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Comparative Evaluation Between DC and AC Breakdown Characteristic of Dielectric Insulating Materials in Liquid Nitrogen

机译:液氮中电绝缘材料直流和交流击穿特性的比较评估

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Due to the existence of AC loss in superconducting materials when an alternating voltage is applied, high cryogenic costs are inevitable to operate superconducting devices in AC networks. Therefore applications of superconducting devices in DC electric power networks could be regarded as the optimum choice for superconducting devices, because superconductors show exactly zero resistance to a DC source. Recently, DC superconducting devices such as DC cables have received noticeable attention as DC power transmission lines. In order to develop DC superconducting devices, the DC insulation characteristics in cryogenic liquids should be clarified. However, up to now, limited research has been reported in this field. In this paper, to clarify the different breakdown characteristics of DC and AC applications, various kinds of cryogenic dielectric sheets including Kraft, Kapton (polyimide) and Nomex (polyamide) papers have been prepared. Furthermore, a penetrating breakdown test for three kinds of sheets and turn-to-turn breakdown tests have been performed in liquid nitrogen $({rm LN}_{2})$. Consequently, it was found that the prepared sheets have shown 1.7–2.7 times higher dielectric strength than those of AC. Moreover, the Nomex and Kraft sheets have shown a remarkable increase in their dielectric strength in liquid nitrogen compared to air. However, the dielectric strength of the Kapton sheet did not show a remarkable increase in liquid nitrogen. From the turn-to-turn breakdown test, it was proved that the dielectric strength has been linearly increased according to the wrapping number of the sheets and that the DC breakdown voltage was 1.1–2.5 times higher than AC.
机译:由于在施加交流电压时超导材料中存在交流电损耗,因此在交流电网络中运行超导设备不可避免地会产生高昂的低温成本。因此,超导设备在直流电网中的应用可以被视为超导设备的最佳选择,因为超导体对直流电源的电阻正好为零。近来,诸如DC电缆的DC超导装置已经作为DC电力传输线受到了关注。为了开发直流超导器件,应阐明低温液体中的直流绝缘特性。但是,到目前为止,在该领域的研究还很少。在本文中,为弄清直流和交流应用的不同击穿特性,已准备了各种低温电介质片材,包括牛皮纸,卡普顿(聚酰亚胺)和诺梅克斯(聚酰胺)纸。此外,已经在液氮$({rm LN} _ {2})$中进行了三种片材的穿透击穿测试和匝间击穿测试。因此,发现制备的板材显示出比AC高1.7-2.7倍的介电强度。此外,与空气相比,Nomex和Kraft纸在液氮中的介电强度显着提高。然而,Kapton片的介电强度没有显示出液氮的显着增加。从匝间击穿测试中可以证明,绝缘强度根据纸的缠绕数线性增加,并且直流击穿电压比交流电高1.1-2.5倍。

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