Название |
Investigation of parameters of the stressed and deformed state in the process
of screw rolling on a three-roll mill |
Информация об авторе |
Ural Federal University named after the first President of Russia B. N. Yeltsin, Ekaterinburg, Russia:
D. A. Pavlov, Cand. Eng., Associate Prof., Dept. of Metal Forming, e-mail: d.a.pavlov@urfu.ru M. V. Erpalov, Cand. Eng., Associate Prof., Dept. of Metal Forming |
Библиографический список |
1. Potapov I. N., Polukhin P. I. Screw rolling technology. 2nd edition, revised and enlarged. Moscow: Metallurgiya, 1990. 344 p. 2. Potapov I. N., Polukhin P. I., Kharitonov Е. А., Galkin S. P. Radial shear rolling of section metal. Theory and technology of metal- and energy-saving metal forming processes. Moscow: Metallurgiya, 1986. pp. 72–78. 3. Fomichev I. А. Skew rolling. Moscow: Metallurgizdat, 1963. 262 p. 4. Teterin P. К. Theory of transverse and helical rolling. 2nd edition, revised and enlarged. Moscow: Metallurgiya, 1983. 270 p. 5. Osadchiy V. Ya., Getiya I. G., Mukhin Yu. А. Features of the rolling process on a cone-roll piercing mill. Izvestiya vuzov. Chernaya metallurgiya. 1974. No. 11. pp. 8–12. 6. Danchenko V. N., Kolikov А. P., Romantsev B. А. Pipe production technology. Moscow: Intermet Inzhiniring, 2002. 640 p. 7. Budnikov А. S., Kharitonov Е. А., Iskhakov R. V. Investigation of plugless screw rolling of seamless pipes with increased reduction in diameter. Stal. 2020. No. 9. pp. 26–28. 8. Galkin S. P., Kharitonov Е. А., Romanenko V. P. Development of screw rolling for the production of hollow billets. Stal. 2009. Vol. 8. pp. 54–57. 9. Romantsev B. А., Goncharuk А. V., Aleshchenko А. S. Screw piercing in pipe production. Moscow: MISiS, 2017. 262 p. 10. Nikulin А. N., Streletskiy V. V. Deformation effect of screw rolling on continuously cast metal. Metallurg. 2005. No. 3. pp. 97–101. 11. Galkin S. P., Gamin Yu. V., Aleshchenko А. S., Romantsev B. А. Modern development of elements of theory, technology and mini-mills of radial-shear rolling. Chernye Metally. 2021. No. 12. pp. 51–58. 12. Akopyan T. K., Belov N. A., Aleshchenko A. S. et al. Formation oft he gradient microstructure of a new Al alloy based on the Al–Zn–Mg–Fe–Ni system processed by radial-shear rolling. Materials Science and Engineering: A. 2019. Vol. 746. pp. 134–144. 13. Skripalenko М. М., Galkin S. P., Hye Jae Soon et. al. Prediction of metal destruction during helical rolling in a two-roll mill. Metallurg. 2017. No. 11. pp. 11–18. 14. Skripalenko М. М., Chan Ba Hui, Romantsev B. А. et al. Investigation of the features of the stress-strain state of billets under different schemes of helical rolling using computer simulation. Stal. 2019. No. 2. pp. 35–39. 15. Erpalov М. V., Nukhov D. Sh., Bogatov А. А. Theoretical study of the change in the shape of the funnel at the rear end of the billet during piercing. Izvestiya vuzov. Chernaya metallurgiya. 2013. No. 2. pp. 16–18. 16. Skripalenko М. М., Galkin S. P., Hye Jae Soon et al. Prediction of probable failure during radial shear rolling of continuously cast copper billets based on computer simulation. Metallurg. 2018. No. 9. pp. 7–12. 17. Qiu P., Xiao H., Li M. Effect of Non-uniform Temperature Field on Piece Rolled by Three-roll Cross Wedge Rolling. Applied Mechanics and Materials. 2009. Vol. 16–19. pp. 456–461. 18. Nikulin А. N. Screw rolling. Stresses and strains. Moscow: Metallurgizdat, 2015. 380 p. 19. Bogatov А. А., Panov Е. I. Effect of stress-strain state during helical rolling on the structure and plasticity of metal and alloys. Metallurg. 2013. No. 5. pp. 75–81. 20. Zhao Y., Mao J. Effects of Feed Angle on Mannesmann Piercing in Drill Steel Production. Advanced Materials Research. 2014. Vol. 915–916. pp. 996–999. 21. Kharitonov Е. А., Romanenko V. P., Budnikov А. S. Simulation of the tube rolling process on a three-roll screw rolling mill. Stal. 2014. No. 10. pp. 44–47. 22. Kharitonov Е. А., Romanenko V. P., Budnikov А. S. Development of a method for calculating deformation parameters in the rolling of sleeves in a three-roll helical rolling mill. Izvestiya vuzov. Chernaya metallurgiya. 2016. No. 3. pp. 167–172. 23. Panov Е. I., Voskanyants А. А., Ivanov А. V. et al. Three-dimensional finite element modeling of the process of helical rolling of a solid billet. Tekhnologiya legkikh splavov. 2001. No. 5–6. pp. 54–59. 24. Pater Z., Lukasz W., Walczuk P. Comparative Analysis of Tube Piercing Processes in the Two-Roll and Three-Roll Mills. Advances in Science and Technology Research Journal. 2019. Vol. 13. Iss. 1. pp. 37–45. 25. Pater Z., Bartnicki J., Kazanecki J. 3D Finite Elements Method (FEM) Analysis of Basic Process Parameters in Rotary Piercing Mill. Metalurgija. 2012. Vol. 51. Iss. 4. pp. 501–504. 26. Merkulov D. V. Forward and backward slip in helical rolling. Metally. 2008. No. 2. pp. 38–43. 27. Li S. Z., Meng W. H., Hu L. W., Ding B. Research on the tendency of inner crack during 3-roll skew rolling process of round billets. Advanced Materials Research. 2011. Vol. 145. pp. 238–242. 28. Galkin S. P., Stebunov S. A., Aleshchenko A. S. et al. Modeling and experimental evaluation of annular fracture conditions in hot radial shear rolled products. Metallurg. 2020. No. 3. pp. 55–61. 29. Bogatov А. А., Pavlov D. А. Investigation of the deformed state of the metal during the reduction of the billet in a three-roll screw rolling mill. Metallurg. 2017. No. 4. pp. 66–70. 30. Kolmogorov V. L. Mechanics of metal forming. Textbook for universities. 2nd edition, revised and enlarged. Yekaterinburg: Izdatelstvo UGTU-UPI, 2001. 836 p. |