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Development and qualification of ITER current lead electrical insulation

机译:ITER电流引线电绝缘的开发和鉴定

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The ITER high temperature superconducting current lead is a critical component for the magnet system, which has the benefit of reduction in the heat load of the cryogenic system compare with the conventional lead. The current lead is located in the coil terminal box and dry box at the end of the ITER feeder system. As a warm to cold transition section, the current leads feed the huge current from the power supply system into the coils. At the outer surface of the current lead, one layer of a composite insulation is applied to isolate the high voltage potential of the current lead to the ground potential of the environment. The main body of the current lead is that of a long cylinder, but at the cold termination and the cooling inlet, the local geometry is much more irregular. So the insulation wrapping and curing technology of the current lead had to be developed to acquire its uniform mechanical and electrical performance. Now, the multi-stage autoclave curing technology has been qualified in ASIPP and the series ITER current leads are being manufactured based on the qualified procedure. In this paper, the latest insulation progresses for the ITER current lead are introduced, the high voltage testing results as part of the formal qualification are presented and discussed.
机译:ITER高温超导电流引线是磁体系统的关键组件,与传统引线相比,它具有降低低温系统热负荷的优势。电流导线位于ITER馈线系统末端的线圈接线盒和干燥盒中。作为从暖到冷的过渡部分,电流引线将大电流从电源系统馈送到线圈中。在电流引线的外表面,应用了一层复合绝缘材料,以将电流引线的高压电势与环境的地电势隔离。电流引线的主体是长圆柱体的主体,但是在冷端和冷却入口处,局部几何形状更加不规则。因此,必须开发电流引线的绝缘包裹和固化技术,以使其具有统一的机械和电气性能。现在,多级高压釜固化技术已通过ASIPP认证,并且ITER电流引线系列将根据合格程序进行生产。本文介绍了ITER电流引线的最新绝缘进展,提出并讨论了作为正式认证一部分的高压测试结果。

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