Название |
Study of dependence of hardness of steel cylindrical parts on technological parameters |
Библиографический список |
1. Gilev А. V., Chesnokov V. G., Lavrova N. B., Khomich L. V., Gileva N. N., Korostovenko L. P. Basics of operation of mining machines and equipment. Krasnoyarsk: Sibirskiy federalny universitet, 2011. 276 p. 2. Vildeman V. E., Tretyakov М. P., Tretyakova Т. V., Bulbovich R. V., Slovikov S. V., Babushkin А. V., Ilyinych А. V., Lobanov D. S., Ipatova А. V. Experimental studies of properties of materials under complex thermomechanical effects. Moscow: Izdatelstvo fiziko-matematicheskoy i tekhnicheskoy literatury. 2012. 204 p. 3. Olt J. J., Maksarov V. V., Krasnyy V. A. Study of bearing units wear resistance of engines career dump trucks, working in fretting corrosion conditions. Journal of Mining Institute. 2019. Vol. 235. pp. 70–77. 4. Maksarov V. V., Olt J. J., Krasnyy V. A. Provision of adhesion strength of gasthermal coatings on piston rings of quarry transport engines. Journal of Mining Institute. 2018. Vol. 229. pp. 77–83. 5. Maisuradze M. V., Kuklina A. A. Numerical and experimental investigation of the heat treated steel part microstructure and hardness. Materials Science Forum. 2019. Vol. 946 MSF. pp. 346–350. 6. Llorca-Isern N., Biserova-Tahchieva A., Lopez-Jimenez I., Roca A., Calliari I., Cabrera J. M. Influence of severe plastic deformation in phase transformation of superduplex stainless steels. Journal of Materials Science. 2019. Vol. 54, Iss. 3. pp. 2648–2657. 7. Xiao G., Xia Q., Long J., Chen W. Research on the forming quality and mechanical properties of cylindrical spun parts with ultrafine-grained structure during power spinning. The International Journal of Advanced Manufacturing Technology. 2018. Vol. 97, Iss. 5–8. pp. 2979–2986. 8. Agrawal A. K., Singh A. Limitations on the hardness increase in 316l stainless steel under dynamic plastic deformation. Materials Science and Engineering: A. 2017. Vol. 687. pp. 306–312. 9. Milad M., Zreiba N., Elhalouani F., Baradai C. The effect of cold work on structure and properties of aisi 304 stainless steel. Journal of Materials Processing Technology. 2008. Vol. 203, Iss. 1–3. pp. 80–85. 10. Kral P., Dvorak J., Sklenicka V., Kucharova K., Kvapilova M., Takizawaa Y., Masuda T., Horita Z., Svobodova M. Microstructure refinement in martensitic creep resistant steel via severe plastic deformation. NANOCON 2018 – Conference Proceedings, 10th Anniversary International Conference on Nanomaterials – Research and Application. 2019. pp. 597–602. 11. Pazilova U. А., Khlusova Е. I., Knyazyuk Т. V. Influence of hot plastic deformation modes on the structure and properties of hardened hot-rolled economically alloyed high-strength steel. Neorganicheskie Materialy: Prikladnye Issledovaniya. 2018. Vol. 9. No. 6. pp. 1051–1059. 12. Gaydar S. М. Experiment planning and analysis. Moscow: FGNU "Rosinformagrotekh", 2015. 548 p. 13. Androsenko О. S., Mayachenko Е. P. Mathematical methods of experiment planning in the study of the metal heat treatment process. Prilozhenie matematiki v ekonomicheskikh i technicheskikh issledovaniyakh. 2014. No.1 (4). pp. 219–225. 14. Antonyuk F. I, Kalmykov V. V., Mkrtchyan А. B. Application of statistical analysis methods to estimate the change in cylinder diameter during cold upsetting. Fundamentalnye issledovaniya. 2016. No.8-1. pp. 9–13. 15. Antonyuk F. I., Kuznetsov I. V., Sorokin P. S., Ermachkov R. О. Technological factors of increasing the accuracy of diametrical sizes of piece (measured) billets made by a cold upsetting. Sovremennye naukoemkie tekhnologii. 2018. No.7. pp. 14–19. 16. Ermachkov R. О., Vyatkin А. G. Influence of methods for adjusting the technological system on accuracy of height sizes at the upsetting on the hydraulic press. Elektronny zhurnal “Nauka, tekhnika i obrazovanie”. 2019. No.2 (24). pp. 16–24. 17. Lavrinenko V. Yu., Govorov V. А. Development of a mathematical model for the process of backward extrusion of forgings “glass” with minimal non-uniform thickness. Izvestiya Tulskogo gosudarstvennogo universiteta. Technicheskie nauki. 2018. Iss. 6. pp. 39–49. 18. Lanskoy Е. N., Antonyuk F. I. Analysis of the accuracy of cold extrusion of hollow forgings by statistical methods. Kuznechno-shtampovochnoe proizvodstvo. Obrabotka materialov davleniem. 2001. No.5. pp. 14–20. 19. Panfilov G. V., Sukhonin V. А., Kalinin S. S. Planning of a multifactor experiment on radial stamping of end sections of a cross-shaped profile. Izvestiya Tulskogo gosudarstvennogo universiteta. Tekhnicheskie nauki. 2016. Iss. 7. Part. 2. pp. 9–17. 20. Petrov V. I. On the influence of tool geometry on the force of backward semi-hot extrusion. Izvestiya Tulskogo gosudarstvennogo universiteta. Avtomobilny transport. 2003. Iss. 7. pp. 124–127. 21. Petrov V. I. Technological features of semi-hot extrusion of drive chain rollers. Izvestiya Tulskogo gosudarstvennogo universiteta. Mekhanika deformiruemogo tverdogo tela i obrabotka metallov davleniem. 2004. Iss. 3. pp. 93–100. 22. Petrov V. I. Features of processes of semi-hot stamping of alloy steels. Izvestiya Tulskogo gosudarstvennogo universiteta. Technicheskie nauki. 2005. Iss. 9. pp. 124–127. |