Obrabotka Metallov 2019 Vol. 21 No. 3

OBRABOTKAMETALLOV Vol. 21 No. 3 2019 57 EQUIPMENT. INSTRUMENTS 5. Merrit D. Teoriya avtokolebanii metallorezhushchikh stankov [Theory of the self-oscillations of the metal cutting machines]. Konstruirovanie i tekhnologiya mashinostroeniya = Design and technology of mechanical engineering , 1965, no. 4, pp. 32–38. (In Russian). 6. Hahn R.S On the theory of regenerative chatter in precision grinding operation . Transactions of American Society of Mechanical Engineers , 1954, vol. 76, pp. 593–597. 7. Balachandran B. Nonlinear dynamics of milling process. Philosophical Transactions of The Royal Society A. Mathematical Physical and Engineering Sciences , 2001, vol. 359 (1781), pp. 793–819. 8. Litak G. Chaotic vibrations in a regenerative cutting process. Chaos Solitons & Fractals , 2002, vol. 13, pp. 1531–1535. DOI: 10.1016/S0960-0779(01)00176-X. 9. Litak G., Rusinek R. Dynamics of a stainless steel turning process by statistical and recurrence analyses. Mechanic , 2012, vol. 47 (6), pp. 1517–1526. DOI: 10.1007/s11012-011-9534-x. 10. Voronov S.A., Nepochatov A.V., Kiselev I.A. Kriterii otsenki ustoichivosti protsessa frezerovaniya nezhestkikh detalei [Estimation criteria of the milling process stability of the flexible parts]. Izvestiya vysshikh uchebnykh zavedenii. Mashinostroenie = Proceedings of Higher Educational Institutions. Маchine Building , 2011, no. 1, pp. 50–62. 11. Gorodetsky Yu.I. Teoriya nelineinykh kolebanii i dinamika stankov [Theory of nonlinear oscillations and machine tool dynamics]. Vestnik Nizhegorodskogo universiteta im. N.I. Lobachevskogo. Seriya: Matematicheskoe modelirovanie i optimal’noe upravlenie = Vestnik of Lobachevsky State University of Nizhni Novgorod. Series: Mathematical modeling and optimal control , 2001, no. 2, pp. 69–88. 12. Namachchivaya N.S., Beddini R. Spindle speed variation for the suppression of regenerative chatter. Journal of Nonlinear Science , 2003, vol. 13, pp. 265–288. 13. Wahi P., ChatterjeeA. Self-interrupted regenerativemetal cutting in turning. Journal of Non-LinearMechanics , 2008, vol. 43, pp. 111–123. DOI: 10.1016/j.ijnonlinmec.2007.10.010. 14. Warminski J., Litak G., Lipski J., Wiercigroch M. Cartmell M.P. Chaotic vibrations in regenerative cutting process. IUTAM/IFToMM Symposium on Synthesis of Nonlinear Dynamical Systems , 2000, vol. 73, pp. 275–284. 15. Stepan G., Szalai R. Insperger T. Nonlinear dynamics of high-speed milling subjected to regenerative effect. Nonlinear dynamics of production systems . Weinheim, Wiley-VCH, 2004, pp. 111–127. 16. Stepan G. Modelling nonlinear regenerative effects in metal cutting. Philosophical Transactions of the Royal Society a Mathematical Physical and Engineering Sciences , 2001, vol. 359, pp. 739–757. DOI: 10.1098/ rsta.2000.0753. 17. Gouskov A.M., Voronov S.A., Paris H., Batzer S.A. Nonlinear dynamics of a machining system with two interdependent delays. Communications in Nonlinear Science and Numerical Simulation , 2002, vol. 7, pp. 207–221. DOI: 10.1016/s1007-5704(02)00014-x. 18. Voronov S.A., Kiselev I.A. Nelineinye zadachi dinamiki protsessov rezaniya [Nonlinear problems of the dy- namics of cutting processes]. Mashinostroenie i inzhenernoe obrazovanie = Mechanical engineering and engineer- ing education , 2017, no. 2 (51), pp. 9–23. 19. Vasin S.A., Vasin L.A. Sinergeticheskii podkhod k opisaniyu prirody vozniknoveniya i razvitiya avtokoleba- nii pri tochenii [Synergetic approach to describing the nature and development of self-oscillations in turning]. Nau- koemkie tekhnologii v mashinostroenii = Science Intensive Technologies in Mechanical Engineering , 2012, no. 1, pp. 11–16. 20. Rusinez 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 . 21. Rusinez R., Wiercigroch M., Wahi P. Modeling of frictional chatter in metal cutting. International Journal of Mechanical Sciences, 2014, vol. 89, pp. 167–176. DOI: 10.1016/j.ijmecsci.2014.08.020. 22. Grabec I. Chaos generated by the cutting process. Physics Letter A , 1986, vol. 117, no. 8, pp. 384–386. DOI: 10.1016/0375-9601(86)90003-4 . 23. Lipski J., Litak G., Rusinek R., Szabelski K., Teter A., Warminski J. Zaleski K. Surface quality of a work material’s influence on the vibrations of the cutting process. Journal of Sound and Vibration , 2002, vol. 252, pp. 737– 739. DOI: 10.1006/jsvi.2001.3943. 24. Wiercigroch M., Budak E. Sources of nonlinearities, chatter generation and suppression in metal cutting. Philosophical Transactions of The Royal Society A: Mathematical Physical and Engineering Sciences , 2001, no. 359, pp. 663–693. DOI: 10.1098/rsta.2000.0750 . 25. Wiercigroch M. Krivtsov A.M. Frictional chatter in orthogonal metal cutting. Philosophical Transactions of The Royal Society A: Mathematical Physical and Engineering Sciences , 2001, vol. 359, pp. 713–738. DOI: 10.1098/ rsta.2000.0752.

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