Prediction of chatter stability in turning
DOI:
https://doi.org/10.15587/1729-4061.2019.177291Keywords:
chatter in machining turning, two-degrees-of-freedom dynamic model, delay functionAbstract
A new technology for predicting chatter in turning, based on simulation of the cutting process in time and frequency domains using the Nyquist diagram has been developed. The cutting process is presented as carried out in an elastic closed-loop technological machining system (TMS), taking into account the machining «by trace». The dynamic model is represented as two-degrees-of-freedom system in the direction of the longitudinal and transverse axes of coordinates. The mathematical model is built in accordance with the system approach, in the form of a block diagram of the connection of elements with transfer functions according to Laplace, is non-linear and has a fourth order. Therefore, the simulation is performed numerically using the fourth-order Runge-Kutta procedure. It is shown that when studying chatter, three groups of factors should be taken into account: tool geometry, dynamic parameters and cutting mode, which should be represented as an analogue of the material removal rate. The dynamic parameters of the system are obtained by processing the experimental weight characteristics obtained by striking the system with a special hammer. An application program that allows simulation of the process of regenerative oscillations occurrence in time domain and building the amplitude-phase characteristic of TMS in cutting has been created. The application program performs modeling based on the source data of the cutting conditions and dynamic characteristics of the system. Dynamic characteristics of the system are presented in the form of stiffness and frequency of the main harmonic along the corresponding coordinate axes. The simulation showed that the results completely coincide with the frequency analysis results of the profilogram of the actually machined part that allow recommending this technology for predicting and evaluating chatter and stability in turningReferences
- Nicolescu, M., Frangoudis, C., Semere, D., Archenti, A., Rashid, A. (2015). New paradigm in control of machining system’s dynamics. Journal of Machine Engineering, 15 (3), 117–137.
- Moon, F. C., Kalmár-Nagy, T. (2001). Nonlinear models for complex dynamics in cutting materials. Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences, 359 (1781), 695–711. doi: https://doi.org/10.1098/rsta.2000.0751
- Korendyasev, G. K. (2013). On the physical models of auto-oscillations at the processing of metal. Vestnik nauchno-tehnicheskogo razvitiya, 7 (71), 15–25.
- Altintas, Y. (2012). Manufacturing automation: metal cutting mechanics, machine tool vibrations, and CNC design. Cambridge University Press, 366. doi: https://doi.org/10.1017/cbo9780511843723
- Cypkin, J. S. (1946). Stability of systems with retarding ferd-back. Avtomat. i Telemekh., 7 (2-3), 107–129. Available at: http://www.mathnet.ru/links/5ee3c3be11a608350b9a033b7920668b/at13125.pdf
- Eynian, M. (2014). Frequency Domain Study of Vibrations above and under Stability Lobes in Machining Systems. Procedia CIRP, 14, 164–169. doi: https://doi.org/10.1016/j.procir.2014.03.068
- Mann, B. P., Patel, B. R. (2010). Stability of Delay Equations Written as State Space Models. Journal of Vibration and Control, 16 (7-8), 1067–1085. doi: https://doi.org/10.1177/1077546309341111
- Stephenson, D. A., Agapiou, J. S. (2016). Metal Cutting Theory and Practice. CRC Press, 969. doi: https://doi.org/10.1201/9781315373119
- Virtual CNC. Available at: https://www.malinc.com/products/virtual-cnc/
- Palpandian, P., Prabhu Raja, V., Satish Babu, S. (2013). Stability Lobe Diagram for High Speed Machining Processes: Comparison of Experimental and Analytical Methods – A Review. International Journal of Innovative Research in Science, Engineering and Technology, 2 (3), 747–752.
- Petrakov, Yu. V., Drachev, O. I. (2014). Avtomaticheskoe upravlenie protsessami rezaniya. Stariy Oskol: TNT, 408.
- Tang, A., Liu, Z. (2008). Three-dimensional stability lobe and maximum material removal rate in end milling of thin-walled plate. The International Journal of Advanced Manufacturing Technology, 43 (1-2), 33–39. doi: https://doi.org/10.1007/s00170-008-1695-y
- Mazur, N. P., Vnukov, Yu. N., Grabchenko, A. I., Dobroskok, V. L., Zaloga, V. A., Novoselov, Yu. K., Yakubov, F. Ya.; Mazur, N. P., Grabchenko, A. I. (Eds.) (2013). Osnovy teorii rezaniya materialov. Kharkiv: NTU «KhPI», 534.
- Trybrat, K. O., Petrakov, Yu. V. (2019). Modeliuvannia avtokolyvan pry tokarnomu obroblenni. Naukovi konferentsiyi Ukrainy, innovatsiyi molodi v mashynobuduvanni 2019. Available at: http://imm-mmi.kpi.ua/imm2019/paper/view/17039
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2019 Yuriy Petrakov, Mariia Danylchenko, Andrii Petryshyn
This work is licensed under a Creative Commons Attribution 4.0 International License.
The consolidation and conditions for the transfer of copyright (identification of authorship) is carried out in the License Agreement. In particular, the authors reserve the right to the authorship of their manuscript and transfer the first publication of this work to the journal under the terms of the Creative Commons CC BY license. At the same time, they have the right to conclude on their own additional agreements concerning the non-exclusive distribution of the work in the form in which it was published by this journal, but provided that the link to the first publication of the article in this journal is preserved.
A license agreement is a document in which the author warrants that he/she owns all copyright for the work (manuscript, article, etc.).
The authors, signing the License Agreement with TECHNOLOGY CENTER PC, have all rights to the further use of their work, provided that they link to our edition in which the work was published.
According to the terms of the License Agreement, the Publisher TECHNOLOGY CENTER PC does not take away your copyrights and receives permission from the authors to use and dissemination of the publication through the world's scientific resources (own electronic resources, scientometric databases, repositories, libraries, etc.).
In the absence of a signed License Agreement or in the absence of this agreement of identifiers allowing to identify the identity of the author, the editors have no right to work with the manuscript.
It is important to remember that there is another type of agreement between authors and publishers – when copyright is transferred from the authors to the publisher. In this case, the authors lose ownership of their work and may not use it in any way.