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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Influence of temperature on dielectric properties of EPR and partial discharge behavior of spherical cavity in EPR insulation
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Influence of temperature on dielectric properties of EPR and partial discharge behavior of spherical cavity in EPR insulation

机译:温度对EPR绝缘体的EPR介电性能和球形腔局部放电行为的影响

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摘要

Ethylene propylene rubber (EPR) with outstanding high temperature performance has been widely used as cable insulation. To understand the influence of temperature on the feature of EPR, a series of study has been conducted including the dielectric measurements, the breakdown voltage and PD behavior of cavities. In the experiments, the dependency of permittivity, conductivity and electric modulus on frequency and temperature has been investigated firstly. Then, the experiments of breakdown voltage have been performed under the applied voltage in the temperature range from 25 °C to 200 °C. Finally, PD behavior caused by artificial spherical cavities in EPR has been examined at the temperature of 25 °C, 100 °C and 150 °C, respectively. It can be concluded by the experiments that the relaxation processes of EPR similar to other polymer materials can be featured by a rapid decrease of the real part of complex permittivity and a slow decrease of dissipation factor with increasing frequency at higher temperature. The dielectric dispersion phenomena can be observed on the spectroscope of the electric modulus which follows the Havriliak/Negami model. The phase resolved PD distribution, such as ϕ-q-n plots and ϕ-n plots, caused by cavities can be characterized as the "multi-stem-like" distribution. The repetition rate, the average discharge power and the average discharge current have shown a more strong dependency on the temperature.
机译:具有出色的高温性能的乙丙橡胶(EPR)已被广泛用作电缆绝缘。为了了解温度对EPR特性的影响,已进行了一系列研究,包括电介质测量,击穿电压和空腔的PD行为。在实验中,首先研究了介电常数,电导率和电模量对频率和温度的依赖性。然后,在施加的电压范围为25°C至200°C的条件下进行了击穿电压的实验。最后,分别在25°C,100°C和150°C的温度下检查了EPR中由人工球形腔引起的PD行为。通过实验可以得出结论,EPR的弛豫过程与其他聚合物材料类似,其特征在于复数介电常数的实部快速降低,而耗散因数随温度的升高而缓慢降低。可以在遵循Havriliak / Negami模型的电模量的分光镜上观察到介电色散现象。由腔引起的相位分辨的PD分布(例如ϕ-q-n图和ϕ-n图)可以称为“多茎状”分布。重复率,平均放电功率和平均放电电流对温度的依赖性更强。

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