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Numerical Study of the Shielding Properties of Macroscopic Hybrid Ferromagnetic/Superconductor Hollow Cylinders

机译:宏观铁磁/超导体空心圆柱屏蔽性能的数值研究

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We study the magnetic shielding properties of hybrid ferromagnetic/superconductor (F/S) structures consisting of two coaxial cylinders, with one of each material. We use an axisymmetric finite-element model in which the electrical properties of the superconducting tube are modeled by a nonlinear E-J power law with a magnetic-field-dependent critical current density whereas the magnetic properties of the ferromagnetic material take saturation into account. We study and compare the penetration of a uniform axial magnetic field in two cases: 1) a ferromagnetic tube placed inside a larger superconducting tube (Ferro-In configuration) and 2) a ferromagnetic tube placed outside the superconducting one (Ferro-Out configuration). In both cases, we assess how the ferromagnetic tube improves the shielding properties of the sole superconducting tube. The influence of the geometrical parameters of the ferromagnetic tube is also studied: It is shown that, upon an optimal choice of the geometrical parameters, the range of magnetic fields that are efficiently shielded by the high-temperature superconductor tube alone can be increased by a factor of up to 7 (2) in a Ferro-Out (Ferro-In) configuration. The optimal configuration uses a 1020 carbon steel with a thickness of 2 mm and a height that is half that of the superconducting cylinder (80 mm).
机译:我们研究了由两个同轴圆柱体(每种材料之一)组成的混合铁磁/超导体(F / S)结构的磁屏蔽性能。我们使用轴对称有限元模型,其中超导管的电学特性是通过非线性E-J幂定律建模的,其磁场强度取决于临界电流密度,而铁磁材料的磁学特性则考虑了饱和。我们在两种情况下研究和比较均匀轴向磁场的穿透力:1)将铁磁管放置在较大的超导管(Ferro-In配置)中,以及2)将铁磁管放置在超导管(Ferro-Out配置)之外。在这两种情况下,我们都评估了铁磁管如何改善唯一超导管的屏蔽性能。还研究了铁磁管的几何参数的影响:研究表明,通过最佳选择几何参数,仅高温超导管就能有效屏蔽的磁场范围可以通过以下方式增加:在Ferro-Out(Ferro-In)配置中的最大因数为7(2)。最佳配置使用厚度为2毫米,高度为超导圆柱体(80毫米)一半的1020碳钢。

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