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Tytuł artykułu

Dynamics of an unguided missiles launcher

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper discussed the modelling, examination of the dynamic properties and stability of the WW-4 launcher of unguided short-range missiles NLPR-70. Remotely controlled armament module ZSMU-70, in the presented configuration, is designed to combat ground targets in form of light armoured vehicles. The purpose of this paper is to present a physical model, a mathematical model and computer simulation of launcher motion during launching and the first phase of flight of the missile. The virtual model is formulated in the vertical plane and verified by experimental studies. The theoretical model corresponds to experimental studies conducted at the military testing ground with application of a high-speed camera.
Rocznik
Strony
69--80
Opis fizyczny
Bibliogr. 17 poz., rys.
Twórcy
autor
  • Kielce University of Technology, Faculty of Mechatronics and Machine Building, Kielce, Poland
autor
  • Kielce University of Technology, Faculty of Mechatronics and Machine Building, Kielce, Poland
autor
  • Kielce University of Technology, Faculty of Mechatronics and Machine Building, Kielce, Poland
  • Kielce University of Technology, Faculty of Mechatronics and Machine Building, Kielce, Poland
Bibliografia
  • 1. Biessonov A.P., 1967, Basis of the Dynamics of Mechanisms with a Variable Links Mass, Science, Moscow
  • 2. De Silva C.W., 2007, Vibration Fundamentals and Practice, Taylor & Francis Group, Boca Raton, London-New York
  • 3. Dziopa Z., 2003, Vibration reduction of a close range missile launcher, Mechanics – Quarterly of the AGH University of Science and Technology, ISSN 0239-5282, 22, 3, 255-262
  • 4. Dziopa Z., 2004, The dynamics of a rocket launcher placed on a self-propelled vehicle, Mechanical Engineering, Lviv, ISSN 1729-959, 3, 81, 23-30
  • 5. Dziopa Z., 2006, An anti-aircraft self-propelled system as a system determining the initial parameters of the missile flight (in Polish), [In:] Mechanika w Lotnictwie, ML-XII 2006, J. Maryniak (Ed.), PTMTS Warsaw, ISBN 83-902194-6-8, 223-241
  • 6. Dziopa Z., 2007, Dynamics of a system of guides as an element of a launcher mounted on a motor vehicle, Scientific Notebooks of the Naval Academy, ISSN 0860-889X, XLVIII, 169K/1, 121-128
  • 7. Dziopa Z., 2008, System stabilizing the launcher turret of the self-propelled anti-aircraft missile assembly, Magazine of Technology, Mechanics Notebook, ISSN 0011-4561, 101, 5, 31-41
  • 8. Dziopa Z., Koruba Z., Krzysztofik I., 2010, Missile flight determined by the initial flight parameters of launching, 6th Conference on Avionics, Bezmiechowa 2010, ISBN 978-83-7199- -623-8, p. 22
  • 9. Engel Z., Kowal J., 1995, Controlling Vibro-Acoustic Processes, AGH Publishers, Cracow
  • 10. Gacek J., Maryniak J., 1987, Modelling the dynamic properties of dynamic rotational bodies thrown from movable (in Polish), Biuletyn WAT, 10, 422, 81-96
  • 11. Gantmacher F.R., 1970, Lectures in Analytical Mechanics, Translated from Russian by G. Yankovsky, Mir, Moscow
  • 12. Inman D.J., 2006, Vibration with Control, John Wiley & Sons, England
  • 13. Osiecki J., 1994, Machine Dynamics (in Polish), Military University of Technology, Warsaw
  • 14. Sibilski K., 2004, Modelling and Simulation of Dynamics of Flying Objects Motion, MH Printing House, Warsaw
  • 15. Swietlickij W.A., 1963, Flying Objects Take-off Dynamics, Science, Moscow
  • 16. Żyluk A., 2014, Numerical simulation of the effect of wind on the missile motion, Journal of Theoretical and Applied Mechanics, ISSN 1429-2955, 52, 2, 335-344
  • 17. Żyluk A., Pietraszek M., 2014, Investigation of an additional oxidizer charge effect on selected operational characteristics of a solid-fuel rocket engine, Journal of Theoretical and Applied Mechanics, ISSN 1429-2955, 52, 1, 139-149
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ef771040-835e-4610-b0f8-c42fdf69d794
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