Obrabotka Metallov 2021 Vol. 23 No. 1

OBRABOTKAMETALLOV Vol. 23 No. 1 2021 43 TECHNOLOGY References 1. Artamonov E.V. Prochnost’ i rabotosposobnost’ smennykh tverdosplavnykh plastin sbornykh rezhushchikh instrumentov [Durability and working capacity of retro fi ttable hard alloy blades of assembly cutting tools]. Tyumen, Vektor Buk Publ., 2003. 190 p. ISBN 5-88465-416-2. 2. Zorev N.N., Uteshev M.H. Untersuchung der Kintakt-spannunger auf den Arbeits- fl achen des Werkzeugs miteiner Schneidenabrundung. Berichte der Internationalen Forschungesgemein-schaft fur mechanische produktionstechniktionstechnik , 1971, vol. 20-1, pp. 31–32. 3. Metallorezhushchii instrument, 2019–2020 [Metal cutting tool, 2019–2020]. Kirovgrad hard alloys plant. Kirovgrad, 2020. 284 p. Available at: http://www.kzts.ru/core/user_ f i les/psm-2014.pdf (accessed 23.01.2021). 4. Vasin S.A., Vereshchaka A.S., Kushner V.S. Rezanie materialov: termomekhanicheskii podkhod k sisteme vzaimosvyazei pri rezanii [Cutting materials: thermomechanical approach to the system of relationships in cutting]. Moscow, Bauman MSTU Publ., 2001. 448 p. ISBN 5-7038-1823-0. 5. Grechishnikov V.A., Chemborisov N.A., Stupko V.B., Safarov D.T., Kuchina O.B., Grigor’ev S.N., Skhirtladze A.G. Protsessy formoobrazovaniya i instrumental’naya tekhnika [Shaping processes and tools]. Staryi Oskol, TNT Publ., 2012. 328 p. ISBN 978-5-94178-326-7. 6. Lapshin V.V., Zakharevich E.M., Grubyi S.V. Machining of linear negative matrices for fresnel lenses and prisms. Russian Engineering Research , 2016, vol. 36, iss. 10, pp. 826–830. DOI: 10.3103/S1068798X16100105. 7. Carceanu I., Cosmeleat ǎ G., Ghiban B., Balanescu M., Nedelcu I. High performance composite materials created through advanced techniques. Materiale Plastice , 2007, vol. 44, iss. 4, pp. 321–325. 8. Ferri C., Minton T., Ghani S.B., Cheng K. Internally cooled tools and cutting temperature in contamination- free machining. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science , 2014, vol. 228, iss. 1, pp. 135–145. DOI: 10.1177/0954406213480312. 9. Kümmel J., Braun D., Gibmeier J., Schneider J., Greiner C., Schulze V., Wanner A. Study on micro texturing of uncoated cemented carbide cutting tools for wear improvement and built-up edge stabilization. Journal of Materials Processing Technology , 2015, vol. 215, pp. 62–70. DOI: 10.1016/j.jmatprotec.2014.07.032. 10. Gupta M.K., Sood P.K., Singh G., Sharma V.S. Sustainable machining of aerospace material – Ti (grade-2) alloy: modelling and optimization. Journal of Cleaner Production , 2017, vol. 147, pp. 614–627. DOI: 10.1016/j. jclepro.2017.01.133. 11. Murthy K.S. Rajendran I. Optimization of end milling parameters under minimum quantity lubrication using principal component analysis and grey relational analysis. Journal of the Brazilian Society of Mechanical Sciences and Engineering , 2012, vol. 34, iss. 3, pp. 253–261. DOI: 10.1590/S1678-58782012000300005. 12. Neugebauer R., Hochmuth C. Schmidt G., Dix M. Energy ef fi cient process planning based on numerical simulations. Advanced Materials Research , 2011, vol. 223, pp. 212–221. DOI: 10.4028/www.scienti fi c.net/ AMR.223.212. 13. Nurulamin A., Jaafar I., Patwari A.U., Zubaire W. Role of discrete nature of chip formation and natural vibrations of system components in chatter formation during metal cutting. IIUM Engineering Journal , 2010, vol. 11 (1), pp. 124–126. 14. Tangjitsitcharoen S., Moriwaki T. Intelligent monitoring and identi fi cation of cutting states of chips and chatter on CNC turning machine. Journal of Manufacturing Processes , 2008, vol. 10, pp. 40–46. DOI: 10.1016/j. jmatprotec.2007.04.043. 15. Patwari A., Amin N., Faris W. Investigations of formation of chatter in a non-wavy surface during thread cutting and turning operations. Advanced Materials Research , 2010, vol. 83, pp. 637–645. DOI: 10.4028/www. scienti fi c.net/AMR.83-86.637. 16. Tillmann W., Schaak C., Biermann D., Abmuth R., Goeke S. Robot based deposition of WC-Co HVOF coatings on HSS cutting tools as a substitution for solid cemented carbide cutting tools. IOP Conference Series: Materials Science and Engineering , 2017, vol. 181, iss. 1, p. 012011. DOI: 10.1088/1757-899X/181/1/012011. 17. Zhang H., Fang Z.Z., Lu Q. Characterization of a bilayer WC-Co hardmetal using Hertzian indentation technique. International Journal of Refractory Metals and Hard Materials , 2009, vol. 27, iss. 2, pp. 317–322. DOI: 10.1016/j.ijrmhm.2008.07.014. 18. Zhang C.L., Yue X., JiangY.T., ZhengW. Ahybrid approach ofANN and HMM for cutting chatter monitoring. Advanced Materials Research , 2010, vol. 97, pp. 3225–3232. DOI: 10.4028/www.scienti fi c.net/AMR.97-101.3225. 19. Artamonov E.V., Tveryakov A.M., Shtin A.S. Ustanovka dlya diagnostiki temperatury maksimal’noi rabotosposobnosti smennykh rezhushchikh plastin na osnove izmeneniya elektromagnitnykh svoistv tverdykh splavov [Installation for diagnostics of temperature of the maximum operability of the replaceable cutting plates on

RkJQdWJsaXNoZXIy MTk0ODM1