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Magnetic levitation using high temperature superconducting pancake coils as composite bulk cylinders

机译:使用高温超导煎饼线圈作为复合散装圆柱体的磁悬浮

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摘要

Stacks of superconducting tape can be used as composite bulk superconductors for both trapped field magnets and for magnetic levitation. Little previous work has been done on quantifying the levitation force behavior between stacks of tape and permanent magnets. This paper reports the axial levitation force properties of superconducting tape wound into pancake coils to act as a composite bulk cylinder, showing that similar stable forces to those expected from a uniform bulk cylinder are possible. Force creep was also measured and simulated for the system. The geometry tested is a possible candidate for a rotary superconducting bearing. Detailed finite element modeling in COMSOL Multiphysics was also performed including a full critical state model for induced currents, with temperature and field dependent properties and 3D levitation force models. This work represents one of the most complete levitation force modeling frameworks yet reported using the H-formulation and helps explain why the coil-like stacks of tape are able to sustain levitation forces. The flexibility of geometry and consistency of superconducting properties offered by stacks of tapes, make them attractive for superconducting levitation applications.
机译:超导带的叠层既可以用作复合的块状超导体,又可以用于俘获的场磁体和磁悬浮。以前很少做关于量化磁带和永磁体之间的悬浮力行为的工作。本文报道了缠绕到薄饼线圈中以用作复合散装圆柱体的超导带的轴向悬浮力特性,显示出与均匀散装圆柱体所期望的稳定力相似的稳定力。还测量了系统的力蠕变并进行了仿真。测试的几何形状可能是旋转超导轴承的候选方案。还执行了COMSOL Multiphysics中的详细有限元建模,包括感应电流的完整临界状态模型,具有温度和场相关属性以及3D悬浮力模型。这项工作代表了迄今为止使用H公式报告的最完整的悬浮力建模框架之一,并有助于解释为什么线圈状的磁带叠层能够承受悬浮力。叠带提供的几何形状灵活性和超导特性的一致性,使其对于超导悬浮应用具有吸引力。

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