首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Case Study of a 20 T- $phi$400 mm Room Temperature Bore Superconducting Outsert for a 45 T Hybrid Magnet
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Case Study of a 20 T- $phi$400 mm Room Temperature Bore Superconducting Outsert for a 45 T Hybrid Magnet

机译:45 T混合磁体的20 T- $ phi $ 400 mm室温孔超导插口的案例研究

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The High Field Laboratory for Superconducting Materials (HFLSM) and the Tsukuba Magnet Laboratory (TML) conducted in collaboration a case study on development of a 50 T-class hybrid magnet. To construct a high magnetic field magnet with compact and energy-saving design as well as with easy operation and maintenance, one has to develop high-strength Nb $_{3}$Sn strand cables, with maximized superconducting characteristics and which can withstand a large electromagnetic force over 500 MPa . For this purpose, the HFLSM has proposed and investigated the effect of repeated bending treatment (prebending) on Nb $_{3}$Sn strands internally reinforced with CuNb stabilizer leading to significant enhancement of the critical current density. In this report we present our results on application of the prebending effect to the development of high-strength strand cables. The designed prebent-strand cables are composed of three CuNb/Nb$_{3}$ Sn strands ($3timesphi=$ 1.73 mm ) and four stainless steel strands ($4timesphi=$ 1.73 mm). High-strength CuNb/Nb$_{3}$ Sn strand cables have shown a stress limit of 552 MPa at 0.4% strain, and a critical current of ${rm I}_{rm c}=$ 1000 A at 18.5 T and 2.0 K. For such high-strength strand cables, a 20 T superconducting magnet with a room temperature bore ($phi=$ 400 mm ) consisting of five layers made of CuNb/Nb$_{3}$ Sn and two layers of NbTi was designed. The coil parameters are: inner diameter $phi=$ 440 mm, outer diameter -$phi=$ 1332 mm, coil height 1321 mm, inductance 350 H and magnetic stored energy 144 MJ at 908 A of the operation current. Winding of the coil was experimentally successfully simulated using dummy $3+4$ strands cable composed of three Cu strands and 4 stainless steel strands with a similar design to the $3+4$ strands superconducting cable presented above. The 20 T superconducting coil will be used as a 20 T outsert for a 25 T water-cooled resistive insert to obtain a 45 T hybrid magnet.
机译:超导材料高场实验室(HFLSM)和筑波磁体实验室(TML)共同进行了开发50 T级混合磁体的案例研究。为了构造紧凑,节能设计并且易于操作和维护的高磁场磁体,必须开发具有最大超导特性并且可以承受的高强度Nb $ _ {3} $ Sn绞合电缆。超过500 MPa的大电磁力。为此,HFLSM提出并研究了重复弯曲处理(预弯曲)对用CuNb稳定剂内部增强的Nb $ _ {3} $ Sn股线的影响,从而显着提高了临界电流密度。在本报告中,我们介绍了将预弯曲效应应用于高强度绞合电缆开发的结果。设计的弯曲绞线电缆由三根CuNb / Nb $ _ {3} $锡绞线($ 3timesphi = $ 1.73 mm)和四根不锈钢绞合线($ 4timesphi = $ 1.73 mm)组成。高强度CuNb / Nb $ _ {3} $ Sn绞线在0.4%应变下的应力极限为552 MPa,在18.5 T时的临界电流为$ {rm I} _ {rm c} = $ 1000 A对于这种高强度绞合电缆,一个20 T超导磁体具有室温孔($ phi = $ 400 mm),由五层CuNb / Nb $ _ {3} $ Sn和两层设计了NbTi。线圈参数为:内径$ phi = $ 440 mm,外径-$ phi = $ 1332 mm,线圈高度1321 mm,工作电流908 A时的电感350 H和磁储能144 MJ。使用由3个Cu股和4个不锈钢股构成的虚拟$ 3 + 4 $股电缆,通过与上述$ 3 + 4 $股超导电缆相似的设计,成功地模拟了线圈的缠绕。 20 T超导线圈将用作25 T水冷电阻插入件的20 T插口,以获得45 T混合磁体。

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