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Clamping jig for glass substrate, buffer sheet, method for processing glass substrate, and glass substrate

a technology for glass substrates and jigs, which is applied in the direction of grinding machines, manufacturing tools, edge grinding machines, etc., can solve the problems of ineffective above-mentioned methods, inefficient processing, and prior art problems, and achieve poor polishing

Inactive Publication Date: 2005-05-12
HOYA CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

Enables continuous grinding and polishing of both edge types without releasing the clamping, reducing misalignment and crack formation, improving processing efficiency and substrate quality while allowing for cost-effective production of glass substrates for magnetic storage media.

Problems solved by technology

The above described method is ineffective because the glass substrates should be processed every single substrate.
However, the prior art as described above has problems as follows.
However, the processing becomes inefficient when the polishing is conducted every single substrate, on the other hand, the use of another damper not only complicate the polishing steps but also causes misalignment of centers of the glass substrates at a time of newly holding the glass substrates by the another clamper, so that the processing precision deteriorates.
Secondly, cracks are easily produced on the recording surfaces since the glass substrates are directly contacted with each other.
That is, a great amount of cullets (glass powder) are produced in a working field of the polishing, so that the cullets may be interposed between the glass substrates, and consequently, a pressure applied by the clamp to the glass substrates causes deep cracks (25 μM or more) on the surfaces.
In this way, the presence of the cracks on the recording surface of the glass substrate has a disadvantage for forming a uniform magnetic film, so that the polishing has to be continued until the cracks disappear.
The polishing time becomes longer when a polishing margin becomes thicker, and the glass substrate itself also requires to be manufactured in consideration of the polishing margin, so that the glass substrate inevitably becomes thicker.

Method used

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  • Clamping jig for glass substrate, buffer sheet, method for processing glass substrate, and glass substrate
  • Clamping jig for glass substrate, buffer sheet, method for processing glass substrate, and glass substrate
  • Clamping jig for glass substrate, buffer sheet, method for processing glass substrate, and glass substrate

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Embodiment Construction

[0037] Embodiments of the present invention will now be described with reference to accompanying drawings. FIG. 1 is a block diagram showing a fabrication sequence of a glass substrate used for a magnetic storage medium. Firstly, an untreated glass plate is made into an annular (disc-like) glass substrate, then an outer edge and an inner edge of this glass substrate are subjected to chamfering and polishing, before performing lapping and polishing of a recording surface of this glass substrate. Subsequently, after performing scrub washing, the surface is allowed to be chemically strengthened before washing the substrate, then inspection is carried out to make a final product. Among the steps described above, the present invention is applied to the chamfering of the glass substrate and to the grinding of the edges.

[0038]FIG. 2 is a perspective view of a clamping jig used for practicing the present invention. The clamping jig is comprised of a first pair of plates 1, 1, a second plat...

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Abstract

The present invention provides a method which can simultaneously grind inner peripheral edges and outer peripheral edges of a multiplicity of glass substrates used for magnetic storage media or the like. In order to chamfer the outer edges of the glass substrates g, a multiplicity of annular glass substrates g are firstly stacked with buffer sheets 5 interposed between the glass substrates to make a glass substrate block G. Then, a first plates 1, 1 of the above described clamping jig are applied to both sides of the glass substrate block G, and a first fastening tool 3 is inserted through center holes of the first plates 1, 1 and the glass substrate block G. Next, the glass substrate block G is clamped from an inside thereof for chamfering the outer edges with a grindstone 6.

Description

BACKGROUND OF THE INVENTION [0001] 1. Field of the Invention [0002] The present invention relates to a clamping jig for holding a multiplicity of annular glass substrates with the annular glass substrates being stacked, a buffer sheet to be interposed between the glass substrates, a method for grinding (chamfering or polishing) inner peripheral edges and outer peripheral edges of the multiplicity of annular glass substrates, and a glass substrate obtained by this method. [0003] 2. Description of the Related Art [0004] Glass is superior to aluminum in shock resistance, rigidity, hardness, and strength, so that the glass has been increasingly used as a magnetic storage medium which is built into a hard disc drive or the like. [0005] In particular, a configuration of a personal computer has been gradually changed from a desktop type to a notebook type or a mobile type recently, thus the demand for glass substrates which are excellent in flatness and densification has been increased ins...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): B24B9/00B24B9/06B24B7/24B24B41/06C03C19/00G11B5/84
CPCB24B41/06B24B9/065
Inventor YOSHIKAWA, TAKAMASAOKUHATA, KOJIMATSUNO, KENSUKEWATANABE, TAKEO
Owner HOYA CORP