Information properties of frequency characteristics of dynamic cutting systems in the diagnosis of tool wear

OBRABOTKAMETALLOV Vol. 23 No. 3 2021 MATERIAL SCIENCE EQUIPMENT. INSTRUMENTS 6 4 9. Milfelner M., Cus F., Balic J. An overview of data acquisition system for cutting force measuring and optimization in milling. Journal of Materials Processing Technology Volumes, 2005, vol. 164–165, pp. 1281–1288. DOI: 10.1016/ j . jmatprotec.2005.02.146. 10. Kozochkin M.P., Sabirov F.S., Seleznev A.E. Vibroakusticheskii monitoring lezviinoi obrabotki zagotovok iz zakalennoi stali [Vibroacoustic monitoring of cutting edge machining of hardened steel]. Vestnik MGTU «Stankin» = Vestnik MSUT “Stankin”, 2018, no. 1 (44), pp. 23–30. 11. Kozochkin M.P. Mnogoparametricheskaya diagnostika tekhnologicheskikh sistem dlya obrabotki materialov rezaniem [Multivariate diagnostics of technological systems for processing materials by cutting]. Vestnik MGTU «Stankin» = Vestnik MSUT “Stankin”, 2014, no. 1 (28), pp. 13–19. 12. Barzov A.A., Gorelov V.A., Igonkin B.A. Akustoelektricheskaya diagnostika protsessa rezaniya polimernykh kompozitsionnykh materialov [Acoustoelectric diagnostics of the cutting process of polymer composite materials]. Aviatsionnaya promyshlennost’ = Aviation Industry, 1986, no. 12, p. 36. 13. Bhuiyan M., Choudhury I., Nukman Y. An innovative approach to monitor the chip formation effect on tool state using acoustic emission in turning. International Journal of Machine Tools and Manufacture, 2012, vol. 58, pp. 19–28. DOI: 10.1016/ j.ijmachtools.2012.02.001. 14. Rehorn A.G., Jiang J., Orban P.E. State-of-the-art methods and results in tool condition monitoring: a review. International Journal of Advanced Manufacturing Technology, 2005, vol. 26, pp. 693–710. DOI: 10.1007/s00170004-2038-2. 15. Jemielniak K., Arrazola P. Application of AE and cutting force signals in tool condition monitoring in micromilling. CIRP Journal of Manufacturing Science and Technology, 2008, vol. 1 (2), pp. 97–102. DOI: 10.1016/ j.cirpj.2008.09.007. 16. Zakovorotny V.L., Ladnik I.V., Dhande S.G. A method for characterization of machine-tools dynamic parameters for diagnostic purposes. Journal of Materials Processing Technology, 1995, vol. 53 (3–4), pp. 588–600. DOI: 10.1016/0924-0136(94)01745-M. 17. Zakovorotny V.L., Flek M.B. Dinamika protsessa rezaniya. Sinergeticheskii podkhod [The dynamics of the cutting process. Synergistic approach]. Rostov-on-Don, Terra Publ., 2005. 880 p. 18. Astakhov V.P. Tribology of metal catting. Elsevier Science, 2006. 312 p. ISBN 0080466850. 19. Makarov A.D. Optimizatsiya protsessov rezaniya [Optimization of cutting processes]. Moscow, Mashinostroenie Publ., 1976. 278 p. 20. Kuzin V.V., Kozochkin M.P., Grigor’ev S.N., Fedorov S.Y. Chuvstvitel’nost’ vibroakusticheskogo signala k izmeneniyu sostoyaniya poverkhnostnogo sloya pri trenii [Sensitivity of a vibroacoustic signal to a change in the state of the surface layer of ceramics during frictio]. Novye ogneupory = New Refractories, 2021, no. 5, pp. 141–146. DOI: 10.17073/1683-4518-2021-5-141-146. 21. Zakovorotny V.L., Gvindjiliya V.E. Self-organization and evolution in dynamic friction systems. Journal of Vibroengineering, 2021, vol. 23 (6), pp. 1418–1432. DOI: 10.21595/jve.2021.22033. 22. Kozochkin M.P. Vliyanie dinamicheskikh kharakteristik stanochnykh uzlov na vibratsii pri rezanii [The influence of the dynamic characteristics of machine components on vibrations during cutting]. STIN, 2014, no. 2, pp. 4–9. (In Russian). 23. Kozochkin M.P., Maslov A.R., Sabirov F.S., Porvatov A.N. Diagnostika i sertifikatsiya metallorezhushchego oborudovaniya [Diagnostics and certification of metal-cutting equipment]. Moscow, Innovatsionnoe mashinostroenie Publ., 2017. 240 p. 24. Zakovorotnyi V.L., Gvindjiliya V.E. Influence of speeds of forming movements on the properties of geometric topology of the part in longitudinal turning. Journal of Manufacturing Processes, 2024, vol. 112, pp. 202–213. DOI: 10.1016/j.jmapro.2024.01.03. 25. Zakovorotnyi V.L., Gvindjiliya V.E. Evolution of the dynamic cutting system with irreversible energy transformation in the machining zone. Russian Engineering Research, 2019, vol. 39 (5), pp. 423–430. DOI: 10.3103/ S1068798X19050204. 26. Lee D.E., Hwang I., Valente C.M.O., Oliveira J.F.G., Dornfeld D.A. Precision manufacturing process monitoring with acoustic emission. International Journal of Machine Tools and Manufacture, 2006, vol. 46 (2), pp. 176–188. DOI: 10.1016/ j.ijmachtools.2005.04.001. 27. Liu Z., Lang Z.-Q., Gui Y., Zhu Y.-P., Laalej H. Digital twin-based anomaly detection for real-time tool condition monitoring in machining. Journal of Manufacturing Systems, 1995, vol. 75, pp. 163–173. DOI: 10.1016/j. jmsy.2024.06.004.

RkJQdWJsaXNoZXIy MTk0ODM1