Micro X-Ray Diffraction Study of Polycrystalline MgB 2 Wire and Evaluation of Carbon Doping Effect Via Low-Temperature Sintering

M. Maeda, Dipak Patel, Dr., Hiroaki Kumakura, Dr., Gen Nishijima, Dr., Akiyoshi Matsumoto, Dr., Jun Hyuk Choi, Dr., Dong Gun Lee, Su-Hun Kim, Jung Ho Kim, Prof. Seyong Choi
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Abstract

Simple and efficient characterization of local structural states in materials is desirable for evaluating and tailoring the material performance. Herein, we have focused on micro X-ray diffraction and conducted a local structure characterization for superconducting wires having MgB2 polycrystalline cores. The critical current properties of the superconducting materials were controlled and improved by a low-temperature sintering approach with malic acid doping as a carbon source. The transport performance depending on the sintering and doping effects was found to be closely associated with the characterized properties of the local structures. The evaluation method will therefore be useful to develop composite conductors.
多晶mgb2丝的微x射线衍射研究及低温烧结碳掺杂效果评价
简单有效地表征材料的局部结构状态是评估和调整材料性能所需要的。在此,我们将重点放在微x射线衍射上,并对具有MgB2多晶核心的超导线进行了局部结构表征。采用掺杂苹果酸作为碳源的低温烧结方法控制和改善了超导材料的临界电流特性。烧结和掺杂效应对输运性能的影响与局部结构的表征性质密切相关。因此,该评价方法将有助于开发复合导体。
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