首页> 外文会议>2018 IEEE 2nd International Conference on Dielectrics >Comparison of different dielectric characterization methods with TSC spectra of silicone rubber filled with carbon black nanofillers
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Comparison of different dielectric characterization methods with TSC spectra of silicone rubber filled with carbon black nanofillers

机译:炭黑纳米填料填充硅橡胶的TSC光谱与不同介电表征方法的比较

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High voltage direct current (HVDC) power transmission is becoming increasingly competitive to high voltage alternating current (HVAC) power transmission, especially for bulk power transmission over long distances. For crossing wide metropolitan areas, long distances in the open sea, or latterly in Germany the planned underground North-South DC links, especially extruded HVDC cable lines are attractive because of significant advantages over other insulation types. Nevertheless, in HVDC insulation systems the electric field distribution is much more complex than in AC systems, because it strongly depends on the conductivities of the insulation. Especially the presence of space charges can lead to an increased electric field strength up to the failure of the device. Due to the mentioned challenges it is significant to develop new insulating materials suitable for HVDC applications. One promising approach is to introduce nanofillers in the insulating matrix for space charge suppression. The purpose of this paper is to present the results of the influence of nanoscale carbon black (CB) in liquid silicone rubber (LSR). Besides volume resistivity, dielectric breakdown strength is determined to check the influence of the CB concentration. In addition, TSC (Thermally Stimulated Current) measurements are performed on LSR samples with different CB concentrations to evaluate their properties.
机译:高压直流(HVDC)输电与高压交流(HVAC)输电变得越来越有竞争力,特别是对于长距离大容量输电。对于穿越广阔的大都市地区,远距离的公海或后来的德国,计划中的地下南北直流链路,特别是挤压HVDC电缆线路具有吸引力,因为它比其他绝缘类型具有明显的优势。然而,在HVDC绝缘系统中,电场分布比AC系统中复杂得多,因为它很大程度上取决于绝缘体的电导率。特别是空间电荷的存在会导致增加的电场强度,直至设备发生故障。由于上述挑战,开发适用于HVDC应用的新型绝缘材料具有重要意义。一种有希望的方法是在绝缘基质中引入纳米填料以抑制空间电荷。本文的目的是介绍液体硅橡胶(LSR)中纳米级炭黑(CB)影响的结果。除了体积电阻率,还确定了介电击穿强度以检查CB浓度的影响。另外,对具有不同CB浓度的LSR样品进行TSC(热刺激电流)测量,以评估其性能。

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