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Progress on the Development of the $Nb_3Sn$ 11T Dipole for the High Luminosity Upgrade of LHC

机译:用于大型强子对撞机高光度升级的$ Nb_3Sn $ 11T偶极子的开发进展

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摘要

The high-luminosity large hadron collider (LHC) project at CERN entered into the production phase in October 2015 after the completion of the design study phase. In the meantime, the development of the 11 T dipole needed for the upgrade of the collimation system of the machine made significant progress with very good performance of the first two-in-one magnet model of 2-m length made at CERN. The 11 T dipole, which is more powerful than the current main dipoles of LHC, can be made shorter with an equivalent integrated field. This will allow creating space for the installation of additional collimators in specific locations of the dispersion suppressor regions. Following tests carried out during heavy ions runs of LHC in the end of 2015, and a more recent review of the project budget, the installation plan for the 11 T dipole was revised. Consequently, one 11 T dipole full assembly containing two 11 T dipoles of 5.5-m length will be installed on either side of interaction point 7. These two units shall be installed during the long shutdown 2 in years 2019-2020. After a brief reminder on the design features of the magnet, this paper describes the current status of the development activities, in particular the short model programme and the construction of the first full scale prototype at CERN. Critical operations such as the reaction treatment and the coil impregnation are discussed, the quench performance tests results of the two-in-one model are reviewed and finally, the plan toward the production for the long shut down 2 is described.
机译:设计研究阶段完成后,欧洲核子研究中心的高发光度大型强子对撞机(LHC)项目于2015年10月进入生产阶段。同时,升级机器准直系统所需的11 T偶极子的开发取得了长足的进步,CERN制造的首个2 m长的二合一磁体模型的性能非常好。 11 T偶极子比目前LHC的主偶极子更强大,可以通过等效的积分场使其更短。这将为在分散抑制器区域的特定位置中安装额外的准直器提供空间。在2015年底进行LHC重离子运行期间进行的测试以及对项目预算的最新审查之后,对11 T偶极子的安装计划进行了修订。因此,将在相互作用点7的任一侧安装一个11 T偶极子全组件,其中包含两个5.5 m长度的11 T偶极子。这两个单元应在2019-2020年的长时间停机2中安装。在简要提醒磁铁的设计特征之后,本文介绍了开发活动的当前状态,特别是简短的模型程序和CERN的第一个全尺寸原型的构造。讨论了诸如反应处理和卷材浸渍等关键操作,回顾了二合一模型的淬火性能测试结果,最后,描述了长期停机2的生产计划。

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