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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Lift-to-weight ratio dependence of lift and stability in an active-Maglev system
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Lift-to-weight ratio dependence of lift and stability in an active-Maglev system

机译:主动磁悬浮系统中升力与稳定性的升重比相关性

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In an active-Maglev system composed of YBCO bulk and electromagnets, lift-to-weight ratio dependence of lift and stability was investigated experimentally and theoretically. A bulk was levitated by an electromagnet after a field-cooling process for magnetization. It has been shown that lift and stability of the bulk are closely related to both the magnitude of trapped magnetic field and the magnetic field distribution generated by the electromagnet. Minimum field-cooling current for stable levitation, the operating current of electromagnet at initial levitation, and maximum stable-levitation height were measured as a function of the load on the top surface of the bulk. It was observed that the minimum trapped field for stable levitation increased with the load. Maximum permissible displacement in the radial direction was also investigated experimentally as a function of the load and levitation height. The maximum permissible displacement decreases with levitation height and stable-levitation range decreases with weight of load. Numerical analysis based on the three-dimensional finite element method was performed to investigate electromagnetic behaviors within bulk, especially stability at initial levitation. The stability depends on the ratio of operating current at initial levitation to field-cooling current.
机译:在由YBCO块体和电磁体组成的有源磁悬浮系统中,通过实验和理论研究了升力与重量的比值依赖性和稳定性。经过磁场冷却过程中的磁化使大块悬浮。已经表明,主体的升力和稳定性与捕获磁场的大小和电磁体产生的磁场分布都密切相关。测量了稳定悬浮的最小场冷却电流,初始悬浮时电磁铁的工作电流以及最大稳定悬浮高度,这些是随主体顶部表面载荷而变的。观察到,稳定悬浮的最小俘获场随载荷而增加。还通过实验研究了径向最大允许位移与载荷和悬浮高度的关系。最大允许位移随悬浮高度而减小,稳定悬浮范围随载荷重量而减小。进行了基于三维有限元方法的数值分析,以研究体积内的电磁行为,尤其是初始悬浮时的稳定性。稳定性取决于初始悬浮时的工作电流与现场冷却电流之比。

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