Phenomenological modeling of planetary gear train considering meshing impact with different loads
ID:79 View Protection:ATTENDEE Updated Time:2025-06-26 15:38:40 Hits:241 Poster Presentation

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Abstract
Investigating vibration generation mechanisms in planetary gear train (PGT) proves essential for health monitoring. Due to factors such as load and clearance, the actual meshing line frequently deviates from the theoretical mesh line, resulting in corner contact during the meshing process and leading to meshing impacts. Existing vibration signal models fail to accurately characterize the impact phenomenon. To this end, the corner contact impacts under healthy and fault state were analyzed, and then an improved vibration signal modeling was proposed. Comparative analysis of vibration characteristics considering and ignoring corner contact impact considerations under healthy and faulty conditions was conducted based on the proposed model. In addition, the vibration characteristics of planetary gear train under different loads were explored. The simulation studies reveal distinct sideband distribution patterns around meshing frequencies under varying loads. Results demonstrate significant amplitude growth in meshing frequency with increasing loads. Finally, an experimental analysis was carried out to verify the effectiveness of the proposed model.
Keywords
Planetary gear train,Meshing impact,Phenomenological Model,Crack fault
Speaker
Hongxiang Jing
河北工业大学

Submission Author
Hongxiang Jing 河北工业大学
Guojin Feng Hebei University of Technology;National Key Laboratory of Equipment State Sensing and Smart Support University of Science and Technology for National Defense;Advanced Equipment Research Institute Co., Ltd. of HEBUT
Dong Zhen Hebei University of Technology;Advanced Equipment Research Institute Co., Ltd. of HEBUT;State Key Laboratory of Intelligent Power Distribution Equipment and System
Haiyang Li School of Mechanical Engineering Tianjin University of Commerce
Hao Zhang Hebei University of Technology
Fengshou Gu University of Huddersfield
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Important Date
  • Conference Date

    Aug 01

    2025

    to

    Aug 04

    2025

  • Aug 20 2025

    Draft paper submission deadline

Sponsored By
中国机械工程学会设备智能运维分会
Organized By
新疆大学