Abstract

The paper describes an automated method for grinding small ceramic elements using a hyperboloid wheel. The problem of automating the process of machining elements made of nonmagnetic materials with a small area and low height has been solved. Automation of the grinding process was possible thanks to automatic clamping of workpieces in the machining zone and sequential processing by a specified number of grinding wheels. The workpieces were passed through successive machining zones. The division of the allowance of individual grinding wheels was made taking into account the characteristics of the workpieces and the requirements for the results of the machining. Obtaining a long grinding zone and the effect of automatic clamping of the workpieces was possible due to the inclination of the grinding wheel axis in relation to the plane of movement of the workpieces. Innovative aggregate grinding wheels were used for grinding. The aggregates containing diamond abrasive grains, connected with a metal bond, were embedded in the porous structure of the resin bond. The aggregates ensured high efficiency of grinding, and their developed surface contributed to good holding in the resin binder. The durability of grinding wheels was 64 h, which enables the machining of 76,000 ceramic elements.

Highlights

  • There is usually only the possibility of using a specially shaped table surface and the clamping effect of the grinding force, which was the main assumption for the developed method and the automatic grinders built

  • The aggregates ensured the high grinding efficiency of ceramics, and their developed surface contributed to good holding in the resin binder

  • A gradual change in the properties of grinding wheels during their operation life, leads to an increase in grinding power and forces, which affects the disturbance of the Examples of optimization results leading to the determination of safe parameters of the machining process allowing an increase in the monitored features of the process by 20%

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Summary

A Method and Device for Automated Grinding of Small

A Method and Device for Automated Grinding of Small Ceramic Elements.

Introduction
Purpose and Scope of Research
Characteristics of Processed
Research Stand
Results
15. Dependence the grinding the allowance type of grinding
19. View of the the values surfaceof topography and parameters the values offor
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