论文标题

基于BI2212 Rutherford Cable的HTS偶极插入材料的概念设计

Conceptual Design of an HTS Dipole Insert Based on Bi2212 Rutherford Cable

论文作者

Zlobin, Alexander V, Novitski, Igor, Barzi, Emanuela

论文摘要

美国磁铁开发计划(US-MDP)旨在开发高场加速器磁铁,其磁场超出了NB $ _3 $ SN技术的极限。基于第一代高温超导体BI $ _2 $ SR $ _2 $ CACU $ _2 $ _2 $ o $ $ _8 $(BI2212)的复合线和卢瑟福电缆的最新进展允许为此考虑它们。但是,BI2212电缆和电缆对横向应力和应变敏感,这些横向应力和应变在高场加速器中很大。这需要具有压力管理概念的磁铁设计,以管理线圈绕组中的方位角和径向应变,并防止BI2212导体的当前携带能力降解,甚至是其永久损坏。本文描述了一种新型的应力管理方法,该方法是在Fermilab开发的,用于高档大孔NB $ _3 $ SN加速器磁铁,现在正在基于BI2212 Rutherford Cable的高场偶极插入物应用。插入概念设计和主要参数,包括超导电线和电缆,以及线圈应力管理结构,关键的技术步骤和方法,测试配置及其目标参数。

The U.S. Magnet Development Program (US-MDP) is aimed at developing high field accelerator magnets with magnetic fields beyond the limits of Nb$_3$Sn technology. Recent progress with composite wires and Rutherford cables based on the first generation high temperature superconductor Bi$_2$Sr$_2$CaCu$_2$O$_8$ (Bi2212) allows considering them for this purpose. However, Bi2212 wires and cables are sensitive to transverse stresses and strains, which are large in high-field accelerator magnets. This requires magnet designs with stress management concepts to manage azimuthal and radial strains in the coil windings and prevent degradation of the current carrying capability of Bi2212 conductor or even its permanent damage. This paper describes a novel stress management approach, which was developed at Fermilab for high-field large-aperture Nb$_3$Sn accelerator magnets, and is now being applied to high-field dipole inserts based on Bi2212 Rutherford cable. The insert conceptual design and main parameters, including the superconducting wire and cable, as well as the coil stress management structure, key technological steps and approaches, test configurations and their target parameters are presented and discussed.

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