Method of producing magnetic disk

4842618
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Inventors

Ito, Yasushi
Imamura, Masaaki
Kato, Yoshiki
Fumioka, Jun

Application #

203098

Filed

Jun-7-1988

Published

Jun-27-1989

Current US Class

051/293
051/295
051/308
051/309
428/143
428/329
428/331

International Classes

B24D 003/00

Field of Search

51/293 51/295 51/308 51/309 428/143 428/329 428/331

Assignee

Hitachi, Ltd. (Tokyo, JP)

Examiners

Lieberman; Paul

Attorney, Agent or Firm

Antonelli, Terry & Wands

US Patent References

4047232   Leader tape
4246003   Lap cutting abrasive
4275108   Leader or trailer ta...
4608293   Composite substrate...
4668568   Magnetic recordin...

Referenced by:

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Citation

Cite This Patent

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Abstract
A method of producing a magnetic disk by lapping a magnetic disk medium, comprising the steps of: preparing a lapping tape having an abrasive particle layer provided with abrasive particle clusters and chip pockets formed between adjacent two clusters, each of said clusters having abrasive particles of Al.sub.2 O.sub.3 or SiC and abrasive particles of diamond, lapping the surface of said magnetic disk medium by using the thus prepared lapping tape.
 
Claims
What is claimed is:

1. A lapping tape comprising:

a substrate made of a tape of plastics;

an abrasive layer provided on the substrate and having abrasive particle clusters and chip pockets having an area of 15 to 30% of the entire surface of said abrasive layer formed between adjacent two clusters, each of said clusters having 40 to 89% by weight abrasive particles of Al.sub.2 0.sub.3 or SiC, abrasive particles of 1 to 10% by weight diamond and a binder resin bonding these abrasive particles to each other.

2. A lapping tape as claimed in claim 1, wherein said abrasive layer of said lapping tape comprises: 40 to 89% by weight Al.sub.2 0.sub.3 abrasive particles or SiC abrasive particles; 1 to 10% by weight diamond abrasive particles; and the remainder binder resin while the total weight of these abrasive particles is 50 to 90%, the mean particle size of said Al.sub.2 0.sub.3 abrasive particles or said SiC abrasive particles being 2 to 9.mu., the mean particle size of said diamond abrasive particles being 1 to 9 .mu.m.



Description
BACKGROUND OF THE INVENTION

The present invention relates to a method of producing a magnetic disk, and more particularly to a method of producing a magnetic disk which method uses a lapping tape suitable for lapping the surface of a magnetic disk containing hard fillers (such as particles of Al.sub.2 0.sub.3, SiC, or the like).

With the recent increase in the recording density of a magnetic disk, it has become increasingly important to reduce, as much as possible, the distance between a magnetic head and the surface of a magnetic disk, namely the amount by which the head floats above the surface of the disk. For this reason, it is required to minimize the roughness of the surface of the magnetic disk. In order to lap the surface of magnetic disk medium so as to minimize the surface roughness, the surface is moved while the lapping tape is forced onto the surface.

In producing magnetic disks, the following are some examples of conventional methods known in the art employing lapping tape: the method disclosed in Japanese Unexamined Patent Publication No. 56-130834 in which the surface of lapping tape is previously coated with lubricant, the tape being used to lap after it has been dried at a temperature between 30 to 50.degree. C.; and the method disclosed in Japanese Unexamined Patent Publication No. 56-130836 in which a magnetic disk is prepared which has a magnetic film formed on a substrate and having a large surface-roughness occurring by a binder of thermosetting resin such as epoxy resin, phenolic resin, or melamine resin, and by fillers such as alumina powder, and the thus prepared magnetic disk is lapped while being moved relative to a magnetic head on which a lapping tape impregnated with a lubricant such as fluorocarbon is mounted.
 
  Diamond or CBN polycrystalline abrasive grit useful in tools for grinding or cutting is made by size reducing and leaching non-diamond or non-CBN material...  Improved rigid grinding wheels are described which have a rigid organic matrix binding particulate diamond or cubin boron nitride abrasive uniformly dispersed...