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Dynamics of electromechanical drive of suspended timbertransporting rope system

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Dynamic loads of drive of suspended timbertransporting rope system with an electric motor are investigated. Developed a dynamic model of the electromechanical drive considering the changing of the electric motor’s moment during start-up and the resistance force moment. The changing of the resistance force moment is expressed through the changes in tension force of the pull-bearing rope systems in various manufacturing operations. In determining the moment of inertia of the drive drum is accounted multi-winding of rope. Research on dynamic load of system elements are made with the taking into account the influence of torsional stiffness of system parts and lifting capacity of the suspended timbertransporting rope system.
Rocznik
Tom
Strony
245--256
Opis fizyczny
Bibliogr. 14 poz., rys., wykr.
Twórcy
autor
  • Department of Applied Mathematics and Mechanics, Lviv State University of Life Safety, Ukraine
autor
  • Department of Applied Mechanics, Ukrainian National Forestry University, Lviv, Ukraine
Bibliografia
  • ADAMOVSKY M., MARTYNTSIV M., BADERA J. 1997. Suspended cable timbertransporting plants, IZMN, Kyiv.
  • BARYLIAK V. 2015. Justification of the parameters of the drives of timber transporting rope systems. Dissertation for the degree of the Candidate of engineering science (comparable to the academic degree of Ph.D.), Lviv.
  • BELAYA N., PROHORENKO A. 1964. Cable timbertransporting plants, Forest Industry, Moscow.
  • CZABAN A. 2007. Mathematical modeling of processes oscillating electromechanical systems, T. Soroki, Lviv.
  • CZABAN A., LIS M. 2012. Mathematical modelling of transient states in a drive system with a long elastic element. Electrical Review. R. 88, nr 12b, (pp. 167-170), Sigma-Not, Warsaw.
  • GOREV A.A. 1950. The transient processes of synchronous machine. Moscow.
  • GOROKHOVSKI K., LIVSHITS N. 1991. Machines and equipment for logging and forest storage works. Ecology, Moscow.
  • JOSWIG Fr. 2014. The electro-mechanical coupling as the cause of torsional oscillations and their effects on shafting. Dissertation for the academic degree Doctor of Engineering. Dortmund.
  • KHARCHENKO YE., SOBKOWSKI S. 2005. Mathematical modelling of transients in drives of building elevating devices , Diagnostyka. Quarterly published by the Polish Society of Technical Diagnostics. Vol. 35, (pp. 37-42), Warsaw.
  • KORZHOV V., CUDRA V. 2010. Constructive-technological features of mobile cable timbertransporting plants of built up type. Industrial hydraulics and automation. Vol. 3.29, (pp. 18-20). Lviv.
  • MALASHHENKO V., MARTYNCIV M., BARYLIAK V. 2013. Research of work of cable timber transporting plants drives with regard multilayer winding rope. Lifting and conveying equipment. 2, (pp. 29-38), Dnipropetrovsk.
  • PARK R.H. 1929. Two-reaction theory of synchronous machines generalized method of analysis-part I. Transactionsof the American Institute of Electrical Engineers. Vol. 48, (pp. 716-727), (republished NAPS, University of Waterloo, Canada. 2000), Waterloo.
  • PARK R.H. 1933. Two-reaction theory of synchronous machines -part II. Transactions of the American Institute of Electrical Engineers. Vol. 52, (pp. 352-354).
  • ZANEHYN L., VOSKOBOINIKOV I., YEREMEEV N. 2004. Machines and Mechanisms for cable logging. MHUL, Moscow.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b4f5008c-5cea-4ffb-8d04-fc0550c79169
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