Investigation the Properties of Y-Ba-Cu-Oxide Superconductors Prepared by Hydraulic Pressing and Molding

Anna Maloveczky, M. Enisz-Bódogh, T. Kulcsár
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Abstract

Levitation applications of superconductors require the fabrication of bulk ceramic superconductors with special shapes. The conventional hydraulic pressing is not suitable for the production of superconductors with complicated forms, so we have applied slip casting to shape bulk superconductors. Superconducting powders with different YBa2Cu3Oy (123) and Y2BaCuO5 (211) phase content and different (Pt, Pb, Ce) additives were prepared by solid-state reactions. The nonsuperconducting (211) particles can be considered as flux pinning centres; thus the magnetic properties can be influenced by their amount and particle sizes. The addition of a few weight percent of dopant in the nominal composition can modify the particle size and distribution of the (211) grains. We have investigated and compared the phase compositions, morphologies and magnetic levitation forces of bulk superconductors formed by hydraulic pressing and moulding. The shielding abilities of a moulded superconductor were simulated with the COMSOL Multiphysics 4.4 software.
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液压模制取y - ba - cu氧化物超导体的性能研究
超导体的悬浮应用需要制造具有特殊形状的大块陶瓷超导体。传统的液压机不适合生产形状复杂的超导体,因此我们采用了滑移铸造来成型大块超导体。采用固相反应法制备了不同YBa2Cu3Oy(123)和Y2BaCuO5(211)相含量和不同(Pt、Pb、Ce)添加剂的超导粉体。非超导(211)粒子可视为通量钉住中心;因此,磁性能会受到它们的数量和粒度的影响。在公称组合物中加入几个重量百分比的掺杂剂可以改变(211)晶粒的粒径和分布。我们研究并比较了液压压成型的块状超导体的相组成、形态和磁悬浮力。利用COMSOL Multiphysics 4.4软件对超导体的屏蔽性能进行了数值模拟。
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