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Mathematical model of identification and automation the process of shaft machining in elastic-deformable condition

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The specification of the low rigidity parts machining process is consider by introducing suitable equations of constrains, which describe additional elastic deformations in one of equations describing the force controlling influence. This paper introduces general and detailed mathematical models of the DS of turning the longitudinal, low rigidity shafts. Research results and examples of their approximation were introduced. Some method of synthesis and examples structure of regulator P were shown for one detailed model of DS under received approximated operational transmittance of DS. The way of controlling the accuracy of shafts turning in the elastic deformable condition and controlling system was described.
Rocznik
Strony
59--72
Opis fizyczny
Bibliogr. 20 poz., tab.
Twórcy
autor
  • Lutsk National Technical University, Lutsk, Ukraine
autor
  • Lublin University of Technology, Institute of Technological Systems of Information, Nadbystrzycka Str. 36, 20-618, Lublin, Poland.
Bibliografia
  • [1] Abakumow A., Taranenko W., Zubrzycki J.: Program modules for the study of characteristics of the dynamic system of machining process (in Polish). Zeszyty Naukowe Politechniki Rzeszowskiej NR 230 MECHANIKA, z. 67 – Modułowe Technologie i Konstrukcje w Budowie Maszyn, Rzeszów 2006. – 99-109.
  • [2] Abakumov A., Taranenko V., Zubrzycki J:. Modeling of characteristics of dynamic system of turning process for axial-symmetric shafts. V-th INTERNATIONAL CONGRESS “MECHANICAL ENGINEERING TECHNOLOGIES, 06” (MT-06), September 20 - 23. 2006, Varna, Bulgaria. PROCEDINGS. Section III. 76-78.
  • [3] Abdulayev N.D., Pietrov J.P. Teoriya i metody proektirovaniya optimalnyh regulyatorov (in Russian) L.: Energoatomizdat, 1985.—278.
  • [4] Besekerskij V.А., Popov Е.P.: Teoriya sistem avtomaticheskogo regulirovaniya. (in Russian) – М.: Nauka, 1972. – 768.
  • [5] Cardi Aa, Firpi Ha, Bement Mt, Liang Sy (2008) Workpiece dynamic analysis and prediction during chatter of turning process. Mechanical Systems and Signal Processing 22: 1481–1494.
  • [6] Chernov E.A., Kuzmin V.P.: Komplektnyje elektroprivody stankov CHPU. (in Russian) – Gorkiy: Volgo-Vyatskoye kn. izd. – vo, 1989. – 320.
  • [7] Frer F., Ortenburger F.: Vvedenije v elektronnuyu techniku regulirovaniya. (in Russian) – Moskva: Energiya, 1973 – 423.
  • [8] Kudinov V.A.: Dinamika stankov (in Russian). – М.: Mashinostroenie, 1967. – 267.
  • [9] Levchenko A., Taranenko V.: Identification and automation of deep-hole drilling. Preoceedings of The 2nd International Conference On Machining and Measurements of Sculptured Surfaces 20-22 September 2000, Krakow, Poland, 149-154.
  • [10] Ratchev S, Liu S, Huang W, Becker A A. A flexible force model for end milling of low-rigidity parts. Journal of Materials Processing Technology. Proceedings of the International Conference in Advances in Materials and Processing Technologies. 2004; 153-154: 134-138.
  • [11] Szabelski J., Taranenko V.: The project of test stand for experimental research of dynamic systems characteristics. Avtomatizacya: Problemi, Idei, Reshenya: Materialy mezhdunar. nauchn.-tekhn. konf., g. Sevastopol, 10-15 Sentebrya 2007. - Sevastopol: Izd-vo SevNTU, 2007. – . 90 – 93.
  • [12] Solomencev J.M., Mitrofanov V.G., Taranenko V.A.: Adaptive control of machine tools (in Slovak). Bratislava: ALFA, 1983. – 231.
  • [13] Świć A, Taranenko W. Adaptive control of machining accuracy of axial-symmetrical low-rigidity parts in elastic-deformable state. Eksploatacja i Niezawodnosc – Maintenance and Reliability 2012; 14 (3): 215-221.
  • [14] Świć A, Taranenko W, Szabelski J.: Modelling dynamic systems of low-rigid shaft grinding. Eksploatacja i Niezawodność – Maintenance and Reliability 2011, 2 (50), s. 13-24.
  • [15] Taranenko G.,Taranenko V., Szabelski J., Swic A.: Systemic analysis of models of dynamic systems of shaft machining in elastic-deformable condition. Applied Computer Science. Business Process Optimization. Vol. 3, No 2, 2007, Technical University of Żilina, Slovenska Republika, 2007. 215 -238.
  • [16] Taranenko W., Świć A.: Technology of profiling machine parts with low rigidity (in Polish). Wydawnictwo Politechniki Lubelskiej, Lublin 2005.- 282.
  • [17] Taranenko W., Świć A:. Devices of control of machining precision of machine parts of low rigidity (in Polish). Wydawnictwo Politechniki Lubelskiej, Lublin 2006, 186
  • [18] Taranenko W., Szabelski J., Taranenko G.: Fundamentals of identification of the dynamic system of turning of low-rigidity shafts (in Polish). Pomiary. Automatyka. Robotyka. Miesięcznik naukowo – techniczny, nr 2/2008, Warszawa 2008. 204 – 223
  • [19] Taranenko V.A.: Optimalnoye upravlenye dinamicheskojj sistemojj stanka pri obrabotke uprugodeformirovannykh detalejj malojj zhestkosti (in Russian). Acta Mechanica Slovaca, KOŚICE, 3/2003.ROĆNIK 7., Journal published by Fakulty of Mechanical Engineering, the Technical University in Kośice – 173-180
  • [20] Zorev N.N.: Raschet proekciyj sily rezaniya (in Russian). - Moskwa: Mashinostroenie, 1958. - 58
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9d857f2c-bc5f-47ba-974e-b3246a6ea72e
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