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Diskrete-continuum methods application for rotating machine-absorber interaction analysis

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Konferencja
12th International Scientific Conference CAM3S'2006, 27-30th November 2006, Gliwice-Zakopane
Języki publikacji
EN
Abstrakty
EN
Purpose: The main aim of this paper is improved dynamic vibration absorbers design with taking into accout complex rotating machines dynamic. Design/methodology/approach: The numerical schemes row is considered for the complex vibroexitated constructions. Methods of decomposition and the numerical schemes synthesis are considered on the basis of new methods of modal synthesis. Findings: Development of mathematical models of complicated machines and buildings in view of their interaction with system of dynamic vibration absorbers. Dynamic vibration absorbers - complicated rotating machines system design optimized on vibro- absorption properties. Research limitations/implications: The research must be done for non-linear rotor dynamics. Practical implications: The absorbers designed in accordance with this paper can be applied not only to electric machines or aeronautic structures, but to any other type of vibro-exitated structure, such as cars, chisel installation, optical, magneto-optical disks, washing machine, refrigerator, vacuum cleaner, etc. Originality/value: The paper has novelty both in theoretical, and in practical aspect. In order that optimal parameters of DVA be determinate the complete modeling of dynamics of rotating machine should be made. Traditional design methodology, based on discontinuous models of structures and machines are not effective for high frequency vibration.
Rocznik
Strony
387--390
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
autor
autor
Bibliografia
  • [1] S.P. Timoshenko, Oscillations in engineering, - M., The Science, 1967, 444.
  • [2] A. Tondl, Dynamics of a rotor of turbogenerators, - L., The Energy, 1971, 387.
  • [3] F.M. Dimentberg, Bending oscillations of rotating shaft. AS the USSR, 1959.
  • [4] Z. Dabrovsky, I. Komorska, A.Puchalski, Diagnostic of manufacturing and assembling errors of wibrating system, Warshawa-Radom, 2001, 108.
  • [5] H.D.Nelson, A Finite Rotating Shaft Element Using Timoshenko Beam Theory, ASME J. Mech. Des., 102 (1980) 793 - 803.
  • [6] T.Zheng, N. Hasebe, Nonlinear Dynamic Behaviors of a Complex Rotor-Bearing System, ASME J Appl. Mech., 67 (2000) 485-495.
  • [7] B. Diveiev, Algorithms of calculation of the displayed designs in CAD and diagnostic systems on microcomputers. Materials 4 and 5 International scientific - practical conferences, Ukrsoft, Lviv, 1995, 191-194.
  • [8] P. Hashtchuk, B. Diveyev, I. Vayda, I. Vicovich, Design of girder booms for sprayers of increased durability and high quality of agent application 'Vibration in physical systems’. XIX symposium, Abstract and invited lecture, Poznan-Blazejewko, 2000, 44-45.
  • [9] I. Butiter, B. Diveyev, I. Vikovych, Optimization and design of the girder spray booms of increased durability and quality of an agent spraying 'Vibrations in physical systems’, XX jubilee symposium, Abstract and invited lecture Poznan-Blazejewko, 2002, 120-121.
  • [10] B. Diveiev, Rotating machine dynamics with application of variation-analytical methods for rotors calculation. Proceedings of the XI Polish - Ukrainian Conference on “CAD in Machinery Design – Implementation and Education Problems.”, Warsaw, 2003, 7-17.
  • [11] Z. Li, B. Diveyev, M.J. Crocker, Refined Numerical Schemes for a Stressed-Strained State of Layered Elements for damping estimation. 1, Theoretical foundations. (In press).
  • [12] Z.Li, B. Diveyev, M.J.Crocker. Refined Numerical Schemes for a Stressed-Strained State of Layered Elements for damping estimation. 2. Damping Bounds,Predictions and Experimental Modelling (In press).
  • [13] B.M. Diveyev and M.M. Nykolyshyn. Refined Numerical Schemes of a Stressed-Strained State of Structural Joints of Layered Elements, Journal of Mathematical Sciences, 107 (2001) 3666-3670.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BOS5-0018-0086
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