Skip to main content
Top
Published in: Metallurgist 1-2/2022

01-07-2022

Computer Simulation of Double-Threaded Rolling in Production of Grinding Balls with a Diameter of 100 mm from Alloy Steels

Authors: D. L. Shvarts, I. K. Galim’yanov, A. A. Semenov

Published in: Metallurgist | Issue 1-2/2022

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

At the moment, two-way rolls are used when rolling balls with a nominal diameter of 100 mm. In the process of rolling balls, due to the use of two-pass calibration, an increased vertical angle of inclination of the rolls is used. When working at such angles, the tangential stresses increase. The production of balls with a diameter of 100 mm on rolls with two-pass calibration with increased wear of the surface of the edges leads to the appearance of characteristic defects on the surface of the balls. This article presents a simulation of the ball rolling process, an analysis of the stress-strain state of the rolling process is carried out. The SSA calculation of the current calibration of rolls for rolling grinding balls with a diameter of 100 mm was carried out in order to analyze and compare with the existing rolling technology. According to the simulation results, it was found that when using the calibration of rolls with a constant step of cutting edges, in general, there is a fairly high level of stress throughout the entire volume.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference A. A. Umanskii, A. V. Golovatenko, A. G. Shchukin, and A. S. Simachev, “Impact of hardening microstructure of grinding balls produced by cross-helical rolling on their performance characteristics,” Proizvodstvo Prokata, No. 3, 34–39 (2019). A. A. Umanskii, A. V. Golovatenko, A. G. Shchukin, and A. S. Simachev, “Impact of hardening microstructure of grinding balls produced by cross-helical rolling on their performance characteristics,” Proizvodstvo Prokata, No. 3, 34–39 (2019).
2.
go back to reference D. V. Stalinskii, A. S. Rudyuk, and V. K. Solennyi, “Material and heat treatment technologies for grinding balls used mainly under conditions of abrasive wear,” Stal’, No. 6, 64–69 (2017). D. V. Stalinskii, A. S. Rudyuk, and V. K. Solennyi, “Material and heat treatment technologies for grinding balls used mainly under conditions of abrasive wear,” Stal’, No. 6, 64–69 (2017).
3.
go back to reference E. V. Chizh and M. B. Abenova, “Selection and analysis of manufacturing technology for grinding bodies,” Teoriya i Tekhnologiya Metallurgicheskogo Proizvodstva, No. 2, 26–30 (2016). E. V. Chizh and M. B. Abenova, “Selection and analysis of manufacturing technology for grinding bodies,” Teoriya i Tekhnologiya Metallurgicheskogo Proizvodstva, No. 2, 26–30 (2016).
4.
go back to reference K. N. Vdovin, N. A. Feoktistov, M. B. Abenova, V. D. Kulikov, and I. S. Kondratiev, “Quality of grinding balls obtained by different methods,” Teoriya i Tekhnologiya Metallurgicheskogo Proizvodstva, No. 1(16), 78–81 (2015). K. N. Vdovin, N. A. Feoktistov, M. B. Abenova, V. D. Kulikov, and I. S. Kondratiev, “Quality of grinding balls obtained by different methods,” Teoriya i Tekhnologiya Metallurgicheskogo Proizvodstva, No. 1(16), 78–81 (2015).
5.
go back to reference V. S. Smirnov, V. P. Anisiforov, M. V. Vasil’chikov, S. P. Granovskii, I. I. Kazanskaya, A. D. Kuz’min, N. V. Mekhov, and I. S. Pobedin, Cross Rolling in Mechanical Engineering [in Russian], Moscow, MASHGIZ (1957). V. S. Smirnov, V. P. Anisiforov, M. V. Vasil’chikov, S. P. Granovskii, I. I. Kazanskaya, A. D. Kuz’min, N. V. Mekhov, and I. S. Pobedin, Cross Rolling in Mechanical Engineering [in Russian], Moscow, MASHGIZ (1957).
6.
go back to reference V. Yu. Rubtsov and O. I. Shevchenko, “Developing the production of grinding balls of 5th hardness group at EVRAZNTMK JSC,” in: Conference Proceedings “Current Problems of Modern Science, Technology and Education: Abstracts of 76th Intern. Sci.-Tech. Conf.” [In Russian], V. 1. Magnitogorsk, Magnitogorsk. Gos. Tech. Un-ta im. G. I. Nosova (2018), pp. 117–118. V. Yu. Rubtsov and O. I. Shevchenko, “Developing the production of grinding balls of 5th hardness group at EVRAZNTMK JSC,” in: Conference Proceedings “Current Problems of Modern Science, Technology and Education: Abstracts of 76th Intern. Sci.-Tech. Conf.” [In Russian], V. 1. Magnitogorsk, Magnitogorsk. Gos. Tech. Un-ta im. G. I. Nosova (2018), pp. 117–118.
