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Development of a CuNb reinforced and stabilized Nb3Sncoil for a cryocooled superconducting magnet system

机译:开发用于低温冷却超导磁体系统的CuNb增强稳定Nb3Sncoil

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The cryocooled large bore CuNb/(Nb,Ti)3Sn superconducting magnet for the hybrid magnet was developed compactly by a react and wind and tension-winding method. This (Nb,Ti)3Sn coil formation technique has no need of a large heat-treatment furnace and vacuum epoxy-impregnation equipment for a large-scale superconducting magnet. The magnet was energized successfully to generate 7.4 T in a 220 mm φ room temperature bore. Further, it became clear that there is a problem with a connecting technique between winding and terminal. A 10 T-360 mm room temperature bore cryocooled superconducting magnet is being developed for a hybrid magnet system
机译:通过反应,风和张力-卷绕方法,紧凑地开发了用于混合磁体的低温冷却大口径CuNb /(Nb,Ti)3Sn超导磁体。这种(Nb,Ti)3Sn线圈形成技术不需要大型热处理炉和用于大型超导磁体的真空环氧浸渍设备。磁体成功通电,在220 mmφ的室温孔中产生7.4T。此外,很明显,绕组和端子之间的连接技术存在问题。正在开发一种用于混合磁体系统的10 T-360 mm室温孔低温冷却超导磁体

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