Digital reengineering of the customized equipment manufacture in small enter-prises
Authors: Bulavin V.F., Bulavina T.G., Petryashov I.S., Stepanov A.S. | Published: 06.08.2024 |
Published in issue: #8(773)/2024 | |
Category: Mechanical Engineering and Machine Science | Chapter: Manufacturing Engineering | |
Keywords: digital twin, digital reengineering, additive technologies, small enterprises businesses |
Digital manufacture today appears to be the main driver in the global economic growth. The new trend establishes itself as an effective technological solution in the context of labor shortage and import substitution policies. Within the frames of small-scale and customized manufacture, significant amount in the order portfolio of small engineering enterprises is occupied by work relating to design of metal structures, repair, modernization and reengineering of the auxiliary equipment for the related companies, construction and transport organizations, retail chains, etc. Active CAD/CAPP/CAE technologies implementation reduces manufacture time and cost, which is especially important in the context of sanctions. Along with traditional methods in material machining, additive technologies are being used making it possible to manufacture the required components and parts directly on site. This reduces dependence on imports and risks associated with delays in delivery or prices increase. Under these conditions, innovation changes in technology and transformation of the manufacture management are actualizing introduction of the business processes’ intelligent model at all levels. In regard to the distributed enterprises, this establishes uniform rules in interaction and logistics, and also provides support in parallel work of the developers.
EDN: UKCMBK, https://elibrary/ukcmbk
References
[1] Tsifrovoe proizvodstvo. Metody, ekosistemy, tekhnologii [Digital Manufacturing. Methods, ecosystems, technologies]. URL: http://assets.fea.ru/uploads/fea/news/2017/11_november/17/tsifrovoe_proizvodstvo_112017.pdf (accessed: 07.12.2023). (In Russ.).
[2] Borovkov A.I., Ryabov Yu.A. [Perspective directions of development of advanced production technologies in Russia]. Mat. XVII Aprelskoy mezhd. nauch. konf. Po problemam razvitiya ekonomiki i obshchestva. T. 3 [Proc. XVIII April Int. Sci. Conf. on Problems of Economy and Society Development. Vol. 3]. Moscow, VShE Publ., 2017, pp. 381–389. (In Russ.).
[3] Borovkov A., Ryabov Yu. On "Tekhnet" roadmap (advanced manufacturing technologies) of the National Technological Initiative. Tramplin k uspekhu, 2017, no. 10, pp. 8–11. (In Russ.).
[4] Digital spillover. Huawei, 2017. URL: https://www.huawei.com/minisite/gci/en/digital-spillover/files/gci_digital_spillover.pdf (accessed: 07.12.2023).
[5] Bulavin V.F., Bulavina T.G., Koshutin D.V. et al. Digital transformation of technological support of production in small enterprises. Izvestiya vysshikh uchebnykh zavedeniy. Mashinostroenie [BMSTU Journal of Mechanical Engineering], 2021, no. 9, pp. 15–29, doi: http://dx.doi.org/10.18698/0536-1044-2021-9-15-29 (in Russ.).
[6] Bulavin V.F., Bulavina T.G., Yakhrichev V.V. et al. Digital format for preparation of instrument production. Part I. Design stage. Izvestiya vysshikh uchebnykh zavedeniy. Priborostroenie [Journal of Instrument Engineering], 2020, vol. 63, no. 3, pp. 242–249, doi: https://doi.org/10.17586/0021-3454-2020-63-3-242-249 (in Russ.).
[7] Bulavin V.F., Yakhrichev V.V. Digital technologies in small businesses in the engineering industry. SAPR i grafika, 2018, no. 6, pp. 52–55. (In Russ.).
[8] Bulavin V.F., Bulavina T.G., Yakhrichev V.V. Validation of cad products in small enterprises machinery sector. Fundamentalnye i prikladnye problemy tekhniki i tekhnologii [Fundamental and Applied Problems of Engineering and Technology], 2017, no. 5, pp. 64–72. (In Russ.).
[9] Bulavin V.F., Bulavina T.G., Yahrichev V.V. Design of ultrasonic auxiliary equipment. In: Proc. ICIE 2021. Springer, 2022 pp. 9–16, doi: https://doi.org/10.1007/978-3-030-85230-6_2
[10] Bulavin V.F., Bulavina T.G., Yakhrichev V.V. [Digital innovations for small entrepreneurship mechanical engineering]. Tsifrovaya ekonomika i industriya 4.0: Forsayt Rossiya. Sb. tr. nauch.-prakt. konf. [Digital Economy and Industry 4.0: Russian Foresight. Proc. Sci.-Pract. Conf.]. Sankt-Petersburg, Politekh-Press Publ., 2020, pp. 28–40. (In Russ.).
[11] Alyamovskiy A.A. Inzhenernye raschety v Solid Works Simulation [Engineering calculations in Solid Works Simulation]. Moscow, DMK-Press Publ., 2010. 464 p. (In Russ.).
[12] Zamriy A.A. Prakticheskiy uchebnyy kurs. CAD/CAE sistema ARM WinMachine [Practical training course. CAD/CAE ARM WinMachine system]. Moscow, DMK-Press Publ., 2007. 144 p. (In Russ.).
[13] Bulavin V.F., Bulavin V.F., Bulavina T.G., et al. Digital design and technological innovation in the small machine building sector. Conf. Ser.: Mater. Sci. Eng., 2020, vol. 939, art. 012016, doi: https://doi.org/10.1088/1757-899X/939/1/012016
[14] Bulavin V.F., Bulavina T.G., Stepanov A.S. Digital space of small enterprises in engineering. In: Proc. ICIE 2021. Springer, 2021, pp. 462–468, doi: https://doi.org/10.1007/978-3-030-54817-9_54
[15] Bulavin V.F., Bulavina T.G., Yahrichev V.V., et al. Digital support of production small business preparation in engineering. J. Phys.: Conf. Ser., 2019, vol. 1399, no. 3, art. 033045, doi: https://doi.org/10.1088/1742-6596/1399/3/033045
[16] Shiryaev N. PLM/PDM/ERP: reality and prospects. SAPR i grafika, 2007, no. 12, pp. 16–20. (In Russ.).
[17] Babkin A.V., ed. Tsifrovizatsiya ekonomicheskikh sistem: teoriya i praktika [Digitalisation of economic systems: theory and practice]. Sankt-Petersburg, Politekh-Press Publ., 2020. 795 p. (In Russ.).
[18] Bulavin V.F., Bulavina T.G., Koshutin D.V. Engineering support & infrastructure of small — sized mechanical engineering companies. In: Proc. ICIE 2023. Springer, 2023, pp. 530–539, doi: https://doi.org/10.1007/978-3-031-38126-3_53