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Electrical insulation characteristics in the simulated electrode system of HTS double pancake coil

机译:HTS双煎饼线圈模拟电极系统中的电绝缘特性

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For the experiment four types of spacer were distinguished by an arrangement that could improve the dielectric strength by making the path of flashover longer. One of the spacers could be applied to an insulator between windings of a high temperature superconducting (HTS) transformer. The flashover characteristic of each type was investigated and the flashover phenomena were observed to understand breakdown mechanism in liquid nitrogen (LN/sub 2/). In the first, the flashover characteristic in LN/sub 2/ was compared with that in air using the simulated electrode made from five turns of HTS tape. The dielectric strength of spacers was improved with an arrangement in air but not in LN/sub 2/. Through the observation of flashover phenomena, a micro gap between the spacer and the coil electrode generating bubbles was regarded as the main cause. In the second, the effect of the micro gap on flashover was investigated with a plane-plane electrode system. The micro gap decreased the flashover voltage by 70 percent. Finally, the dielectric strength of the spacer in LN/sub 2/ also could be improved by filling of a small amount of epoxy in the gap between the coil and the spacer.
机译:对于该实验,四种间隔物的区别在于可以通过增加跳火路径来提高介电强度的布置。隔离件之一可以应用于高温超导(HTS)变压器的绕组之间的绝缘体。研究了每种类型的闪络特性,并观察了闪络现象以了解液氮(LN / sub 2 /)的分解机理。首先,使用由五匝HTS胶带制成的模拟电极,将LN / sub 2 /中的闪络特性与空气中的闪络特性进行了比较。通过设置在空气中而不是在LN / sub 2 /中,隔离物的介电强度得以提高。通过观察飞弧现象,将隔离物与产生气泡的线圈电极之间的微小间隙视为主要原因。在第二篇中,使用平面电极系统研究了微间隙对闪络的影响。微间隙使击穿电压降低了70%。最后,还可以通过在线圈和垫片之间的间隙中填充少量环氧树脂来提高垫片的介电强度(以LN / sub 2 /为单位)。

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