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首页> 外文期刊>Advances in materials science and engineering >High-Temperature Superconducting Cable Design Based on Individual Insulated Conductors
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High-Temperature Superconducting Cable Design Based on Individual Insulated Conductors

机译:基于单个绝缘导体的高温超导电缆设计

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The idea of insulating individual high-temperature superconducting (HTS) tapes was explored as a dielectric design to reduce the risk and complexity of HTS cable manufacturing. Applying insulation on individual HTS tapes is amenable to continuous manufacturing processes and opens up material choices for the insulation. In this study, heat shrink insulation was selected as the material choice for exploring the possibility of this design philosophy because of its commercial availability in multiple thicknesses. A systematic set of selection criteria was developed for the selection of appropriate heat shrink for given HTS tape dimensions. The cryogenic dielectric characteristics of insulated HTS tapes were evaluated both in liquid nitrogen and gaseous helium environments at 77 K. Dielectric characteristics of tapes with a single layer of thicker insulation were compared with those insulated using multiple layers of thinner insulation to evaluate the relative merits of each method. Several model power cables were fabricated using the PET insulated tapes, and their dielectric behavior was evaluated at 77 K in gaseous helium environment. The results suggest that the explored method is useful for HTS power cables operating at low voltages (<1,000 V) primarily due to the limitation on achieving thick insulation with high quality using heat shrink tubing. The suitable processes of insulating longer lengths of samples with additional dielectric benefits are discussed.
机译:绝缘单个高温超导(HTS)胶带的想法被探索为一种电介质设计,以降低HTS电缆制造的风险和复杂性。在单个HTS胶带上施加绝缘材料适合于连续制造过程,并为绝缘材料提供了更多选择。在本研究中,由于热收缩绝缘材料具有多种厚度,因此被选择为探索该设计理念可能性的材料选择。针对给定的HTS胶带尺寸,开发了一套系统的选择标准,以选择合适的热收缩率。在液氮和气态氦气环境下以77 K的温度对绝缘高温超导带的低温介电特性进行了评估,将单层较厚绝缘的带与多层多层较薄绝缘的带的介电特性进行了比较,以评估绝缘带的相对优点。每种方法。使用PET绝缘胶带制造了几种型号的电力电缆,并在气态氦气环境下在77 K下评估了它们的介电性能。结果表明,这种探索的方法对于在低电压(<1,000 V)下运行的HTS电力电缆很有用,这主要是因为使用热缩管无法实现高质量的厚绝缘。讨论了将较长长度的样品绝缘并具有附加介电效益的合适方法。

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