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Measurement and Analysis of Axial End Forces in a Full-Length Prototype of LHC Main Dipole Magnets

机译:LHC主偶极磁体全长原型中轴向端力的测量和分析

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摘要

A full-length, twin aperture prototype (MBP2N1) dipole magnet for the LHC project was assembled at CERN with collared coils delivered by industry. The design of this prototype is close to that foreseen for the dipole series manufacture as far the coil geometry and that of the yoke components are concerned. The bolts that transfer the axial magnetic forces from the coil ends to the cold mass end plates were instrumented to verify the axial coil support. These axial forces were initially measured after partial assembly, during a standard and an accelerated cool down Introduction to 1.9 K, and during magnet excitation up to 9.2 T. High force levels were observed, triggering a comparison with analytical models and measurements routinely made on 1-m single aperture dipole models. The prototype magnet was re-assembled with lower initial axial force settings and with additional instrumentation, to monitor these forces during the entire assembly process, and re-tested, to possibly correlate axial forces with training behaviour. This paper reports about the experimental observations and provides models towards their understanding
机译:用于大型强子对撞机项目的全长双孔原型(MBP2N1)偶极磁体在欧洲核子研究组织(CERN)组装,并带有工业生产的带圈线圈。就线圈几何形状和轭部件的几何形状而言,该原型的设计与偶极系列制造中的预期设计接近。对将轴向磁力从线圈端传递到冷端块的螺栓进行了检测,以验证轴向线圈的支撑。这些轴向力最初是在部分组装后,在标准和加速冷却至1.9 K的过程中以及在磁铁激励到9.2 T的过程中进行测量的。观察到高的作用力水平,触发了与分析模型的比较和按常规对1 -m单孔偶极子模型。用较低的初始轴向力设置和额外的仪器重新组装了原型磁体,以在整个组装过程中监视这些力,并进行了重新测试,以使轴向力与训练行为相关联。本文报告了有关实验观察的内容,并提供了对其理解的模型

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