THE SYSTEM OF AUTOMATED SYNTHESIS OF INSTALLATION SCHEMES OR MACHINING BATCHES OF BLANKS OF NON-ROUND PARTS AT MACHINING CENTERS
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Abstract
A basic algorithmic design-based model is proposed to solve the problem of automated synthesis of WCS (Work Coordinate System) coordinate systems, as well as to determine the composition of the mounting and clamping elements of machine tools to ensure the accuracy of the structural elements of original non-circular parts of complex shape in serial machine-building production on multi-purpose milling machining centers. The algorithmic model includes a number of auxiliary algorithms: constructing a model of the structure of geometric connections of modules of functional surfaces of workpieces for processing operations; determining the base surfaces; identifying the composition of orientation bases; determining priority in ensuring tolerances; linking geometric connections to the elements of the base composition (WCS is formed); determining the composition of the mounting and (or) mounting and clamping ele-ments of the basing model. The software implementing these algorithms is described.
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This work is licensed under a Creative Commons Attribution 4.0 International License.
N. POPOK, Euphrosyne Polotskaya State University of Polotsk
д-р техн. наук, проф.
N. BELYAKOV, Vitebsk State University of Technology
канд. техн. наук, доц.
References
Сахаров А.В. Определение технологических возможностей вертикального фрезерного обрабатывающего центра // Станкоинструмент. – 2020. – № 4(021). – С. 48–52. DOI: 10.22184/2499-9407.2020.21.04.48.52
Разманов Е.С., Якубов А.В. Обрабатывающие центры - основа современного машиностроительного производства // Международный журнал прикладных и фундаментальных исследований. – 2010. – № 3. – С. 31–32. – URL: https://applied-research.ru/ru/article/view?id=397.
Kumar S. A., Subramaniam V., Teck T. B. Conceptual design of fixtures using machine learning techniques // International Journal of Advanced Manufacturing Technology. – 2000. – № 16(3). – P. 176–181. DOI: 10.1007/s001700050024
Patil A., Rambhad K. S., Bele D. R. Concept of Jigs and Fixture Design – A Review // International Journal of Analytical, Experimental and Finite Element Analysis (IJAEFEA). – 2017. – Vol. 4. – Iss. 4. – P. 73–77. DOI: 10.26706/IJAEFEA.4.4.20171004
Gothwal S., Raj Т. Different aspects in design and development of flexible fixtures: Review and future directions // International Journal of Services and Operations Management. – 2017. – Vol. 26. – № 3. – P. 386–410. DOI: 10.1504/IJSOM.2017.081944
Ловыгин А.А., Теверовский Л.В. Современный станок с ЧПУ и CAD/CAM-система: практическое пособие. – М.: ДМК Пресс, 2018. – 280 с.
Royer M., Anselmetti В. 3d manufacturing tolerancing with probing of a local work coordinate system // The International Journal of Advanced Manufacturing Technology. – 2016. – Т. 84. – № 9. – P. 2151–2165. DOI: 10.1007/s00170-015-7797-4
Intelligent design and optimization of machining fixtures / D. Vukelic, G. Simunovic, D. Tadic et al. // Tehnički vjesnik. – 2016. – № 23(5). – P. 1325–1334. DOI: 10.17559/TV-20150908142130
Meraz M. M., Duarte L. J., Hernández C. L. Localization of the work coordinate system using computer vision and geometric transformations on three-axis cnc milling machines // EAI Endorsed Transactions on AI and Robotics. – 2025. – Vol. 4. – P. 1–14. DOI: 10.4108/airo.9898
Gu J., Agapiou J. S., Kurgin S. CNC machine tool work offset error compensation method // Journal of Manufacturing Systems. – 2015. – Vol. 37. – P. 576–585. DOI: 10.1016/j.jmsy.2015.04.001
Srinivasan H., Harrysson O., Wys, R. Automatic part localization in a CNC machine coordinate system by means of 3d scans // International Journal of Advanced Manufacturing Technology. – 2015. – Vol. 81. – P. 1127–1138. DOI:10.1007/s00170-015-7178-z
Petrakov Y., Shuplietsov D. Contour milling programming technology for virtual basing on a CNC machine // Eastern-European Journal of Enterprise Technologies. – 2019. – № 2(1 (98)). – Р. 54–60. DOI:10.15587/1729-4061.2019.162673
Хрустицкий К.В., Черепашков А.А. Комплексная автоматизация технологической подготовки производства и управления процессами механической обработки корпусных деталей машин // Вестник Самарского государственного аэрокосмического университета. – 2012. – № 5(36). – С. 62–66. – URL: https://journals.ssau.ru/vestnik/issue/viewIssue/44/58.
Храмов А.В., Жирухин К.С., Киселев Е.С. Эффективность использования новых видов технологической оснастки при изготовлении нежестких плоскостных алюминиевых деталей // iPolytechJournal. – 2023. – № 27(2). – С. 284–296. DOI: 10.21285/1814-3520-2023-2-284-296
Кротов С.Н. Системы быстрого базирования и предъявляемые к ним требования на примере SCHUNK VERO-S // Станкоинструмент. – 2016. – № 4. – С. 70–74. – URL: https://www.stankoinst.ru/journal/article/5749.
Беляков Н.В., Попок Н.Н., Якушев М.А. Порядок назначения систем рабочих координат WCS для программирования обработки партий заготовок деталей на станках с ЧПУ // Образование и наука в развитии технологий, экономики, общества = Education and Science in the development of Technology, Economy and Society (ESTES-2025): материалы докладов 58-й междунар. науч.-техн. конф. преподавателей и студентов, посвящ. 60-летию УО «ВГТУ». В 2 т. / УО «ВГТУ». – Витебск, 2025. – Т. 2. – С. 416–418.
Проектное базирование заготовок при обработке на многоцелевых фрезерных обрабатывающих центрах / Б.М. Базров, Н.Н. Попок, Н.В. Беляков и др. // Инновационные технологии в машиностроении: электрон. сб. материалов междунар. науч.-техн. конф. / Новополоцк (22–23 апр. 2025 г.) / ПГУ им. Евфросинии Полоцкой. – Новополоцк, 2025. – С. 23–25.
Богуцкий В.Б. Автоматизированная система проектирования приспособлений для металлорежущих станков // Вестник науки и образования Северо-Запада Росcии. – 2019. – Т. 5. – № 2. – С. 1–7. – URL: http://vestnik-nauki.ru/wp-content/uploads/2019/07/2019-N2-Bogutsky.pdf (дата обращения: 21.03.2026).
Boyle I., Rong R., Brown D.C. A review and analysis of current computer-aided fixture design approaches // Robotics and Computer-Integrated Manufacturing. – 2011. – № 27. – Iss. 1. – P. 1–12. DOI: 10.1016/j.rcim.2010.05.008
Active fixturing: literature review and future research directions / O. J. Bakker, T. N. Papastathis, A.A. Popov et al. // International Journal of Production Research. – 2013. – Vol. 51. – Iss. 11. – P. 3171–3190. DOI: 10.1080/00207543.2012.695893
Беляков Н.В., Попок Н.Н. Основы автоматизированного проектного базирования в субтрактивном и аддитивном машиностроительных производствах. – Витебск: ВГТУ, 2023. – 183 с.
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