1. 广东省电力装备可靠性企业重点实验室(广东电网有限责任公司电力科学研究院),广州,510080
2. 西安西电开关电气有限公司,西安,710077
纸质出版:2025
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李歆蔚, 马凯, 郑晓光, 等. 空气绝缘电力设备绝缘子表面电荷积聚与沿面放电特性[J]. 高电压技术, 2025,51(12):5929-5940.
李歆蔚, 马凯, 郑晓光, et al. 空气绝缘电力设备绝缘子表面电荷积聚与沿面放电特性[J]. 2025, 51(12): 5929-5940.
李歆蔚, 马凯, 郑晓光, 等. 空气绝缘电力设备绝缘子表面电荷积聚与沿面放电特性[J]. 高电压技术, 2025,51(12):5929-5940. DOI: 10.13336/j.1003-6520.hve.20241640.
李歆蔚, 马凯, 郑晓光, et al. 空气绝缘电力设备绝缘子表面电荷积聚与沿面放电特性[J]. 2025, 51(12): 5929-5940. DOI: 10.13336/j.1003-6520.hve.20241640.
压缩空气的绝缘性能优异,具有作为环保型SF6替代气体的巨大潜力。研究空气环境下气固界面电荷特征与放电演变特性,对于环保电力绝缘设备的设计改进至关重要。该文设计了由聚对苯二甲酸乙二醇酯(PET)薄膜和硅橡胶层构成的双层绝缘子,搭建了气体-聚合物沿面放电光电监测与电荷测量平台,用以测量电荷密度、电位与电场分布。结果表明:采用PET薄膜包覆硅橡胶的双层结构绝缘子显著减少了探头与聚合物测量表面的放电现象;正冲击电压下先导和流注的分界线位于距高压电极20 mm附近,负冲击电压下的分界线随电压增加逐渐向地电极方向推进;12.5~16 kV的冲击电压范围内,先导和流注电荷密度分界点在350~680 pC/mm2之间,横向电势分界点约为9 kV,纵向电势分界点在6~8 kV之间;-9.5~17.5 kV的冲击电压范围内,先导和流注电荷密度分界点介于500~600 pC/mm2之间,流注区域平均场强在1.0~1.6 kV/mm之间,先导通道场强在0.15~0.20 kV/mm之间。
Compressed air exhibits excellent insulating properties
making it a promising environmentally friendly alternative to SF6 gas. Investigating the charge characteristics at gas-solid interfaces and the evolution of discharges in air is crucial for improving the design of environmentally friendly electrical insulation systems. In this study
a bilayer insulator composed of polyethylene terephthalate (PET) film and silicone rubber was designed. A gas-polymer surface discharge optical monitoring and charge measurement platform was constructed to measure charge density
potential
and electric field distribution. The results indicate that the bilayer insulator
with PET film coating the silicone rubber
significantly reduces the discharge phenomena between the probe and the polymer measurement surface. Under a positive impulse voltage
the boundary between leader and streamer discharges is located approximately 20 mm from the high-voltage electrode. Under a negative impulse voltage
this boundary gradually moves toward the ground electrode as the voltage increases. In the impulse voltage range of 12.5 kV to 16 kV
the boundary for charge density between leader and streamer discharges is between 350 and 680 pC/mm²
the transverse potential boundary is around 9 kV
and the longitudinal potential boundary is between 6 kV and 8 kV. In the negative impulse voltage range of -9.5 kV to 17.5 kV
the boundary for charge density is between 500 and 600 pC/mm²
the average field strength in the streamer region is between 1.0 kV/mm and 1.6 kV/mm
and the field strength in the leader channel is between 0.15 kV/mm and 0.20 kV/mm.
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