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Effect of Nano-doping on the Interface Charge Characteristics of SIR/XLPE Composite Insulation

机译:纳米掺杂对SIR / XLPE复合绝缘材料界面电荷特性的影响

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摘要

In the accessories of the HVDC cables, cross-linked polyethylene (XLPE) as the main insulation and silicone rubber (SIR) as the accessory insulation form a composite insulation structure. Due to the mismatch of the conductivity and permittivity of the two materials, interface charges will accumulate and affect the electrical properties of the composite insulation under DC voltage. Nano-doping of SIR is one of the means to improve its electrical properties. This paper compares the space charge distribution of the composite insulation composed of nano-TiO2 doped SIR and XLPE and the composite insulation composed of pure SIR and XLPE under different DC electric fields. The experiment results show that nano-doping of SIR can reduce the accumulation of the interface charge in the composite insulation structure when the electric field strength is high, while the interface between pure SIR and XLPE accumulates more charges when electric field strength increases.
机译:在HVDC电缆的附件中,作为主要绝缘和硅橡胶(SIR)作为辅助绝缘体的交联聚乙烯(XLPE)形成复合绝缘结构。由于两种材料的电导率和介电常数不匹配,接口电荷将累积并影响DC电压下复合绝缘的电性能。先生的纳米掺杂是改善其电性能的方法之一。本文比较了由纳米TiO组成的复合绝缘材料的空间电荷分布 2 掺杂的SIR和XLPE和由不同直流电场下由纯SIR和XLPE组成的复合绝缘材料。实验结果表明,当电场强度高时,SIR的纳米掺杂可以减少复合绝缘结构中的界面电荷的积累,而纯SIR和XLPE之间的界面在电场强度增加时累积更多的电荷。

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