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Magnetic and Mechanical Design of a 15-T Large Aperture Dipole Magnet for Cable Testing

机译:用于电缆测试的15T大孔径偶极磁体的磁和机械设计

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A large aperture Nb3Sn dipole is proposed to replace the magnet assembly of EDIPO, which was irreversibly damaged in 2016. The goal is to generate a background field of 15 T at 4.2 K in a clear aperture of approximately 100 x 150 mm(2) and over a uniform length of 1000 mm in order to test superconducting cables for both fusion and high-energy physics applications. The magnet features a block-type coil design wound with wide Rutherford cable (two alternative coil cross sections are considered) and supported by a mechanical structure based on keys-and-bladders technology. In the end regions, the coils tilt up (flare) through a hard-way bend of the cables to provide room for the test well, following a layout already adopted in the LBNL HD2 and CERN-CEA FRESCA2 magnets. The two considered coil design alternatives aim at minimizing the mechanical stress in the coil windings. One coil pack design makes the use of two double pancake coils per pole, whereas the other alternative features three double pancakes per pole. Both design options are presented focusing on the results of numerical computations carried out with finite-element models to investigate peak stresses in the coils during room-temperature pre-loading, cool down, and powering.
机译:建议使用大孔径Nb3Sn偶极子代替EDIPO的磁体组件,该磁体在2016年受到不可逆损坏。目标是在约100 x 150 mm(2)的透明孔径下在4.2 K时产生15 T的背景场。可以在1000 mm的均匀长度上进行测试,以测试用于聚变和高能物理应用的超导电缆。该磁体具有块型线圈设计,该线圈设计缠绕有宽卢瑟福电缆(考虑了两个可选的线圈横截面),并由基于键和键技术的机械结构支撑。在末端区域,按照LBNL HD2和CERN-CEA FRESCA2磁体已经采用的布局,线圈通过电缆的艰难弯曲而向上倾斜(张开),从而为测试井提供了空间。两种考虑的线圈设计替代方案旨在最小化线圈绕组中的机械应力。一种线圈包装设计每极使用两个双煎饼线圈,而另一种替代方法是每极使用三个双煎饼。提出这两种设计方案时,都侧重于使用有限元模型进行的数值计算结果,以研究在室温预加载,冷却和供电过程中线圈中的峰值应力。

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