• DocumentCode
    2071839
  • Title

    Computer simulation of aircraft wires tips compression by pulse magnetic field

  • Author

    Kurlayev, Nickolay ; Gulidov, Alexandr ; Ryngach, Nickolay ; Mishukov, Alexandr

  • Author_Institution
    Novosibirsk State Univ., Russia
  • Volume
    1
  • fYear
    2001
  • fDate
    26 Jun-3 Jul 2001
  • Firstpage
    36
  • Abstract
    To equip an aircraft with electric wiring, bundled cables are normally used, which are connected to the onboard electric equipment by means of tips. Nowadays, the wider use of magnetic-pulse compression for tipping cables requires considerable volume of experimental studies to be performed. More detailed and cheaper information can be successfully gained by mathematical modeling. The problem is solved numerically using a finite-difference method realized with the help of the software system KRUG24. A mathematical model of elastoplastic medium is used. The mass forces acting in the skin layer are determined considering physics of the discharge circuit "pulse generator-inductor coil-tubular tip shell". The computer simulation of compression is performed for a series of tips of standard sizes and for bundled cables. The kinematics of the system of bodies, stressed-deformed state and fast-track parameter are studied for various loads of the tubular shell with pulsed magnetic field. The predicted and empirical values were found to be coincident within 3%. From the numerical results, a nomograph is drawn which can be used for finding optimum manufacturing conditions for tips in a broad range of tip sizes and cable stuffs
  • Keywords
    aerospace industry; aircraft instrumentation; assembling; cables (electric); finite difference methods; magnetic field effects; wires (electric); wiring; aircraft electric wiring; bundled-cable tip compression; computer simulation; fast-track parameter; finite-difference method; induction coil; kinematics; magnetic pulse compression; mass forces; mathematical model elastoplastic medium; nomograph; optimum manufacturing conditions; pulse magnetic field; skin layer; stress-tensor components; stressed-deformed state; tipping cables; tubular shell; Aircraft; Cables; Computer simulation; Finite difference methods; Mathematical model; Pulse compression methods; Skin; Software systems; Wires; Wiring;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Science and Technology, 2001. KORUS '01. Proceedings. The Fifth Russian-Korean International Symposium on
  • Conference_Location
    Tomsk
  • Print_ISBN
    0-7803-7008-2
  • Type

    conf

  • DOI
    10.1109/KORUS.2001.975047
  • Filename
    975047