AUTOMATED SELECTION SYSTEM FOR MEASURING GEOMETRIC VALUES FOR TECHNOLOGICAL PREPARATION OF ADDITIVE AND SUBTRACTIVE ENGINEERING INDUSTRIES DETAILS OF COMPLEX SHAPE

Main Article Content

N. POPOK
N. BELYAKOV

Abstract

Based on the analysis of the characteristics of modern measuring instruments, the functioning of automated systems of metrological equipment and the design of technological processes, methodological, algorithmic and software procedures for the selection of measuring instruments of geometric quantities of parts of complex shape for the technological preparation of additive and subtractive machine-building industries are proposed, taking into account the type of magnitude, metrological characteristics of measuring instruments, measurement conditions and application features related to the geometry of surfaces, the technology of their form formation, accessibility and location, which allows to reduce the complexity of design work and improve the quality of technological solutions. The system can be used in design bureaus of machine-building enterprises; IT companies for the creation and improvement of automated systems; educational process for the training of specialists in the production of products based on additive and subtractive technologies.

Article Details

How to Cite
POPOK, N., & BELYAKOV, N. (2024). AUTOMATED SELECTION SYSTEM FOR MEASURING GEOMETRIC VALUES FOR TECHNOLOGICAL PREPARATION OF ADDITIVE AND SUBTRACTIVE ENGINEERING INDUSTRIES DETAILS OF COMPLEX SHAPE. Vestnik of Polotsk State University. Part B. Industry. Applied Sciences, (1), 2-10. https://doi.org/10.52928/2070-1616-2024-49-1-2-10
Section
Machine-building and theoretical engineering
Author Biographies

N. POPOK, Euphrosyne Polotskaya State University of Polotsk

д-р техн. наук, проф.

N. BELYAKOV, Vitebsk State Technological University

канд. техн. наук, доц.

References

Glubokov, A.V. & Yastrebov, T.S. (2018). Problemy avtomatizatsii vybora universal'nykh sredstv izmereniya lineinykh razmerov [Problems of automation of the selection of universal measuring instruments of linear dimensions]. Izmerenie. Monitoring. Upravlenie. Kontrol' [Measuring. Monitoring. Management. Control], 4(26), 37-42. DOI 10.21685/2307-5538-2018-4-6 (In Russ., abstr. in Engl.)