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.
Abstract. In the present paper the discipline of the holistic approach (complex of design procedures) which provide the effectiveness of the realization of the assembly operations is considered. The effective realization of the assembly operations is based on the links between the process design of the manufacturing of the high-precision products and the process design of the assembly production of the high-precision products.
This article considers the improvement of mathematical and methodological support of the implementation of an enlarged block of design procedures of the analysis of requirements of the assembly of high-precision products of the complex of design procedures of the system of accounting requirements for the assembly in the design of manufacturing methods of machining. The proposed modernization will allow to more efficiently perform of the design dimensional analysis of a high-precision assembly unit in an automated fashion and choose rational manufacturing methods of machining of parts in the system of automated sequencing of manufacturing methods during process design of the production of multi-nomenclature machining complexes. In addition, the proposed solutions allow for the expansion of digitalization of designing preproduction and process design and the transition to intelligent production systems. The problem posed in the presented study is relevant, since the proposed solutions allow for the expansion of digitalization of designing preproduction and process design and the transition to intelligent production systems in the future.
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