• DocumentCode
    233675
  • Title

    Research on the resonator of Bell Vibratory Gyro under axial impact

  • Author

    Liu Hong ; Su Zhong ; Liu Ning ; Ma Xiaofei ; Haitao Li

  • Author_Institution
    Sch. of Autom., Beijing Inst. of Technol., Beijing, China
  • fYear
    2014
  • fDate
    28-30 July 2014
  • Firstpage
    598
  • Lastpage
    601
  • Abstract
    This work presents the analysis, simulation of a novel conical resonator. The resonator is the core component of a vibratory gyroscope, and the main performance of the gyro is directly influenced by its characteristics. A truncated conical metallic shell is chosen as the resonator of a novel vibratory gyroscope called Bell Vibratory Gyroscope (BVG). The shell is millimeter-scale and glued with eight piezoelectric elements. In order to investigate character of the resonator under high axial impact loading, an impact dynamic model is established using Finite Element Method. A 20,000g permanent axial impact loading is applied on the resonator. The results show that the max Von Mises stress of the resonator is much smaller than the yield strength of the material which means the plastic deformation of the resonator will not occur. Experiment is carried out to verify the effectiveness of Finite Element Method.
  • Keywords
    finite element analysis; gyroscopes; impact (mechanical); yield strength; axial impact loading; bell vibratory gyroscope; finite element method; is piezoelectric; resonator; von mises stress; yield strength; Electric shock; Electrodes; Finite element analysis; Gyroscopes; Loading; Resonant frequency; Vibrations; BVG; axial impact loading; conical resonator;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control Conference (CCC), 2014 33rd Chinese
  • Conference_Location
    Nanjing
  • Type

    conf

  • DOI
    10.1109/ChiCC.2014.6896692
  • Filename
    6896692