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Transport Properties of CuNb Reinforced $hbox{Nb}_{3}hbox{Sn}$ Rutherford Coils in High Fields

机译:CuNb增强的 $ hbox {Nb} _ {3} hbox {Sn} $ 的卢瑟福线圈的输运特性领域

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Rutherford cables have been investigated for the development of a 25-T cryogen-free superconducting magnet. We developed Rutherford cables composed of 16 Nb-rod-processed CuNb-reinforced strands with an 0.8-mm diameter. In this paper, the transport and mechanical properties of the epoxy impregnated multilayer coil of the Rutherford cable were investigated in high magnetic fields. The coil reached the maximum transport current of 1655 A at 4.2 K and 13.5 T after four times of training quenches. The electromagnetic stresses at the maximum transport current were 240 MPa at an inner surface of the coil and 210 MPa at an outer surface of the coil. The hoop strain of 0.2% for the coil was measured, which was applied at the outer surface of the coil. The strain value was the same as the calculated result using Wilson's equation and stress–strain curve of the strand.
机译:已经对卢瑟福电缆进行了研究,以开发25T不含致冷剂的超导磁体。我们开发了Rutherford电缆,该电缆由16条Nb棒处理的CuNb增强绞合线制成,直径为0.8 mm。本文研究了卢瑟福电缆中环氧浸渍多层线圈的输运和力学性能。经过四次训练淬火后,线圈在4.2 K和13.5 T时达到了最大输送电流1655A。在最大传输电流下的电磁应力在线圈的内表面为240 MPa,在线圈的外表面为210 MPa。测量了线圈的0.2%的环向应变,该应变被施加在线圈的外表面。应变值与使用Wilson方程和钢绞线的应力-应变曲线的计算结果相同。

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