PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Application of Dependence Graphs and Game Trees in Analysis of a Planetary Gear Modeled With a Contour Graph

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Analysis and synthesis of mechanisms are basic engineering tasks. They can suffer from errors due to versatile reasons. The graph-based methods of analysis and synthesis of planetary gears can be alternative methods for accomplishing of the afore mentioned tasks, which additionally allow for checking of their correctness. Previous applications of the graph theory concerned the modelling of gears for dynamic analysis, kinematic analysis, synthesis, structural analysis, gearshift optimization and automatic design based on so-called graph grammars. Some tasks can be performed only by using methods resulting from a graph theory, e.g. enumeration of structural solutions. The contour plot method consists in distinguishing a series of consecutive rigid units of the mechanism, forming a closed loop (so-called contour). At a later stage, it is possible to analyze the obtained contour graph as a directed graph of dependence. The work presents an example of the use of game-tree structures for describing the contour graph of a planetary gear. In addition, the complexity factor for parametric graphs was taken into account.
Rocznik
Strony
105--114
Opis fizyczny
Bibliogr. 17 poz., rys.
Twórcy
autor
  • Opole Univeristy of Technology, Faculty of Production Engineering and Logistics
autor
  • Univeristy of Bielsko-Biała, Faculty of Machine Building and Computer Science
  • Opole Univeristy of Technology, Faculty of Production Engineering and Logistics
Bibliografia
  • 1. Deptuła, A. (2017). Application of game graphs to describe the inverse problem in the designing of mechatronic vibrating systems. In Graph-Based Modelling in Engineering, pages 189–199. Springer.
  • 2. Deptuła, A., Kunderman, D., Osiński, P., Radziwanowska, U., and Włostowski, R. (2016). Acoustic diagnostics applications in the study of technical condition of combustion engine. Archives of Acoustics, 41(2):345–350.
  • 3. Deptuła, A. and Partyka, M. (2010). Application of game graphs in optimization of dynamic system structures. International Journal of Applied Mechanics and Engineering, 15(3):647–656.
  • 4. Deptuła, A. and Partyka, M. A. (2011). Application of dependence graphs and game trees for decision decomposition for machine systems. Journal of Automation Mobile Robotics and Intelligent Systems, 5:17–26.
  • 5. Drewniak, J. and Zawiślak, S. (2009). Kinematical and dynamical analysis of closed kinematic chains using graphs and contour equations. PAMM, 9(1):547–548.
  • 6. Drewniak, J. and Zawiślak, S. (2010). Linear-graph and contour-fraph-based models of planetary gears. Journal of Theoretical and Applied Mechanics, 48(2):415–433.
  • 7. Drewniak, J. and Zawiślak, S. (2012). Graph methods in kinematical analysis of multi-speed epicyclic gears. International Journal of Applied Mechanics and Engineering, 17(3):791–798.
  • 8. Freudenstein, F. (1971). An application of Boolean algebra to the motion of epicyclic drives. Journal of Engineering for Industry, 93(1):176–182.
  • 9. Hsu, C.-H. (1992). Graph notation and kinematic equations of motion of planetary differential gear trains. International Journal of Vehicle Design, 13(3):233–241.
  • 10. Kron, G. (1930). Generalized theory of electrical machinery. Transactions of the American Institute of Electrical Engineers, 49(2):666–683.
  • 11. Marghitu, D. B. (2005). Kinematic chains and machine components design. Gulf Professional Publishing.
  • 12. Pijls, W. and de Bruin, A. (2001). Game tree algorithms and solution trees. Theoretical computer science, 252(1-2):197–215.
  • 13. Shenoy, P. P. (1998). Game trees for decision analysis. Theory and decision, 44(2):149–171.
  • 14. Tsai, L. (2001). Enumeration of kinematic structures according to function, Florida.
  • 15. Uematsu, S. (1997). An application of graph theory to the kinematic analysis of planetary gear trains. International Journal of the Japan Society for Precision Engineering, 31(2):141–146.
  • 16. Wojnarowski, J. (1977). Grafy i liczby strukturalne jako modele układów mechanicznych. Politechnika Śląska. Instytut Podstaw Konstrukcji Maszyn.
  • 17. Zawiślak, S. (2010). The graph-based methodology as an artificial intelligence aid for mechanical engineering design. Wydawnictwo Akademii Techniczno-Humanistycznej.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b1f251ff-6752-418b-b908-196753c3fc77
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.