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The influence mechanism of semiconductive material on space charge accumulation in HVDC cable accessory

机译:半导体材料对高压直流输电电缆附件中空间电荷积累的影响机理

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To study the effect of semiconductive (SC) material on space charge accumulation in cable accessories, an accelerated aging of cable samples with cable accessories was carried out in the laboratory. The experimental results show accumulation of space charge in the cable insulation covered by a stress cone, whereas the space charge was negligible in the region wrapped by the accessory-reinforced insulation as well as regions not in contact with the accessory. With increased aging time, the space charge density gradually increased, and the axial distribution gradually extended. A comparative experiment on cable insulation slices was carried out using silicone rubber and EVA SC material as the upper electrodes to determine the cause of the space charge accumulation. The results showed that a large quantity of heteropolar charges accumulated near the silicone rubber SC upper electrode, whereas the charges near the EVA SC electrode were negligible. It was concluded that due to the weak charge conducting ability of the silicone rubber SC material used as the electrode, space charges cannot escape from the stress cone and thus accumulate on the outside of the cable insulation at the stress cone position. This paper shows that the SC material used in cable accessories plays an important role in space charge accumulation.
机译:为了研究半导体(SC)材料对电缆附件中空间电荷积累的影响,在实验室中使用电缆附件对电缆样品进行了加速老化。实验结果表明,空间电荷在应力锥覆盖的电缆绝缘层中积累,而在附件增强绝缘层包裹的区域以及不与附件接触的区域中,空间电荷可忽略不计。随着老化时间的增加,空间电荷密度逐渐增加,轴向分布逐渐扩展。使用硅橡胶和EVA SC材料作为上电极,对电缆绝缘层进行了对比实验,以确定空间电荷积聚的原因。结果表明,在硅橡胶SC上电极附近积累了大量的异极性电荷,而在EVA SC电极附近可以忽略不计。结论是,由于用作电极的硅橡胶SC材料的电荷传导能力较弱,因此空间电荷无法从应力锥中逸出,从而在应力锥位置处积聚在电缆绝缘层的外部。本文表明,电缆附件中使用的SC材料在空间电荷积累中起着重要作用。

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