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A COMPOSITE ELECTRICAL INSULATION IN SUPERCONDUCTING MAGNETS

机译:超导磁体中的复合电绝缘

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摘要

A composite electrical insulation tape has been developed for superconducting magnets in high-energy particle physics experiments. It is composed of glass-cloth(s)/polyimide-film (Upilex) laminations bonded with epoxy resin. The polyimide film provides optimum performance in electrical insulation and the glass-cloth contributes to reliable mechanical bonding of the superconductor to the other components. Reliable mechanical bonding is also essentially important to realize reliable conductive cooling in a superconducting magnet indirectly cooled by using forced two phase helium flow in cooling tube attached to the coil structure. The optimization has been made in the process of the lamination with some treatment on the polyimide surface and with optimized epoxy resin to realize the best mechanical bonding. This paper will describe development of the composite electrical insulation, including brief test results.
机译:在高能粒子物理实验中,已经开发出一种复合电绝缘带,用于超导磁体。它由玻璃布/聚酰亚胺薄膜(Upilex)层压材料和环氧树脂粘合而成。聚酰亚胺薄膜可提供最佳的电绝缘性能,而玻璃布有助于将超导体可靠地机械粘合到其他组件。可靠的机械键合对于在超导磁体中实现可靠的导电冷却也很重要,该超导磁体是通过在连接到线圈结构的冷却管中使用强制两相氦气流动而间接冷却的。在层压过程中进行了优化,对聚酰亚胺表面进行了一些处理,并使用了优化的环氧树脂以实现最佳的机械粘合。本文将介绍复合电绝缘的发展,包括简短的测试结果。

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