7.
go back to reference V. Yu. Rubtsov, O. I. Shevchenko, and N. M. Zagrebailov, “Operating range of ball rolling mill parameters,” in: Youth and Science: Conference Proceedings of the International Workshop (May 25, 2018) [In Russian], in 2 vols., 1, Nizhniy Tagil, NTI (branch) UrFU (2018), pp. 18–23. V. Yu. Rubtsov, O. I. Shevchenko, and N. M. Zagrebailov, “Operating range of ball rolling mill parameters,” in: Youth and Science: Conference Proceedings of the International Workshop (May 25, 2018) [In Russian], in 2 vols., 1, Nizhniy Tagil, NTI (branch) UrFU (2018), pp. 18–23.
8.
go back to reference V. Yu. Rubtsov, “Barrel size of a mill roll: influence on ball quality,” Aktual’nye Problemy Sovremennoi Nauki, Tekhniki i Obrazovaniya, 1, 90–93 (2017). V. Yu. Rubtsov, “Barrel size of a mill roll: influence on ball quality,” Aktual’nye Problemy Sovremennoi Nauki, Tekhniki i Obrazovaniya, 1, 90–93 (2017).
9.
go back to reference I. K. Galim’yanov, “Influence of temperature and structure of a round billet on fracture of grinding balls,” Chernye Metally, No. 10, 63–66 (2019). I. K. Galim’yanov, “Influence of temperature and structure of a round billet on fracture of grinding balls,” Chernye Metally, No. 10, 63–66 (2019).
10.
go back to reference K. N. Shvedov, I. K. Galim’yanov, and M. A. Kazakovtsev, “Production of grinding balls with high surface and normalized volumetric hardness,” Metallurg, No. 6, 16–22 (2020). K. N. Shvedov, I. K. Galim’yanov, and M. A. Kazakovtsev, “Production of grinding balls with high surface and normalized volumetric hardness,” Metallurg, No. 6, 16–22 (2020).
11.
go back to reference A. A. Sidorov, A. A. Semenov, I. E. Lanovenko, I. K. Galimyanov, R. A. Il’inykh, and A. Yu. Bespamyatnykh, “Computer simulation of heat treatment process of grinding balls,” Metallurg, No. 7, 35–43 (2021). A. A. Sidorov, A. A. Semenov, I. E. Lanovenko, I. K. Galimyanov, R. A. Il’inykh, and A. Yu. Bespamyatnykh, “Computer simulation of heat treatment process of grinding balls,” Metallurg, No. 7, 35–43 (2021).
12.
go back to reference Z. Hu, B. Wang and Z. Zheng, “Research and industrialization of near-net rolling technology used in shaft parts,” Front. Mech. Eng., 13, 17–24 (2018).CrossRef Z. Hu, B. Wang and Z. Zheng, “Research and industrialization of near-net rolling technology used in shaft parts,” Front. Mech. Eng., 13, 17–24 (2018).CrossRef
13.
go back to reference J. Tomczak, Z. Pater, and T. Bulzak, “Designing of screw impressions in the helical rolling of balls,” Arch. Civ. Mech., 14 (1), 104–113 (2014).CrossRef J. Tomczak, Z. Pater, and T. Bulzak, “Designing of screw impressions in the helical rolling of balls,” Arch. Civ. Mech., 14 (1), 104–113 (2014).CrossRef
14.
go back to reference Z. Pater, “Analysis of the helical-wedge rolling process for producing a workholding bolt,” Metalurgija, 53 (4), 653–656 (2014). Z. Pater, “Analysis of the helical-wedge rolling process for producing a workholding bolt,” Metalurgija, 53 (4), 653–656 (2014).
15.
go back to reference G. A. Berti, L. Quagliato, and M. Monti, “Set-up of radial-axial ring-rolling process: process worksheet and ring geometry expansion prediction,” Intern. Int. J. Mech. Sci., 99, 58–71 (2015).CrossRef G. A. Berti, L. Quagliato, and M. Monti, “Set-up of radial-axial ring-rolling process: process worksheet and ring geometry expansion prediction,” Intern. Int. J. Mech. Sci., 99, 58–71 (2015).CrossRef
16.
go back to reference J. Tomczak, Z. Pater, and T. Bulzak, “The flat wedge rolling mill for forming balls from heads of scrap railway rails,” Arch. Metall. Mater., 63, 5–12 (2018). J. Tomczak, Z. Pater, and T. Bulzak, “The flat wedge rolling mill for forming balls from heads of scrap railway rails,” Arch. Metall. Mater., 63, 5–12 (2018).
Metadata
Title
Computer Simulation of Double-Threaded Rolling in Production of Grinding Balls with a Diameter of 100 mm from Alloy Steels
Authors
D. L. Shvarts
I. K. Galim’yanov
A. A. Semenov
Publication date
01-07-2022
Publisher
Springer US
Published in
Metallurgist / Issue 1-2/2022
Print ISSN: 0026-0894
Electronic ISSN: 1573-8892
DOI
https://doi.org/10.1007/s11015-022-01303-4

Other articles of this Issue 1-2/2022

Metallurgist 1-2/2022 Go to the issue

Premium Partners