Design of Electromagnet for high levitation force in 3D superconducting actuator

J. Joo, S. Kim, K. Hitomi, S. Murase
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Abstract

We have been developing a new type of 3-D superconducting actuator using the strong pinning force of HTS (high temperature superconducting) bulk. The system includes HTS bulk and two-dimensionally arranged multiple electromagnets. The application of HTS bulk enables stable levitation and suspension, and its performance is determined mainly by the spatial distribution of the generated magnetic field of the electromagnets. To enhance the levitation force in the actuator, it is necessary to design the optimized geometry of the electromagnets. The target of the design is to lead to an intensive concentration and abrupt gradient increase of the perpendicular component in the magnetic field through the HTS bulk over the electromagnets. For the optimized design of the electromagnets, we calculated the spatial distribution of the trapped magnetic field and the levitation force of the HTS bulk using 3-D FEM analysis that is adopted the critical state model.
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三维超导执行器中高悬浮力电磁铁的设计
利用高温超导体的强钉钉力,研制了一种新型的三维超导驱动器。该系统包括高温超导体和二维排列的多个电磁铁。高温超导体的应用实现了稳定的悬浮和悬浮,其性能主要取决于电磁铁产生的磁场的空间分布。为了提高执行器的悬浮力,需要对电磁铁的几何形状进行优化设计。设计的目标是通过电磁铁上方的高温超导体导致磁场中垂直分量的密集集中和突然梯度增加。针对电磁铁的优化设计,采用临界状态模型进行三维有限元分析,计算了高温超导体捕获磁场的空间分布和悬浮力。
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