Claims
- 1. A magnetic recording medium comprising a non-magnetic support having thereon a first lower magnetic layer and a second upper magnetic layer, provided on said support by either co-coating the lower magnetic layer and the upper magnetic layer in the wet state, or coating the lower magnetic layer and then the upper magnetic layer while the lower magnetic layer is still in the wet state; wherein a cobalt-modified iron oxide is employed as a ferromagnetic powder contained in the lower magnetic layer, a ferromagnetic metal is employed as a ferromagnetic powder contained in the upper magnetic layer, both the ferromagnetic powder contained in the lower magnetic layer and the ferromagnetic powder contained in the upper magnetic layer having an average major axis length of not larger than 0.25 .mu.m and an average acicular ratio of not larger than 10, a difference in the average major axis length between the ferromagnetic powder contained in the lower magnetic layer and that contained in the upper magnetic layer of not larger than 0.08 .mu.m, and a difference in the average acicular ratio between the ferromagnetic powder contained in the lower layer and that contained in the upper layer of not larger than 4.
- 2. The magnetic recording medium of claim 1, wherein the ferromagnetic powder contained in the lower magnetic layer has a ratio of Fe.sup.2 +/Fe.sup.3 + of at least 5%, and the lower magnetic layer contains at least one member of carbon blacks having an average primary particle diameter of not larger than 20 nm in an amount of not more than 7 parts by weight per 100 parts by weight of the ferromagnetic powder.
- 3. The magnetic recording medium of claim 1, wherein said lower magnetic layer has a thickness of not larger than 3 .mu.m, and said upper magnetic layer has a thickness of not larger than 0.8 .mu.m.
- 4. A magnetic recording medium comprising a non-magnetic support having thereon a first lower magnetic layer and a second upper magnetic layer, provided on said support by either co-coating the lower magnetic layer and the upper magnetic layer in the wet state, or coating the lower magnetic layer and then the upper magnetic layer while the lower magnetic layer is still in the wet state; wherein a cobalt-modified iron oxide is employed as a ferromagnetic powder contained in the lower magnetic layer, a ferromagnetic metal is employed as a ferromagnetic powder contained in the upper magnetic layer, both the ferromagnetic powder contained in the lower magnetic layer and the ferromagnetic powder contained in the upper magnetic layer having an average major axis length of not larger than 0.25 .mu.m, the lower magnetic layer containing cobalt-modified iron oxide employed as the ferromagnetic powder having a stearic acid adsorption rate of 2.times.10.sup.-6 to 6.times.10.sup.-6 mol/m.sup.2 and a silicon content of 0.2 to 4.0 atom % in terms of Si/Fe, the upper magnetic layer containing ferromagnetic metal or alloy powder employed as the ferromagnetic powder having a stearic acid adsorption rate of at least 6.times.10.sup.--6 mol/m.sup.-2 and an aluminum content of 5.0 to 15.0 atom % in terms of Al/Fe, and the upper magnetic layer containing at least one organophosphorus compound selected from the group consisting of compounds represented by the following general formulas (1), (2) and (3)
- (R--O).sub.n PO(OM).sub.3-n ( 1)
- (R--O).sub.n P(OM).sub.3-n ( 2)
- (R).sub.n PO(OM).sub.3-n ( 3)
- wherein R represents an unsubstituted alkyl, alkenyl or aryl group, or R represents a substituted alkyl, alkenyl or aryl group, the substituent being selected from the group consisting of a 2-aminoethyl group, a 2-butoxyethyl group and a nitrophenyl group, M represents a hydrogen atom, an alkali metal or --N(R.sub.1).sub.4, R.sup.1 represents an alkyl group, and n represents 1 or 2.
- 5. The magnetic recording medium of claim 1, wherein the upper magnetic layer has a coercive force of the ferromagnetic metal or alloy powder contained in the upper magnetic layer of about 600 and 5,000 Oe.
- 6. The magnetic recording medium of claim 1, wherein the upper magnetic layer has a coercive force of the ferromagnetic metal or alloy powder contained in the upper magnetic layer of about 1,000 to 2,000 Oe.
- 7. The magnetic recording medium of claim 4, wherein the upper magnetic layer contains organophosphorus compounds in an amount of 0.03 to 10 parts by weight, based upon 100 parts by weight of the ferromagnetic metal.
- 8. The magnetic recording medium of claim 4, wherein the upper magnetic layer contains organophosphorus compounds in an amount of 0.05 to 7 parts by weight, based upon 100 parts by weight of the ferromagnetic metal.
- 9. The magnetic recording medium of claim 4, wherein the stearic acid adsorption rate of the ferromagnetic powder in the upper magnetic layer is in the range of 6.times.10.sup.-6 to 15.times.10.sup.-6 mol/m.sup.2.
- 10. The magnetic recording medium of claim 4, wherein R is an unsubstituted alkyl, alkenyl or aryl group.
Priority Claims (2)
Number |
Date |
Country |
Kind |
3-023517 |
Feb 1991 |
JPX |
|
3-048314 |
Mar 1991 |
JPX |
|
Parent Case Info
This is a Continuation of application Ser. No. 07/834,784 filed Feb. 13, 1992, now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1199316 |
Aug 1989 |
JPX |
Continuations (1)
|
Number |
Date |
Country |
Parent |
834784 |
Feb 1992 |
|