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Microstructural connectivity in sintered ex-situ MgB2 bulk superconductors

机译:烧结非原位MgB2块状超导体的微结构连通性

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We have performed combined high-resolution microstructural and grain orientation analyses to understand the key microstructural factors associated with high intergranular transport current in polycrystalline bulk forms of MgB2. The ex-situ method can produce MgB2 with relatively high packing factors; nevertheless, the connectivity of MgB2 fabricated by the ex-situ method (ex-situ MgB2) was less than that of in-situ MgB2. The poor connections between MgB2 grain aggregates cause the low connectivity of ex-situ MgB2. Plate-like pores are present between the aggregates of MgB2 grains in ex-situ MgB2; these pores remain even after prolonged self-sintering at high temperatures. In addition, MgB2 crystals decompose to MgB4 in sintering for a long period. Moreover, MgO particles are formed between MgB2 grain aggregates and inhibit interaggregate connections. In contrast, in-situ MgB2 fabricated at the same sintering conditions exhibits spherical pores between MgB2 grains, resulting in a uniform pore distribution and intergranular connection. These problems must be addressed to further enhance the connectivity in ex-situ MgB2. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们已经进行了高分辨率的微观结构和晶粒取向的组合分析,以了解与MgB2的多晶体形式中的高晶间运输电流相关的关键微观结构因素。异位方法可以生产具有较高填充因子的MgB2。然而,通过异位法制备的MgB2(异位MgB2)的连通性小于原位MgB2。 MgB2晶粒聚集体之间的不良连接导致异位MgB2的低连接性。异位MgB2中的MgB2晶粒聚集体之间存在板状孔;即使在高温下长时间自烧结后,这些孔仍然保留。另外,在长时间的烧结中,MgB 2晶体分解为MgB 4。此外,MgO颗粒在MgB2晶粒聚集体之间形成,并抑制聚集体之间的连接。相反,在相同的烧结条件下制备的原位MgB2在MgB2晶粒之间呈现球形孔,导致均匀的孔分布和晶间连接。必须解决这些问题,以进一步增强非原位MgB2的连接性。 (C)2015 Elsevier B.V.保留所有权利。

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