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Design, Tests, and Repair Procedures for the Electrical Insulation of the Superconducting W7-X Magnets

机译:W7-X超导磁体的电绝缘的设计,测试和维修程序

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The Wendelstein 7-X (W7-X) stellarator fusion experiment is presently under construction at the Max-Planck-Institut für Plasmaphysik in Greifswald Germany. The W7-X machine has a superconducting magnet system with 50 non-planar and 20 planar coils grouped in five equal modules. The operation of the W7-X machine requires a reliable insulation system of the superconducting magnets. Starting in the design phase the components have to consider the insulation system, weak points of the insulation must be identified and countermeasures must be taken, e.g. for the crossings of conductors inside the windings, the shape of handmade insulated areas and the quench detection cable design. The manufacturing has to be based on qualified procedures and materials, e.g. the vacuum pressure impregnation of the glass epoxy insulation as well as the hand-made glass epoxy wrappings must be thoroughly qualified and tested during the whole manufacturing process. A set of accompanying tests, especially high voltage tests, during the manufacturing and assembly process helps to assure the quality of the insulation.
机译:Wendelstein 7-X(W7-X)星体融合实验目前正在德国格赖夫斯瓦尔德的Max-Planck-InstitutfürPlasmaphysik进行建设。 W7-X机器具有一个超导磁体系统,该系统具有50个非平面线圈和20个平面线圈,并分为五个相等的模块。 W7-X机器的操作需要超导磁体的可靠绝缘系统。从设计阶段开始,组件必须考虑绝缘系统,必须识别绝缘的薄弱点并采取对策,例如用于绕组内导体的交叉,手工绝缘区域的形状和失超检测电缆的设计。制造必须基于合格的程序和材料,例如在整个制造过程中,必须对玻璃环氧绝缘材料的真空压力浸渍以及手工制作的玻璃环氧包装材料进行彻底的鉴定和测试。在制造和组装过程中进行的一组伴随测试,尤其是高压测试,有助于确保绝缘质量。

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