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Experiment study on arc ablation resistance performance of epoxy with alumina fillers

机译:氧化铝填料环氧树脂电弧消融性能的试验研究

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GIS spacer plays an important role in the bus of the gas insulated switchgear in UHV substation. However, partial discharge and flashover may take place on the surface of the GIS spacer which may cause severe damage to the stability and safety of the whole system in long-term operation. In order to improve the arc ablation resistance performance of GIS spacer, micron alumina fillers are added to the epoxy system. In this paper, composites with different alumina contents ranging from 0 to 300% (alumina/epoxy in weight) was prepared to investigate their performance of resistance to arc ablation. Results showed that the addition of alumina has succeeded in improving the performance of their resistance to arc ablation, while the failure time increased from 90s to 220s. The curve was obtained between different filler content and the sample performance of resistance to arc ablation. Meanwhile, the thermal conductivity, glass transition temperature and thermal decomposition temperature of different alumina-epoxy system were measured. The conclusion indicates that the system with higher thermal conductivity performed better on the ability of resistance to arc ablation. This research helped to optimize the epoxy-alumina formulation system and to improve the electric properties of the GIS spacer.
机译:GIS Spacer在UHV变电站的气体绝缘开关设备的总线中起着重要作用。然而,局部放电和闪络可以在GIS垫片的表面上发生,这可能对整个系统的稳定性和长期操作造成严重损害。为了提高GIS间隔物的电弧消融性能,将微氧氧化铝填料加入环氧系统中。在本文中,制备具有不同氧化铝含量的复合材料,范围为0至300%(体重的氧化铝/环氧树脂),以研究它们对电弧消融抗性的性能。结果表明,加入氧化铝成功地提高了它们对电弧消融的抵抗的性能,而失效时间从90倍增加到220s。在不同的填料含量和抗电弧消融的抗性的样本性能之间获得曲线。同时,测量了不同氧化铝 - 环氧系统的导热性,玻璃化转变温度和热分解温度。结论表明,具有较高导热性的系统对抗电弧消融的能力更好。该研究有助于优化环氧树脂制剂系统,并改善GIS间隔物的电性能。

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