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Crossing in the magnetic force-gap hysteresis curve of magnetic levitation systems with a high-Tc superconductor

机译:高Tc超导体的磁悬浮系统的磁力间隙磁滞曲线的相交

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摘要

For the magnetic levitation system consisting of a high-Tc superconductor and permanent magnet, the relation curve of magnetic force with gap between these two components is known as a hysteresis loop, that is, the approaching and departing portions envelop a complete one, and generally these two portions do not cross each other. However, in some special cases this crossing arises, and makes the complete loop broken. In this paper, by the numerical simulation of the magnetic force-gap curve in large numbers of physical and geometrical parameters, two typical crossings were found. To investigate the crossing and explore its physical causes, for one of the crossings, the current density in the superconductor was further calculated and its magnitude and vector distribution at the gaps nearby where the crossing arises were obtained. Based on these calculation results and an adequate discussion, the conclusion was induced that the crossing in the magnetic force-gap hysteresis curve results from applied magnetic field’s incomplete and insufficient penetrating in superconductor.
机译:对于由高Tc超导体和永磁体组成的磁悬浮系统,磁力与这两个分量之间的间隙的关系曲线称为磁滞回线,即,接近部分和离开部分包裹了一个完整的环,通常这两个部分不交叉。但是,在某些特殊情况下,会出现这种交叉,并使完整的循环中断。本文通过大量物理和几何参数的磁力间隙曲线的数值模拟,发现了两个典型的交叉点。为了研究交叉点并探究其物理原因,对于其中一个交叉点,进一步计算了超导体中的电流密度,并获得了交叉点附近间隙处的大小和矢量分布。根据这些计算结果和适当的讨论,得出的结论是,磁力间隙磁滞曲线的交叉是由于施加的磁场在超导体中的不完全和穿透不足所致。

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