FINISHING AND STRENGTHENING ROTARY RUNNING-IN TECHNOLOGY FOR LONG THIN-WALLED PIPES
- 作者: Sidyakin Y.I.1, Julius L. T.L.1, Lavrentiev A.M.2, Abakumova S.Y.1, Olshtynsky S.N.1
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隶属关系:
- Volgograd State Technical University
- Kamyshinsky Institute of Technology branch of VolgSTU
- 期: 编号 10 (172) (2025)
- 页面: 31-39
- 栏目: Technologies of mechanical processing of workpieces
- URL: https://bakhtiniada.ru/2223-4608/article/view/349990
- DOI: https://doi.org/10.30987/2223-4608-2025-10-31-39
- ID: 349990
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An analytical solution for the elastic plastic contact strain problem is proposed in relation to the processes of finishing and strengthening machining of long thin-walled pipes by rotary run-in using cylindrical and pseudospheric toroidal rollers. Technological and instrumental support of these processes is viewed. It contributes to the improvement of pipe surfaces quality and eliminates errors in the geometric shape of the cross-section. The conditions for self-feed of pipes being treated are determined. An algorithm has been developed for calculating rational modes of surface plastic deformation of long thin-walled pipes in the Mathcad software package, taking into account their special geometry and increased flexibility, as well as strict requirements for products in terms of accuracy of diametrical size and quality of treated surfaces. The proposed method for calculating some rational technological modes of finishing and strengthening treatment has been experimentally tested on thin-walled pipes (sometimes flattened to 1 mm in diameter) made of 30 steel with a hardness of HB160 with an initial surface roughness of Ra = 1,25...1,6 microns. The pipes were run-in using a 3-roller running-in device at a rotational speed of about 80 rpm with cylindrical rollers. The calculated rollers decline in the shell of the running-in device and the technological parameters of the processing mode made it possible, with a five...eightfold overlap of the initial trace of the tool tip, to ensure not only the conditions for self-feeding of the pipe and high process productivity, but also to obtain the required riveting depths and strain hardening degree for its surface. At the same time, the surface roughness decreased by almost an order of magnitude (to Ra ≤ 0,2 microns) without noticeable traces of undulation and peeling, and the initial out-of-roundness of the pipe section was almost completely prevented. The developed rotary running-in technology for long thin-walled pipes is recommended for wide practical use in machine-building enterprises.
作者简介
Yuryi Sidyakin
Volgograd State Technical University
Email: techmach@vstu.ru
ORCID iD: 0009-0006-6418-4170
doctor of technical sciences
Tchigirinsky Julius L.
Volgograd State Technical University
Email: Julio-Tchigirinsky@yandex.ru
ORCID iD: 0000-0001-5620-5337
SPIN 代码: 4817-4424
Scopus 作者 ID: 9037863700
Researcher ID: L-9790-2015
Department of Mechanical Engineering Technology, professor, doctor of technical sciences
Aleksander Lavrentiev
Kamyshinsky Institute of Technology branch of VolgSTU
Email: techmach@vstu.ru
Svetlana Abakumova
Volgograd State Technical University
Email: techmach@vstu.ru
Sergey Olshtynsky
Volgograd State Technical University
编辑信件的主要联系方式.
Email: techmach@vstu.ru
ORCID iD: 0000-0002-6030-5725
参考
ГОСТ 8733-75. Трубы стальные бесшовные холоднодеформированные и теплодеформированные (технические требования); ГОСТ 10704-91. Трубы стальные электросварные прямошовные (сортамент). Браславский В.М. Технология обкатки крупных деталей роликами. М.: Машиностроение. 1975. 160 с. Дрозд М.С., Матлин М.М., Сидякин Ю.И. Инженерные расчеты упругопластической контактной деформации. М.: Машиностроение. 1986. 224 с. Сидякин Ю.И. Разработка метода расчета упругопластических контактных деформаций в процессах упрочнения деталей поверхностным пластическим деформированием. М.: ЦНИИТМАШ. 2002. 34 с. Сидякин Ю.И. Повышение эффективности упрочняющей механической обработки валов обкаткой их роликами или шариками // Вестник машиностроения. 2001. № 2. С. 43−49. Sidyakin Y.I., Olshtynsky S.N., Abakumova S.Y. Application of smoothing rollers in processes finishing-strengthening treatment of shafts’ SPD // Proceedings of the 5th International Conference on Industrial Engineering. 2020. P. 1213−1222. https://doi.org/10.1007/978-3-030-22063-1_129 Отений Я.Н., Никифоров Н.И., Алабин В.А., Лаврентьев А.М. Обеспечение точности формы при обработке ротационным обкатыванием длинных тонкостенных труб // Упрочняющие технологии и покрытия. 2012. № 7. C. 12−16. Коновалов Е.Г. Ротационная обработка поверхностей с автоматической подачей. Минск: Высшая школа. 1976. 192 с. Сидякин Ю.И. Сферическая модель исследования упругопластической контактной деформации. // Известия ВолгГТУ. Прогрессивные технологии в машиностроении, вып. 6, № 12 (72). ВолгГТУ. Волгоград. 2010. С. 48−52. Отений Я. Н. Обеспечение точности формы при обработке ротационным обкатыванием длинных тонкостенных труб // Упрочняющие технологии и покрытия. 2012. № 7. C. 12−16.
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