Zakovorotny V.L., Gvindjiliya V.E. 2019 Vol. 21 No. 4

OBRABOTKAMETALLOV Vol. 21 No. 4 2019 45 EQUIPMENT. INSTRUMENTS 24. Namachchivaya N.S., Beddini R. Spindle speed variation for the suppression of regenerative chatter. Journal of Nonlinear Science , 2003, vol. 13, pp. 265–288. 25. Stepan G., Szalai R. Insperger T. Nonlinear dynamics of high-speed milling subjected to regenerative e ff ect. Nonlinear Dynamics of Production Systems , Weinheim, Wiley-VCH, 2004, pp. 111–127. 26. Paris H., Brissaud D., Gouskov A., Guibert N., Rech J. Influence of the ploughing effect on the dynamic behaviour of the self-vibratory drilling head. CIRP Annals – Manufacturing Technology , 2008, vol. 57, pp. 385–388. DOI: 10.1016/j.cirp.2008.03.101. 27. Wahi P., Chatterjee A. Self-interrupted regenerative metal cutting in turning. International Journal of Non- Linear Mechanics , 2008, vol. 43, pp. 111–123. DOI: 10.1016/j.ijnonlinmec.2007.10.010. 28. Moradi H., Bakhtiari-Nejad F., Movahhedy M.R., Ahmadian M.T. Nonlinear behaviour of the regenerative chatter in turning process with a worn tool. Mechanism and Machine Theory , 2010, vol. 45 (8), pp. 1050–1066. DOI: 10.1016/j.mechmachtheory.2010.03.014. 29. Dombovari Z., Barton D.A.W., Wilson R.E., Stepan G. On the global dynamics of chatter in the orthogonal cutting model. International Journal of Non-Linear Mechanics , 2011, vol. 46, pp. 330–338. DOI: 10.1016/j. ijnonlinmec.2010.09.016. 30. Litak G., Rusinek R. Dynamics of a stainless steel turning process by statistical and recurrence analyses. Meccanica , 2012, vol. 47 (6), pp. 1517–1526. DOI: 10.1007/s11012-011-9534-x. 31. Zakovorotnyi V.L., Fam T.H. Parametricheskoe samovozbuzhdenie dinamicheskoi sistemy rezaniya [Parametric self-excitation of cutting dynamic system]. Vestnik Donskogo gosudarstvennogo tekhnicheskogo universiteta = Vestnik of Don State Technical University , 2013, vol. 13, no. 5–6 (74), pp. 97–103. DOI: 10.12737/1286. 32. Kondratenko K., Gouskov A., Guskov M., Lorong Ph., Panovko G. Analysis of indirect measurement of cutting forces turning metal cylindrical shells. Vibration Engineering and Technology of Machinery . Cham, Springer, 2014, pp. 929–937. DOI: 10.1007/978-3-319-09918-7_82. 33. Zakovorotnyi V.L. Nelineinaya tribomekhanika [Nonlinear tribomechanical]. Rostov-on-Don, DGTU Publ., 2000. 293 p. ISBN 5-7890-0134-3. 34. Rusinek R., Wiercigroch M., Wahi P. Influence of tool flank forces on complex dynamics of cutting process. International Journal of Bifurcation and Chaos , 2014, vol. 24, no. 9, p. 1450115. DOI: 10.1142/S0218127414501156. 35. Weremczuk A, Rusinek R. Influence of frictional mechanism on chatter vibrations in the cutting process – analytical approach. The International Journal of Advanced Manufacturing Technology , 2016, vol. 89, pp. 2837–2844. DOI: 10.1007/s00170-016-9520-5. 36. Voronov S.A., Ivanov I.I., Kiselev I.A. Issledovaniya protsessa frezerovaniya na osnove redutsirovannoi dinamicheskoi modeli [Investigation of the milling process based on a reduced dynamic model of cutting tool]. Problemy mashinostroeniya i nadezhnosti mashin = Journal of Machinery Manufacture and Reliability , 2015, no. 1, pp. 62–71. (In Russian). 37. Zakovorotnyi V.L., Lukyanov A.D., Gubanova A.A., Khristoforova V.V. Bifurcation of stationary manifolds formed in the neighborhood of the equilibrium in a dynamic system of cutting. Journal of Sound and Vibration , 2016, vol. 368, pp. 174–190. DOI: 10.1016/j. jsv.2016.01.020. 38. Reith M.J., Bachrathy D., Stepan G. Improving the stability of multi-cutter turning with detuned dynamics. Machining Science and Technology , 2016, vol. 20 (3), pp. 440–459. DOI: 10.1080/10910344.2016.1191029. 39. Azvar M., Budak E. Multi-dimensional modeling of chatter stability in parallel turning operation. Proceedings of the 17th International Conference on Machine Design and Production , UMTIK 2016 , Bursa, Turkiye, July 12–15, 2016. 40. Gerasimenko A., Guskov M., Gouskov A., Lorong P., Panovko G. Analytical approach of turning thin-walled tubular parts. Stability analysis of regenerative chatter. Vibroengineering Procedia , 2016, vol. 8, pp. 179–184. 41. Gouskov A., Gouskov M., Lorong Ph., Panovko G. Influence of the clearance face on the condition of chatter self-excitation during turning. International Journal of Machining and Machinability of Materials , 2017, vol. 19 (1), pp. 17–39. 42. Voronov S.A., Kiselev I.A. Nelineinye zadachi dinamiki protsessov rezaniya [Nonlinear problems of dynamics of cutting processes]. Mashinostroenie i inzhenernoe obrazovanie = Mechanical engineering and engineering education , 2017, no. 2 (51), pp. 9–23. 43. Zakovorotnyi V.L., Sankar T., Bordachev E.V. Sistema optimal’nogo upravleniya protsessom glubokogo sverleniya otverstii malogo diametra [The optimal control System by the process of deep hole drilling of small diameter]. STIN = Russian Engineering Research , 1994, no. 12, pp. 22–25. (In Russian). 44. Zakovorotny V.L., Gvindjilia V.E. Influence of kinematic perturbations on shape-generating movement trajectory stability. Procedia Engineering , 2017, vol. 206, pp. 157–162. DOI: 10.1016/j.proeng.2017.10.453.

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