Comparative analysis of two approaches definition of volume and mass details of complex configuration

Main Article Content

A.V. Konoplev
L.G. Ducret
V.F. Zelinsky
S.V. Bershak

Abstract

The article presents a comparative analysis of two approaches to determining the volume and mass of machine parts with complex configurations during the design phase. Based on the conducted analysis, it is shown that more accurate results can be achieved through automated design in the universal graphical system AutoCAD, using the method of three-dimensional geometric modeling. This method includes techniques and methods for constructing volumetric visual models of objects in virtual three-dimensional space, ensuring the connection of graphical objects with external databases, and serving as a powerful tool for automating the development and execution of design and engineering documents. Three-dimensional geometric modeling technologies significantly expand the scope of application of geometric models in design activities and allow their use not only in design engineering but also in conducting engineering analysis and obtaining data necessary for the production process.

Article Details

How to Cite
Konoplev, A., Ducret, L., Zelinsky, V., & Bershak, S. (2023). Comparative analysis of two approaches definition of volume and mass details of complex configuration. Herald of the Odessa National Maritime University, (70), 113-121. https://doi.org/10.47049/2226-1893-2023-3-113-121
Section
Tightening and strength of machine parts
Author Biographies

A.V. Konoplev, Odesa national maritime university, Odesa, Ukraine

Doctor of Technical Sciences, Professor, Head of the Department of «Machine Science»

L.G. Ducret, Odesa national maritime university, Odesa, Ukraine

Senior lecturer of «Mechanical Science» departments

V.F. Zelinsky, Odesa national maritime university, Odesa, Ukraine

Assistant professor of «Mechanical Science» departments

S.V. Bershak, Odesa national maritime university, Odesa, Ukraine

Ph.D., assistant professor of «Mechanical Science» departments

References

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