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Design and Test of a ${hbox{Nb}}_{3}{hbox{Sn}}$ Subscale Dipole Magnet for Training Studies

机译:用于训练研究的$ {hbox {Nb}} _ {3} {hbox {Sn}} $次尺度偶极磁体的设计和测试

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As part of a collaboration between CEA/Saclay and the Superconducting Magnet Group at LBNL, a subscale dipole structure has been developed to study training in ${hbox{Nb}}_{3}{hbox{Sn}}$ coils under variable pre-stress conditions. This design is derived from the LBNL Subscale Magnet and relies on the use of identical ${hbox{Nb}}_{3}{hbox{Sn}}$ racetrack coils. Whereas the original LBNL subscale magnet was in a dual bore “common-coil” configuration, the new subscale dipole magnet (SD) is assembled as a single bore dipole made of two superposed racetrack coils. The dipole is supported by a new mechanical structure developed to withstand the horizontal and axial Lorentz forces and capable of applying variable vertical, horizontal and axial preload. The magnet was tested at LBNL as part of a series of training studies aiming at understanding of the relation between pre-stress and magnet performance. Particular attention is given to the coil ends where the magnetic field peaks and stress conditions are the least understood. After a description of SD design, assembly, cool-down and tests results are reported and compared with the computations of the OPERA3D and ANSYS magnetic and mechanical models.
机译:作为CEA / Saclay与LBNL的超导磁体小组合作的一部分,已经开发出了子尺度偶极子结构,以研究可变预压力下$ {hbox {Nb}} _ {3} {hbox {Sn}} $线圈的训练压力条件。此设计源自LBNL子刻度磁铁,并依赖于使用相同的$ {hbox {Nb}} _ {3} {hbox {Sn}} $跑道线圈。原始的LBNL子级磁体是双孔“共线圈”配置,而新的子级偶极磁体(SD)组装成由两个叠置的跑道线圈制成的单孔偶极子。偶极子由一种新的机械结构支撑,该机械结构经开发可承受水平和轴向洛伦兹力,并能够施加可变的垂直,水平和轴向预紧力。作为一系列培训研究的一部分,该磁体在LBNL进行了测试,旨在了解预应力和磁体性能之间的关系。特别要注意的是对线圈端的磁场峰值和应力条件了解得最少。在对SD设计进行描述之后,将报告组装,冷却和测试结果,并将其与OPERA3D和ANSYS磁和机械模型的计算结果进行比较。

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