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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Performance of the Optimized Mechanical Design of the CLIC Main-Beam Quadrupole Magnet Prototype
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Performance of the Optimized Mechanical Design of the CLIC Main-Beam Quadrupole Magnet Prototype

机译:CLIC主束四极磁体原型优化机械设计的性能

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摘要

The Main-Beam Quadrupole (MBQ) magnets of CLIC, the Compact Linear Collider understudy at the CERN Laboratory in Geneva, are part of a critical magnet family, considering the industrial production challenges. An R & D program on the MBQ magnets was launched in 2010 for studying and investigating several assembly solutions in order to minimize the procurement cost of a large series of magnets comprising more than 4000 units. In this paper, the performance of the latest configuration is presented, comparing the results of magnetic measurements with previous magnet model variants. Innovative solutions for an efficient and fast fiducialization of the MBQ quadrupoles and alignment with respect to beam trajectory were also studied and developed inside the PACMAN Project, a CERN project supported by the European Union via the Framework Programme Marie Curie actions. The advantages of the mechanical design of the iron yoke and the assembly and alignment procedures are presented and discussed.
机译:考虑到工业生产挑战,Clic的主束正线(MBQ)磁铁Clic,Comnear Langeratory的Compenear Collerdy Conspuldy,是关键磁铁家族的一部分。 MBQ磁铁上的研发计划于2010年推出,用于研究和调查多个装配解决方案,以最大限度地减少包含4000多个单位的大系列磁铁的采购成本。在本文中,提出了最新配置的性能,将磁测量结果与先前的磁体模型变体进行了比较。在Pacman项目内,还研究了由欧洲联盟通过框架计划Marie Curie行动支持的欧洲联盟支持的CERN项目的高效和快速挑剔的MBQ四轮节和梁轨迹对准的创新解决方案。呈现和讨论了铁轭机械设计的优点和组装和对准程序。

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