Here, are considered the known papers on technological quality assurance of parts surfaces in abrasive processing. The analysis of these research and the issues raised have shown that the solution of tasks related to improvement of the surface layer quality, accuracy, and durability of parts is an actual and promising direction for further research. The basic ways of the decision of a problem of improvement of the part processed surfaces quality are defined. The general disadvantages of the existing empirical dependencies for determining the roughness in different methods and conditions of grinding of the parts surfaces are noted.Keywords Technological support Á Quality of the treated surfaces Grinding Á Parts
IntroductionIn the manufacturing technology of parts for various purposes, abrasive methods are widely used to improve their quality of the surface layer. The abrasive treatment is, in most cases, the final stage of parts manufacturing. The purpose of such treatment is to impart the desired performance properties (PP) to the treated surface, which are, in large part, determined by geometric and physical and mechanical parameters. These parameters include, first of all, roughness, microhardness, and residual stresses of the surface layer.
Today it is necessary to change the existing nature of the organization of production in connection with the current trend of transition to the intellectualization of technological preparation of production. Therefore, the actual and fundamentally new today is the creation of a system that will allow you to plan the production process in an automated mode. It is possible to implement on the basis of the development of many variants of technological processes of mechanical processing of the manufactured products. To choose the optimal technological process from the developed, for the current production situation it is necessary to apply a set of control and measuring procedures proposed by the authors. From the subtasks of the complex of control and measuring procedures in One automated system of design of technological processes of machining is the formation of a rational set of measuring instruments, and the solution of this problem is a prospect for the introduction of digitalization of production.
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