479 / 2022-03-16 03:44:38
Experimental Study on Flashover and Wetting Characteristics of Silicone Rubber Sheet under Different Humidity
Pollution flashover,Silicone Rubber,Relative Humidity
终稿
Fangzheng Cheng / Tsinghua University
Xiangjun Zeng / Electric Power Research Institute of China Southern Grid
Yongsheng Xu / Electric Power Research Institute of China Southern Grid
Haofeng Zhang / Electric Power Research Institute of China Southern Grid
Zichen Liu / Tsinghua University
Fanghui Yin / Tsinghua Shenzhen International Graduate School
Liming Wang / Tsinghua University;Graduate School at Shenzhen
Purpose/Aim

There is a difference in insulation requirements between indoor and outdoor electrical equipment. So far, there is no unified standard for the insulation design of indoor equipment. The purpose of this experiment is to measure the flashover voltage of silicone rubber sheet under different relative humidity conditions, so as to provide the basis for the creepage distance design of indoor equipment.

Experimental/Modeling methods

In this experiment, a certain mass of sodium chloride and diatomite were accumulated on the surface of silicone rubber sheet by artificial pollution. The test equivalent salt deposit density was about 0.35 mg/cm2 and the test non-soluble deposit density was about 2.10 mg/cm2, both of which were based on on-site measurement. The sample was placed in the different relative humidity conditions and the U50 was measured by the up-and-down method after the pollution layer was sufficiently moistened.

Results/discussion

The research shows that with the increase of relative humidity, the U50 of silicone rubber sheet decreases. This is because as relative humidity increases, the amount of dissolved pollution layer increases, releasing more free-moving ions, and the surface insulation of silicone rubber sheet decreases, resulting in the decrease in flashover voltage.

Conclusions

When the relative humidity is higher than 55%, the U50 of silicone rubber sheet is negatively correlated with the relative humidity.

 
重要日期
  • 会议日期

    09月25日

    2022

    09月29日

    2022

  • 08月15日 2022

    提前注册日期

  • 09月10日 2022

    报告提交截止日期

  • 11月10日 2022

    注册截止日期

  • 11月30日 2022

    初稿截稿日期

  • 11月30日 2022

    终稿截稿日期

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IEEE DEIS
承办单位
Chongqing University
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