• Title of article

    Investigation for Synchronization of a Rotor-Pendulum System considering the Multi-DOF Vibration

  • Author/Authors

    Hou, Yongjun School of Mechanical Engineering - Southwest Petroleum University, China , Fang, Pan School of Mechanical Engineering - Southwest Petroleum University, China

  • Pages
    23
  • From page
    1
  • To page
    23
  • Abstract
    This work is a continuation for our published literature for vibration synchronization. A new mechanism, two rotors coupled with a pendulum rod in a multi-DOF vibration system, is proposed to implement coupling synchronization, and the dynamics equation of mechanism is derived by Lagrange equation. In addition, the coupling relationship between the vibrobody and the pendulum rod is ascertained with the Laplace transformation method, based on the dimensionless equation of the dynamics system. The Poincare method is employed to study the synchronization state between the two unbalanced rotors, which is converted into that of existence and the stability of solutions for synchronization-balance equations. The obtained results are supported by computer simulations. It is demonstrated that the values of the spring stiffness coefficient, the length of the pendulum, and the angular installation of the pendulum are important parameters with respect to the synchronous behavior in the rotor-pendulum system.
  • Keywords
    Investigation , Synchronization , Synchronization , System considering , Multi-DOF Vibration
  • Journal title
    Shock and Vibration
  • Serial Year
    2016
  • Record number

    2617180