Claims
- 1. A magnetic sintered composite material comprising:
- a discrete phase including grains made of a first substance which comprises a magnetic metal or alloy thereof; and
- a continuous phase consisting essentially of a dielectric thin coating film of an oxide or nitride of a metal or alloy, said thin coating film being formed on the surface of said grains and having a mean thickness smaller than the mean particle size of said grains,
- wherein said grains are separated substantially from each other by said thin coating film, said magnetic sintered composite material having an electrical resistivity on the order of at least 10.sup.6 times that of said magnetic metal or alloy thereof, said first substance being an alloy selected from the group consisting of an iron-aluminum, an iron-silicon, an iron-nickel, an iron-nickel-molybdenum, and an iron-silicon-aluminum-cobalt.
- 2. A magnetic sintered composite material according to claim 1, wherein said first substance contains an alloy selected from the group consisting of an iron-aluminum, an iron-silicon, an iron-nickel, an iron-nickel-molybdenum, and an iron-silicon-aluminum-cobalt, said grains made of the first substance have a mean particle size ensuring the formation of a single magnetic domain structure, and the axes of easy magnetization of said grains coincide with each other.
- 3. A magnetic sintered composite material according to claim 1, wherein said thin coating film is formed from a member of the group consisting of aluminum oxide, aluminum nitride, magnesium oxide, manganese-zinc ferrites and nickel-zinc ferrites.
- 4. A magnetic sintered composite material according to claim 1, having a porosity of 5% or less.
- 5. A magnetic sintered composite material according to claim 4, having a porosity of 0.5% or less.
- 6. A magnetic sintered composite material according to claim 1, wherein said grains made of the first substance have a platelet shape.
- 7. A magnetic sintered composite material according to claim 1, wherein said grains made of the first substance have a needlelike shape.
- 8. A magnetic sintered composite material according to claim 6, having a porosity of 0.1% or less.
- 9. A magnetic sintered composite material according to claim 6, having a microstructure in which said grains made of the first substance are oriented.
- 10. A magnetic sintered composite material according to claim 6, wherein said platelet grains have an axis of easy magnetization along their major axes.
- 11. A magnetic head comprising a magnetic core which is made of a magnetic sintered composite material of claim 6, wherein said grains oriented in the magnetic core have their flat surface perpendicular to a running direction of magnetic media.
- 12. A magnetic head according to claim 11, wherein said platelet grains have an axis of easy magnetization along their major axes.
- 13. A magnetic sintered composite material according to claim 1, wherein said magnetic material is formed as a magnetic head.
- 14. A magnetic sintered composite material according to claim 1, wherein said magnetic material is formed as a core of a magnetic transformer.
- 15. A magnetic sintered composite material according to claim 1, wherein said magnetic material is formed as a hard magnet.
Priority Claims (5)
Number |
Date |
Country |
Kind |
1-47906 |
Jun 1989 |
JPX |
|
1-186423 |
Jul 1989 |
JPX |
|
1-280553 |
Oct 1989 |
JPX |
|
1-288357 |
Nov 1989 |
JPX |
|
2-63154 |
Mar 1990 |
JPX |
|
CROSS-REFERENCE TO RELATED APPLICATION
This application is a division of U.S. patent application Ser. No. 07/535,082, filed Jun. 8, 1990 now U.S. Pat. No. 5,238,507.
US Referenced Citations (18)
Foreign Referenced Citations (7)
Number |
Date |
Country |
0088992 |
Sep 1983 |
EPX |
0158338 |
Oct 1985 |
EPX |
3603061 |
Sep 1986 |
DEX |
55-156029 |
Dec 1980 |
JPX |
59-182972 |
Oct 1984 |
JPX |
60-152656 |
Aug 1985 |
JPX |
60-261031 |
Dec 1985 |
JPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
535082 |
Jun 1990 |
|