.
- 10. A method according to claim 9, wherein said surface being measured is a lubricant film disposed on the surface of magnetic recording medium.
- 11. A method of measuring the configuration of a surface being measured, by determining the atomic force generated between said surface being measured and a probe approaching to said surface, comprising:
forming, prior to a measurement, a fluoride coating film at least on the tip of said probe, said forming step including dipping the tip of said probe into a solution of fluoride coating material including fluoroalkyl groups, heating the tip of said probe, and rinsing the tip of said probe.
- 12. A method according to claim 11, wherein the temperature of said heating is in the range from 100 degrees Celsius to 400 degrees Celsius.
- 13. A method according to claim 11, wherein said surface being measured is a lubricant film disposed on the surface of magnetic recording medium.
- 14. A method of producing a magnetic recording medium by forming on a substrate at least a magnetic film, and forming on said magnetic film a lubricant film comprised of liquid lubricant either directly or through a protective film, comprising:
approaching the probe of an atomic force microscope to the lubricant film surface being measured; measuring the atomic force generated between said surface of lubricant film being measured and said probe; determining the configuration of said surface of the lubricant film being measured; and selecting among said magnetic recording medium ones with the surface cover rate by said lubricant film determined based on said configuration being in a desired range; wherein the atomic force microscope has a cantilever provided with a probe at one end, the other end of said cantilever being supported by a support, and a displacement detector for detecting a displacement of said probe using an atomic force affecting between said probe and said surface being measured, wherein a tip of said probe is made so as to have a surface energy of the tip of said probe less than an interface energy between the tip of said probe and said surface being measured.
- 15. A method of producing a magnetic recording medium by forming on a substrate at least a magnetic film, and forming on said magnetic film a lubricant film comprised of liquid lubricant either directly or through a protective film, comprising:
approaching the probe of an atomic force microscope to a lubricant film surface being measured; measuring the atomic force generated between said surface of lubricant film being measured and said probe; determining the configuration of said surface of the lubricant film being measured; and selecting among said magnetic recording medium ones with the surface cover rate by said lubricant film determined based on said configuration being in a desired range; wherein the atomic force microscope has a cantilever provided with the probe at one end, the other end of said cantilever being supported by a support, and a displacement detector for detecting a displacement of said probe using an atomic force affecting between said probe and said surface being measured, wherein a tip of said probe is coated with a fluoride coating film including fluoroalkyl groups insoluble to a solvent.
- 16. A method of producing a magnetic recording medium by forming on a substrate at least a magnetic film, and forming on said magnetic film a lubricant film comprised of liquid lubricant either directly or through a protective film, comprising:
approaching the probe of an atomic force microscope at very fine clearance to a lubricant film surface being measured; measuring the atomic force generated between said surface of lubricant film being measured and said probe; determining the configuration of said surface of the lubricant film being measured; and selecting among said magnetic recording medium ones with the surface cover rate by said lubricant film determined based on said configuration being in a desired range; wherein the atomic force microscope has a cantilever provided with the probe at one end, the other end of said cantilever being supported by a support, and a displacement detector for detecting a displacement of said probe using an atomic force affecting between said probe and said surface being measured, wherein a surface energy of a tip of said probe is less than or equal to 20×10−3 N/m.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10-330564 |
Nov 1998 |
JP |
|
Parent Case Info
[0001] This is a division of application Ser. No. 09/444,283 filed Nov. 19, 1999, now abandoned.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09444283 |
Nov 1999 |
US |
Child |
10309278 |
Dec 2002 |
US |