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Influence of the winding geometry on the critical currents and magnetic fields of cylindrical coils made of Bi(2223)Ag anisotropic tapes

机译:绕组几何形状对Bi(2223)Ag各向异性带制成的圆柱形线圈的临界电流和磁场的影响

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摘要

A theoretical model for the calculation of the critical currents of cylindrical magnets made of Bi(2223)Ag tapes has been developed. The model takes into account the real angle dependence of the critical current versus external magnetic field of a short sample, which enables to estimate the critical currents of individual turns of the winding. As a result figures in a 3-D representation showing the position of the weak spots in the winding were obtained. Consequently, a detailed analysis of the influence of the winding geometry on the critical currents and magnetic fields of the cylindrical magnets formed from the set of pancake coils was performed. It is shown that when optimizing the magnet geometry with respect to the inner bore diameter and the overall tape length, there exists only one winding configuration for which the central magnetic field has a maximum. An example of the optimum magnet design, utilizing the data measured on a 55 filament Bi(2223)Ag tape of Vacuumschmelze GmbH production, is presented.
机译:建立了用于计算由Bi(2223)Ag胶带制成的圆柱形磁体的临界电流的理论模型。该模型考虑了临界电流与短样本的外部磁场之间的实际角度相关性,从而可以估算绕组各匝的临界电流。结果,以3-D表示的图示出了绕组中的弱点的位置。因此,对绕组几何形状对由薄煎饼线圈组形成的圆柱形磁体的临界电流和磁场的影响进行了详细分析。结果表明,当相对于内孔直径和整个带长度优化磁体的几何形状时,仅存在一种绕组结构,其中心磁场具有最大的绕组结构。给出了最佳磁体设计的一个示例,该示例利用了在Vacuumschmelze GmbH生产的55根Bi(2223)Ag带上测得的数据。

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