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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >A 50 mm bore superconducting dipole with a unique iron yoke structure
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A 50 mm bore superconducting dipole with a unique iron yoke structure

机译:具有独特铁轭结构的50毫米孔径超导偶极子

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摘要

A 50-mm-bore superconducting dipole with a thin stainless steel collar and a close-in elliptical iron yoke was designed to obtain a high transfer function and low saturation effects on the multipoles. A 1-m model was built and tested. The training behavior of the first 1-m model is presented at 4.3 K and 1.8 K. At 1.8 K it reached the record field of 10.06 T. The two layer cos theta winding uses 30 and 36 strand cables identical to the cables of the 50-mm-bore Superconducting Super Collider (SSC) dipole, and it has an operating field of 6.6 T at 4.35 K with a current of 5800 A. To evaluate behavior at high fields, the mechanical structure for the model was designed for 10 T. The thin collar itself provides only a minimum prestress of 10 MPa, and the full prestress of 70 MPa is given by the iron yoke. An aluminum spacer is used to control the gap size in the vertically split iron yoke. The tapered gap in the yoke is determined by the size of the Al spacer so that during cooldown there is no loss of coil prestress and the gap remains closed when the magnet is energized.
机译:设计了一个50毫米口径的超导偶极子,该极子具有一个薄的不锈钢套环和一个紧密的椭圆铁轭,以实现对多极子的高传递函数和低饱和效应。建立并测试了一个1-m模型。第一个1-m模型的训练行为表示为4.3 K和1.8K。在1.8 K时,达到了10.06 T的记录范围。两层cos theta绕组使用30和36股电缆,与50电缆相同毫米孔超导超级对撞机(SSC)偶极子,它在4.35 K的电流下具有6.6 T的工作磁场,电流为5800A。为评估在高磁场下的性能,该模型的机械结构设计为10T。薄轴环本身仅提供最小10 MPa的预应力,而70 MPa的完全预应力由铁轭提供。铝制垫片用于控制垂直分裂铁轭中的间隙尺寸。磁轭中的锥形间隙由Al隔圈的尺寸决定,因此在冷却期间不会损失线圈预应力,并且在磁铁通电时间隙保持闭合。

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