540 / 2017-05-13 11:37:57
Research on Impact Dynamics Simulation of High-voltage Circuit Breaker's Transmission System
14106,14107,14108
Final Paper
Wang Saihao / State Grid Pinggao group co.,ltd
Wang Zhijun / State Grid Pinggao group co.,ltd
Du yingqian / State Grid Pinggao group co.,ltd
Dong Xiangyuan / State Grid Pinggao group co.,ltd
Jiang Jinghua / State Grid Pinggao group co.,ltd
Qin Zhengmin / Henan Pingzhi High Voltage Switchgear Co., Ltd
In the switching process of the high-voltage circuit breaker, it's not applicable to analyze transmission parts' stress with static analysis method, instead of impact dynamics method. In this paper, one type high-voltage CB is taken as an example, under the consideration of inertia force, friction force, and pressure reaction, the stress on the transmission system's main parts and mechanical response in the whole on-off switching process are achieved. Based on these data, the material and structure of main transmission parts are re-selected and optimized. The research shows stress concentration at the pin hole is very prominent and meanwhile the closer to the end of the drive chain the part is, the much smaller the impact stress is. Under the condition of changing each transmission part’s material from 45 steel to 7A04 aluminum, the stress of key positions shows a decreasing trend, and the closer to the end of the drive chain the part is, the much less obvious the decreasing trend is. However, the decrease of material rigidity causes the amplitude of nozzle to increase, the influence of which on insulation performance is needed to be further evaluated.
Important Date
  • Conference Date

    Oct 22

    2017

    to

    Oct 25

    2017

  • Jan 04 2017

    Abstract Notification of Acceptance

  • Mar 10 2017

    Draft Paper Acceptance Notification

  • Jun 30 2017

    Final Paper Deadline

  • Oct 25 2017

    Registration deadline

Contact Information
  • ice********
  • +86*********