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A Rotating-Coil Scanner for the Precise Magnetic Characterization of Superconducting Accelerator Magnets at Ambient Temperature

机译:旋转线圈扫描仪,用于在环境温度下的超导促进剂磁体的精确磁性表征

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摘要

This article presents a versatile scanning system for the magnetic measurements of the accelerator magnets. This system, based on a rotating-coil magnetometer, has been developed to meet the accuracy requirements imposed by the inner-triplet quadrupoles for the High Luminosity Large Hadron Collider (HL-LHC) project at CERN. The main field strength of the magnet must be measured with an accuracy of 100 ppm, and the required accuracy for the angle and the axis are 0.1 mrad and 0.1 mm, respectively. All these parameters must be measured both locally and integrated over the entire magnet length at various stages of production. In this way, it is possible to intercept the manufacturing errors at an early stage of production. Moreover, these measurements are used for the alignment of the magnet assembly in its cryostat. The measurements are performed at an ambient temperature, with low excitation currents. The presented system provides a full set of data for the characterization of the magnet in a single measurement run, including the field quality (multipole field errors) and the magnetic axis location at several longitudinal positions in the magnet bore. The system is able to achieve the required accuracy by using induction coils based on the printed circuit board (PCB) technology, a high-resolution encoder, and retro-reflectors for the laser tracker positioned directly on the PCB. The system is also equipped with a motor unit that allows a high degree of automation in the measurements.
机译:本文介绍了用于加速器磁体的磁测量的多功能扫描系统。基于旋转线圈磁力计的该系统已经开发出来,以满足CERN的高亮度大型HADRON撞机(HL-LHC)项目的内部三重型Quadrupols施加的精度要求。必须以100ppm的精度测量磁体的主场强度,并且角度和轴的所需精度分别为0.1mrad和0.1mm。必须在本地测量所有这些参数,并在生产的各个阶段整合在整个生产阶段。以这种方式,可以在生产早期阶段拦截制造误差。此外,这些测量用于使磁体组件在其低温恒温器中的对准。测量在环境温度下进行,具有低激励电流。所呈现的系统提供了一组全套数据,用于在单个测量运行中表征磁体,包括在磁体孔中的若干纵向位置处的场质量(多极性误差)和磁轴位置。该系统能够通过使用基于印刷电路板(PCB)技术,高分辨率编码器和用于直接位于PCB上的激光跟踪器的高分辨率编码器和复古反射器来实现所需的精度。该系统还配备有电机单元,可在测量中允许高度自动化。

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