Multilayer abrading tool and process

5022895
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Inventors

Wiand, Ronald C.

Application #

423762

Filed

Oct-18-1989

Published

Jun-11-1991

Current US Class

051/295
051/298

International Classes

B24B 001/00

Field of Search

51/298 51/295

Examiners

Dixon, Jr.; William R.

Attorney, Agent or Firm

Harness, Dickey & Pierce

US Patent References

4018576   Diamond abrasive...
4063909   Abrasive compact...
4142872   Metal bonded abra...
4458617   Board sailing harn...
4561863   Grinding wheel an...
4681600   Cutting tool fabricat...
4731125   Media blast paint r...
4759774   Process for cleanin...

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Citation

Cite This Patent

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Abstract
A multilayer abrading tool is produced by first providing a tool substrate with a structured abrading surface. An abrasive grit coating is provided by mixing a temporary binder, an abrasive grit material and an infiltrant powder material. This coating is then applied to the structured surface. The tool is then heated to drive off the binder and to cause infiltration of the infiltrant in the abrasive grit to form a multilayer of diamond grit suspended in a braze matrix which is attached to the structured surface of the tool substrate.
 
Claims
What is Claimed is:

1. An abrading tool having a "multilayer abrasive grit matrix surface layer" produced without a mold, said abrading tool comprising:

an abrading tool substrate, having a structured abrading surface, and a multilayer of abrasive particles attached thereto in substantially an even thickness coating, said multilayer of abrasive particles being diamond grit suspended in an infiltrant matrix.

2. The abrading tool of claim 1 wherein the multilayer of abrasive particles is provided on said structured abrading surface by coating the structured abrading surface with a layer of an abrasive grit suspended in an infiltrant martix, in its green state with a temporary binder and thereafter heating said coating to drive off the binder and cause infiltration of said infiltrant matrix thereby suspending the abrasive grit particles in the infiltrant matrix in a multilayer and to bond said infiltrant matrix to the structured abrading surface.



Description
BACKGROUND

The present invention relates to diamond layered abrading tools. More particularly, the present invention relates to a multilayer diamond abrading tool produced without a mold.

In the past, it has been desirable to produce diamond abrading wheels and other abrading tools. Of these prior tools, the most common types include tools having a monolayer of grit and multilayer grit tools. The single layer grit structures include a metal substrate which has a single layer of diamond grit particles attached thereto to provide the abrading surfaces. While these tools provide advantages in cost of manufacture over other abrading tools, they may have a limited life for grinding of certain materials. This is a problem because through the course of grinding operations, the diamond grit particles eventually come loose reducing the efficiency of the abrading tool.

On the other hand, the multilayer tools include several thicknesses of dispersed diamond cutting grit, thus, providing continued layers of usable grinding surfaces beyond the initial surface layer of diamond grit. In the past, in order to provide such a multilayer diamond grit abrading tool configuration, it was required to provide a mold to produce the necessary shape when sintering a diamond grit matrix onto a core. This is most effectively accomplished by molding with heat and compression, such that an advantageous multilayer wheel or the like surface would be produced and attached to the substrate tool structure.
 
  A multilayer abrading tool is produced by first providing a tool substrate with a structured abrading surface. An abrasive grit coating is provided by...  Surface coating includes alternating first and second ternary layers, wherein the first layer TiAlN.sub.x has a higher nitrogen content and is considerably...