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The levitation characteristics of the magnetic substances using trapped HTS bulk annuli with various magnetic field distributions

机译:使用具有各种磁场分布的HTS体环俘获的磁性物质的悬浮特性

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We have been investigating the levitation system without any mechanical contact which is composed of a field-cooled ring-shaped high temperature superconducting (HTS) bulks [1]. In this proposed levitation system, the trapped magnetic field distributions of stacked HTS bulk are very important. In this paper, the spherical solenoid magnet composed of seven solenoid coils with different inner and outer diameters was designed and fabricated as a new magnetic source. The fabricated spherical solenoid magnet can easily make a homogeneous and various magnetic field distributions in inner space of stacked HTS bulk annuli by controlling the emerging currents of each coil. By using this spherical solenoid magnet, we tried to make a large magnetic field gradient in inner space of HTS bulk annuli, and it is very important on the levitation of magnetic substances. In order to improve the levitation properties of magnetic substances with various sizes, the external fields were reapplied to the initially trapped HTS bulk magnets. We could generate a large magnetic field gradient along the axial direction in inner space of HTS bulk annuli, and obtain the improved levitation height of samples by the proposed reapplied field method.
机译:我们一直在研究没有任何机械接触的悬浮系统,该系统由现场冷却的环形高温超导(HTS)块组成[1]。在这个提出的悬浮系统中,堆叠的HTS本体的俘获磁场分布非常重要。本文设计并制造了由七个内外径不同的螺线管线圈组成的球形螺线管磁铁,并将其作为一种新的磁源。通过控制每个线圈的涌出电流,所制造的球形螺线管磁体可以轻松地在堆叠的HTS本体环形空间的内部空间中形成均匀且各种磁场分布。通过使用这种球形螺线管磁体,我们试图在HTS本体环的内部空间中产生较大的磁场梯度,这对于悬浮磁性物质非常重要。为了改善各种尺寸的磁性物质的悬浮特性,将外部磁场重新应用于最初捕获的HTS大块磁体。我们可以在高温超导块状环的内部空间中沿轴向产生较大的磁场梯度,并通过提出的重新应用磁场方法获得改善的样品悬浮高度。

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