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Design of an opposing pair magnet system for ASTROMAG

机译:ASTROMAG的对对磁铁系统设计

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摘要

A magnet system comprising a pair of self-supporting disk-shaped coils has been designed for the ASTROMAG facility on the space station Freedom. The coils are connected in a quadrupole configuration in order to eliminate their dipole moment. One of the primary requirements of this design is that the magnet coils must have near-perfect structural integrity. To this end, each coil would be manufactured as a monolithic composite in which the superconducting wire is incorporated as one of the components. By utilizing a precision X-Y numerically controlled wiring machine, the coil can be built up in pancake layers by alternating prepreg sheets of fiber/epoxy (e.g. carbon or Kevlar fiber) with a layer of NbTi wire that spirals from OD to ID in one layer, from ID to OD in the next. and so on. Each disk magnet will have an ID of 0.4 m and an OD of 1.7 m. The peak field at the winding will be 7.2 T. The system is to operate at 1.8 K. and I/sub op//I/sub c/=0.5. Results of magnetic field and force calculations are presented, and the structural characteristics of the system are described.
机译:为空间站Freedom上的ASTROMAG设施设计了一个包括一对自支撑盘状线圈的磁体系统。线圈以四极配置连接,以消除偶极矩。该设计的主要要求之一是,电磁线圈必须具有近乎完美的结构完整性。为此,每个线圈将被制造为整体式复合材料,其中超导线作为部件之一被结合。通过使用精密的XY数控接线机,可以通过在纤维/环氧树脂(例如碳纤维或凯夫拉尔纤维)的预浸料薄片与一层从OD到ID呈螺旋形缠绕的NbTi导线之间交替来在薄煎饼层中构建线圈,从ID到OD。等等。每个磁盘磁铁的ID为0.4 m,OD为1.7 m。绕组处的峰值磁场将为7.2T。系统将在1.8 K.下运行,并且I / sub op // I / sub c / = 0.5。给出了磁场和力计算的结果,并描述了系统的结构特征。

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