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Mechanical Performance of the LARP Nb$_{3}$Sn Quadrupole Magnet LQS01

机译:LARP Nb $ _ {3} $ Sn四极磁体LQS01的机械性能

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As part of the effort towards the development of Nb $_{3}$Sn magnets for future LHC luminosity upgrades, the LHC Accelerator Research Program (LARP) has fabricated and tested the quadrupole magnet LQS01. The magnet implements 3.4 m long Nb $_{3}$Sn coils contained in a support structure characterized by an external aluminum shell segmented in four sections. The room temperature pre-load of the structure is obtained by shimming load keys through bladders, pressurized during the loading operations and removed before cool-down. Temperature compensated strain gauges, mounted on structure components and coil poles, monitor the magnet's mechanical behavior during assembly, cool-down and, excitation. During the first test, LQS01 reached the target gradient of 200 T/m; the gauge data indicated that the aluminum shell was pre-tensioned to the target value estimated by numerical models, but a lack of pre-load was measured in the coil inner layer during ramping. As a result, the test was interrupted and the magnet disassembled, and inspected. A second test (LQS01b) was then carried out following a re-loading of the magnet. The paper reports on the strain gauge results of the first test and the analysis performed to identify corrective actions to improve the coil pre-stress distribution. The mechanical performance of the magnet during the second cool-down and test is then presented and discussed.
机译:作为为将来的LHC发光度升级开发Nb $ {3} $ Sn磁体的努力的一部分,LHC加速器研究计划(LARP)已制造并测试了四极磁体LQS01。该磁体实现了3.4 m长的Nb $ _ {3} $ Sn线圈,该线圈包含在一个支撑结构中,该支撑结构的特征是外壳分为四个部分。该结构的室温预加载是通过将加载键通过气囊填充,在加载操作期间加压并在冷却之前移除来获得的。温度补偿应变仪安装在结构部件和线圈极上,可在组装,冷却和激励过程中监控磁体的机械性能。在第一次测试中,LQS01达到了200 T / m的目标梯度;规范数据表明,铝壳已预张紧至数值模型估算的目标值,但是在倾斜过程中,线圈内层没有预紧力。结果,测试被中断并且磁体被拆卸并检查。重新加载磁体之后,进行了第二次测试(LQS01b)。该论文报告了首次测试的应变仪结果,并进行了分析以识别纠正措施以改善线圈的预应力分布。然后介绍并讨论了第二次冷却和测试过程中磁体的机械性能。

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