USING PARAMETERIZATION TO ENHANCE THE EFFICIENCY OF DEVELOPING TECHNICAL DOCUMENTS IN MACHINE BUILDING
Abstract and keywords
Abstract:
The paper is devoted to the study of methods and practical application of parameterization for developing design documents in CAD systems. The principles of building associative links between the geometry of parts and design documentation are described in detail. The implementation process is described, which includes the development of standardized templates when working with different types of parts. The examples show that the implementation of the proposed approach makes it possible to reduce the time for the release of design documents by up to 90%, as well as to guarantee 100% synchronization of the design data of parts at all stages of the project. The proposed method allows for end-to-end traceability when products change. The practical significance of the paper is confirmed by examples of implementing COMPASS-3D in CAD system. The results of the study show that parameterization is an important step in CAD systems, transferring the development of design documentation into an automated control mode for the parameters of the part being developed.

Keywords:
parameterization, CAD systems, documentation, design, management, data, macros, standardization
References

1. Ivanov II. Introduction to CAD/CAM/CAE systems. Moscow: DMK Press; 2023.

2. Serov AI, Kasumova GA. Problems of using CAD systems in the field of design. Nauchnaya Zhizn (Scientific life). 2025;20(1(139)):271-277. DOIhttps://doi.org/10.35679/1991-9476-2025-20-1-271-277.

3. Pandya B. Using cad systems for automating the design and prototyping process. The American Journal of Engineering and Technology. 2025;7(2):6-11. DOIhttps://doi.org/10.37547/tajet/volume07issue02-02.

4. Bulavina EV, Pavlov IN, Bulavin VF. CAE/CAM-automation of technological production preparation. Journal of Instrument Engineering. 2025;68(5):438-449. DOIhttps://doi.org/10.17586/0021-3454-2025-68-5-438-449.

5. Belyakova GYa, Avramchikov VM. Specifics and features of digital transformation of aviation industry. Tomsk State University Journal. Economics. 2024;68:273-292. DOIhttps://doi.org/10.17223/19988648/68/14.

6. Korzhova OP, Makashin DS, Popov PE, Donoaga IE. Digitalization of machine-building production: technological preparation of production. Initiatives of the Young to Science and Production. Penza; 2023.

7. Autodesk Construction Cloud [Internet]. [cited 2026 Jan 20]. Available from: https://construction.autodesk.com/

8. BricsCAD BIM [Internet]. [cited 2026 Jan 20]. Available from: https://www.bricsys.com/en/intl/bim/

9. CoLab AutoReview [Internet]. [cited 2026 Jan 20]. Available from: https://colabsoftware.com/autoreview/

10. ASCON. [Internet]. [cited 2026 Jan 20]. Available from: https://ascon.ru/

11. Eid NKh. A Review on the Power of CAD/CAM Technology and the Material Science in Modern Manufacturing. ERU Research Journal. 2025;4(1):2223-2250. DOIhttps://doi.org/10.21608/erurj.2025.299610.1167.

12. ASCON. COMPASS-3D. User's Guide [Internet]. St. Petersburg: ASCON Publ; 2023.

13. Athanasiadis I. Implementing CAD API Automated Processes in Engineering Design: A Case Study Approach. Applied Sciences. 2025;15(14):7692. Available from: https://www.mdpi.com/2076-3417/15/14/7692

14. Ulyanova ND, Lyamzin AA, Feskov SA. Three-dimensional modeling and computer analysis of machine tool parts. Scientific Journal of Federal State Budgetary Educational Institution of Higher Education "Bryansk State Agrarian University". 2024;2(102):61-67.

15. Ulyanova ND, Tanasoglo DV. Review of 3D modeling software products. Innovative development of entrepreneurial activity in the region. Bryansk; 2021.

16. Nemirovsky KA. Reverse engineering of imported parts and assemblies in modern machine building. Scientific progress – creativity of the young. 2024;1:203-205.

17. Dyukov MO, Amirkhanyan AG, Amirkhanyan LG. Design concept of a subtractive device for manufacturing layouts from digital models. Design and Technology. 2024;102(144):104-111.

18. Koryagina OM, Goryachkina AYu, Goryunova IA. Creating group drawings for the same type of products in the Autodesk Inventor program environment. Chief Mechanical Engineer. 2023;7:424-436. DOIhttps://doi.org/10.33920/pro-2-2307-06.

19. Saiduganov AR, Saiduganov SR, Khadiullin SKh, Chernikov PP, Bikmetov TA, Sazanov AA. Development software module for automated design of 3D-model based on integration with a database management system. Molodezhnyj Vestnik UGATU. 2024;1(30):94-99.

20. Makashin DS. Structural-functional model of planning the process of manufacturing of fuel regulating equipment. Instruments and Systems: Monitoring, Control, and Diagnostics. 2025;6:1-9. DOIhttps://doi.org/10.25791/pribor.6.2025.1587.

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