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The Influence of Space Charge on the Insulation Failure of DC Cable and Its Mechanism Study

机译:空间电荷对直流电缆绝缘失效的影响及其机制研究

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Flexible DC cable has been more and more extensive research, compared to the AC cable, the effect of space charge on the insulation failure of DC cable is more significant. This paper summarized three methods to improve the space charge of insulating materials, namely: nano-partice modification, grafting special functional group modification and blending modification, the analysis shows that nano-particle modification and grafting special functional group modification method are better than the blending modification method in improving the electrical properties of insulating material. This paper has also discussed mechanism of the three modification methods, the modification of nano-particles and the modification of grafting special functional groups both can form traps in the insulation materials, limit the movement of space charge, but two methods will be affected by the grafting rate and dispersion and these in not good to control in the actual production process. The difference is that the special functional groups will also play the role of charge donor, to increase the space charge. The presence of nano-particle size effect, resulting in easy agglomeration of polymer, and the two modified methods will be further verified in the development process of DC 500kV cable.
机译:灵活的直流电缆已经越来越广泛,与AC电缆相比,空间充电对DC电缆绝缘失效的影响更大。本文总结了提高绝缘材料空间电荷的三种方法,即:纳米部分修饰,接枝特殊功能组改性和混合修饰,分析表明纳米颗粒改性和嫁接特殊功能组改性方法优于混合优于混合改善绝缘材料电性能的修改方法。本文还讨论了三种改性方法的机制,纳米粒子的改性和接枝特殊功能组的改性都可以形成绝缘材料中的陷阱,限制空间电荷的运动,但两种方法会受到影响嫁接率和分散,这些在实际生产过程中不好控制。差异是,特殊功能团体也将发挥电荷供体的作用,以增加空间收费。纳米粒径效应的存在,导致聚合物的易凝聚,并在DC 500kV电缆的开发过程中进一步验证两种改性方法。

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