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Mechanical design and analysis of 2-in-1 shell-typeNb3Sn dipole models for VLHC

机译:VLHC二合一壳型Nb3Sn偶极子模型的机械设计和分析

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Fermilab has begun investigating Nb3Sn twin aperture dipole magnet designs as a next step towards the realization of high field magnets for a Very Large Hadron Collider (VLHC). The magnet design is based on two-layer shell-type Nb3Sn coils with 43.5 mm aperture. Two different mechanical designs were investigated, one with “cold” iron yoke and the other with “warm” iron yoke. The former has a vertically split three-piece iron yoke with a cut parallel to a flux line to reduce the transverse magnetic flux. The two outer halves are locked in place by aluminum clamps. Both the clamps and the stainless skin provide the required pre-stress to the coils. The “warm” iron yoke design consists of thick freestanding stainless steel collars with wide keys and an insert separating the two coil blocks. The paper presents both the mechanical design and analysis for the two designs
机译:Fermilab已开始研究Nb3Sn双孔偶极磁体设计,这是实现超大型强子对撞机(VLHC)高磁场磁体的下一步。磁体设计基于孔径为43.5 mm的两层壳型Nb3Sn线圈。研究了两种不同的机械设计,一种带有“冷”铁轭,另一种带有“热”铁轭。前者有一个垂直分裂的三片式铁轭,其切线平行于磁通线以减小横向磁通量。两个外半部通过铝夹固定在适当的位置。夹具和不锈钢表皮均可为线圈提供所需的预应力。 “热”铁轭设计包括厚的独立式不锈钢项圈和宽键,以及一个将两个线圈块分开的插入件。本文介绍了两种设计的机械设计和分析

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