Elastic hones for polishing tooth profiles of heat-treated spur wheels for special applications

OBRABOTKAMETALLOV MATERIAL SCIENCE Том 23 № 3 2021 EQUIPMEN . INSTRUM TS Vol. 6 No. 1 2024 6. BagaiskovYu., Ushakov N.A. Physical and mechanical parameters of gear hones with modifi ed epoxy-polymer bond. Proceedings of the 7th International Conference on Industrial Engineering (ICIE 2021). Springer, 2022, vol. 2, pp. 533–540. DOI: 10.1007/978-3-030-85230-6_63. 7. Kislitsyn V.D., Shadrin V.V., Osorgina I.V., Svistkov A.L. Analiz mekhanicheskikh svoistv poliuretanovykh materialov, izgotovlennykh po rastvornoi i lit’evoi tekhnologii [Analysis of the mechanical properties of polyurethane materials manufactured by mortar and injection technology]. Vestnik Permskogo universiteta. Fizika = Bulletin of Perm University. Physics 2020, iss. 1, pp. 17–25. DOI: 10.17072/1994-3598-2020-1-17-25. 8. Shumilov F.P. Kompozity na osnove lit’evykh poliuretanov, modifi tsirovannykh chastitsami nanouglerodov. Diss. kand. khim. nauk [Composites based on cast polyurethanes modifi ed with nanocarbon. PhD chemical sci. diss.]. St. Petersburg, 2021. 186 p. 9. Bagaiskov Yu. Infl uence of elastic deformation of gear hone teeth on machined gear accuracy. IOP Conference Series: Materials Science and Engineering, 2020, vol. 971, p. 042014. DOI: 10.1088/1757-899X/971/4/042014. 10. Sevast’yanenko G.N., Rabinovich E.S., Yakovchuk Yu.A. Almaznye zubchatye khony na kauchukovykh svyazkakh [Diamond tooth hones on rubber bonds]. Sinteticheskie almazy, 1978, no. 3, pp. 27–28. (In Russian). 11. Graf W. Polish grinding of gears for higher transmission effi ciency. Gear solutions: website, 2016, May 27. Available at: http://gearsolutions.com/features/polish-grinding-of-gears-for-higher-transmission (accessed 07.02.2024). 12. Hood R., Cooper P., Aspinwall D.K., Soo S.L., Lee D.S. Creep feed grinding of γ-TiAl using single layer electroplated diamond superabrasive wheels. CIRP Journal of Manufacturing Science and Technology, 2015, vol. 11, pp. 36–44. DOI: 10.1016/j.cirpj.2015.07.001. 13. Curtis D., Soo S.L., Aspinwall D.K., Mantle A. Evaluation of workpiece surface integrity following point grinding of advanced titanium and nickel based alloys. Procedia CIRP, 2016, vol. 45, pp. 47–50. DOI: 10.1016/j. procir.2016.02.343. 14. Mohan R., Deivanathan R. A review of self-sharpening mechanisms of fi xed abrasive tools. International Journal of Mechanical Engineering and Technology, 2019, vol. 10 (2), pp. 965–974. 15. Anderson D., Warkentin A., Bauer R. Comparison of spherical and truncated cone geometries for single abrasive-grain cutting. .Journal of Materials Processing Technology, 2012, vol. 212 (9), pp. 1946–1953. DOI: 10.1016/j.jmatprotec.2012.04.021. 16. Zhang Q., Zhao Q., Su H., To S. A systematic investigation on the diamond wear mechanism during the dry scratching of WC/Co. International Journal of Refractory Metals and Hard Materials, 2017, vol. 70, pp. 184–190. DOI: 10.1016/j.ijrmhm.2017.10.006. 17. Chen J., Sun T., Su J., Li J., Zhou P., Peng Y., Zhu Y. Novel agglomerated diamond abrasive with excellent micro-cutting and self-sharpening capabilities in fi xed abrasive lapping processes. Wear, 2020, vol. 464–465, p. 203531. DOI: 10.1016/j.wear.2020.203531. 18. Podgursky V., Bogatov A., Yashin M., Sobolev S., Gershman I. Relation between self-organization and wear mechanisms of diamond fi lms. Entropy, 2018, vol. 20 (4), p. 279. DOI: 10.3390/e20040279. 19. Butler-Smith P., Axinte D.A., Daine M. Solid diamond micro-grinding tools: from innovative design and fabrication to preliminary performance evaluation in Ti–6Al–4V. International Journal of Machine Tools and Manufacture, 2012, vol. 59, pp. 55–64. DOI: 10.1016/j.ijmachtools.2012.03.003. 20. Al’tshuller V.M., Gerasimov S.A., Dukhovskoj A.I., Podobryanskij A.V. Sostav almaznogo instrumenta [Diamond tool composition]. Patеnt RF, no. 2358852, 2009. 21. Gerasimov S.A. Sostav almaznogo instrumenta [Diamond tool composition]. Patеnt RF, no. 2489248, 2013. 22. Gerasimov S.A., Dmitrieva N.M., Kosareva T.A., Kasparova E.G. Sostav poliroval’nogo instrumenta so svyazannym abrazivom [Composition of polishing instrument with bound abrasive]. Patent RF, no. 2513429, 2014. Confl icts of Interest The authors declare no confl ict of interest. © 2024 The Authors. Published by Novosibirsk State Technical University. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0).

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