董曼玲, 杨知非, 詹振宇, 王鑫, 郑含博, 安振连. 高压套管用液体硅橡胶闪络性能的直接氟化改善[J]. 高电压技术, 2025, 51(1): 290-298. DOI: 10.13336/j.1003-6520.hve.20231924
引用本文: 董曼玲, 杨知非, 詹振宇, 王鑫, 郑含博, 安振连. 高压套管用液体硅橡胶闪络性能的直接氟化改善[J]. 高电压技术, 2025, 51(1): 290-298. DOI: 10.13336/j.1003-6520.hve.20231924
DONG Manling, YANG Zhifei, ZHAN Zhenyu, WANG Xin, ZHENG Hanbo, AN Zhenlian. Improvement of Flashover Performance of Liquid Silicone Rubbers for High Voltage Bushings by Direct Fluorination[J]. High Voltage Engineering, 2025, 51(1): 290-298. DOI: 10.13336/j.1003-6520.hve.20231924
Citation: DONG Manling, YANG Zhifei, ZHAN Zhenyu, WANG Xin, ZHENG Hanbo, AN Zhenlian. Improvement of Flashover Performance of Liquid Silicone Rubbers for High Voltage Bushings by Direct Fluorination[J]. High Voltage Engineering, 2025, 51(1): 290-298. DOI: 10.13336/j.1003-6520.hve.20231924

高压套管用液体硅橡胶闪络性能的直接氟化改善

Improvement of Flashover Performance of Liquid Silicone Rubbers for High Voltage Bushings by Direct Fluorination

  • 摘要: 直流穿墙套管硅橡胶外绝缘的闪络危及特高压直流输电工程安全。为了改善其直流闪络性能,在实验室使用氟气体积分数为12.5%的氟/氮混合气,对两种可用作高压套管外绝缘的液体硅橡胶进行了表层氟化修饰。对比研究了两种硅橡胶试样在氟化前后的直流闪络性能、表层物化特征和基本电性能。使用片状试样/指形电极组合的闪络试验表明氟化显著地提升了两种硅橡胶试样的直流闪络电压,但具有不同的提升率(51.7%和31.0%)。ATR-IR和XPS分析表明,两种硅橡胶试样的二氧化硅含量不同,氟化层中不仅含有C—F键,而且含有相当量的Si—F键,氟原子通过取代甲基的氢或甲基或通过与二氧化硅反应被引入表层。表面电位衰减测量和电导率测量表明,两种硅橡胶试样有不同的体传导和不同的表面电位衰减特征,氟化引起的表面传导增加或表面电荷积累抑制是直流闪络电压增大的主要原因。

     

    Abstract: The flashover of silicone rubber outer insulation of DC wall bushings is one of the key insulation issues that endanger the UHV DC transmission project. In order to improve the flashover performance of silicone rubber, two kinds of liquid silicone rubber (LSR), which can be used for external insulation of high voltage wall bushings, were fluorinated with 12.5% fluorine/nitrogen mixture in laboratory. The DC flashover performance, surface physicochemical characteristics and basic electrical properties of two kinds of LSR sample before and after fluorination were comparatively studied. Flashover tests using a sheet sample/finger electrode configuration show that the fluorination can significantly increase the DC flashover voltage of two kinds of LSR sample, but with different increase rates (51.7% and 31.0%). ATR-IR and XPS analyses indicate that silica contents in two kinds of LSR are different, the fluorinated surface layers contain not only C—F bonds but also a considerable amount of Si—F bonds, and fluorine atoms are introduced into the surface layer by substituting hydrogen of methyl groups or methyl groups or by reacting with silica. Surface potential decay measurements and conductivity measurements show that two kinds of LSR sample have different bulk conduction and different surface potential decay characteristics. The increase in surface conduction or the suppression of surface charge accumulation caused by fluorination is the main reasons for the increase in DC flashover voltage.

     

/

返回文章
返回