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Design of a cryocooler-cooled large bore superconducting magnet for a 30T hybrid magnet

机译:用于30T混合磁体的低温冷却器大口径超导磁体的设计

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We are now developing a 30 T hybrid magnet utilizing a cryocooler-cooled superconducting magnet wound with highly strengthened (Nb, Ti)3Sn. Diameter of the room temperature bore of the superconducting magnet is 360 mm and it generates 11.1 T. Water cooled resistive insert magnet generates 18.9 T, thus the hybrid magnet generates a central field of 30.0 T. The (Nb, Ti)3Sn multifilamentary wires are strengthened by Cu/NbTi composite which volume ratio in conductor is about 35%. The reinforcing Cu/NbTi composite changes to CuTi intermetallic compounds during heat treatment for reaction of (Nb, Ti)3Sn phase formation. The (Nb, Ti)3Sn coil with inner diameter of 400 mm will be fabricated by wind and react method with Cu/NbTi reinforced (Nb, Ti)3Sn wires. The innermost section of (Nb, Ti)3Sn coil is wound with a wire which diameter is 1.85 mm and next second section is wound with a wire diameter of 1.8 mm. The (Nb, Ti)3Sn coil is operated at 303 A and generates 5.8 T. The NbTi coil is wound with NbTi wires of 2.0 mm and 1.6 mm diameters. The NbTi coil generates 5.3 T at an operating current of 350 A. The maximum hoop stress is under 220 MPa for (Nb, Ti)3Sn coil and 200 MPa for NbTi coil.
机译:我们现在正在开发一种30 T混合磁体,该磁体采用低温冷却器冷却的超导磁体,并缠绕有高强度(Nb,Ti)3Sn。超导磁体的室温孔直径为360 mm,它产生11.1T。水冷电阻插入磁体产生18.9 T,因此混合磁体产生的中心磁场为30.0T。(Nb,Ti)3Sn复丝为由Cu / NbTi复合材料增强,导体中的体积比约为35%。在热处理过程中,增强的Cu / NbTi复合材料转变为CuTi金属间化合物,用于(Nb,Ti)3Sn相形成的反应。内径为400mm的(Nb,Ti)3Sn线圈将通过绕线和反应方法与Cu / NbTi增强(Nb,Ti)3Sn线制成。 (Nb,Ti)3Sn线圈的最里面部分用直径为1.85 mm的导线缠绕,而下一个第二部分用直径为1.8 mm的导线缠绕。 (Nb,Ti)3Sn线圈在303 A下工作并产生5.8T。NbTi线圈缠绕有直径为2.0 mm和1.6 mm的NbTi线。 NbTi线圈在350 A的工作电流下产生5.3T。(Nb,Ti)3Sn线圈的最大环向应力在220 MPa以下,NbTi线圈的最大环向应力在200 MPa以下。

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