首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of additions of Ca compounds to the filling powder on the reduction of MgO and the critical current density properties of ex situ processed MgB2 tapes
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Effect of additions of Ca compounds to the filling powder on the reduction of MgO and the critical current density properties of ex situ processed MgB2 tapes

机译:填充粉中添加Ca化合物对MgO还原和非原位MgB2带的临界电流密度特性的影响

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摘要

We have studied the effect of additions of Ca compounds, CaC2 and CaH2, to the filling powder on the transport critical current density (J(c)) properties of ex situ processed MgB2 tapes. These additives are expected to reduce MgO present in as-received commercial MgB2 powder and improve the grain coupling of MgB2 in the tapes. Heat treatment of the hand mixed powders, MgB2 and the Ca compounds, brings about both disappearance of MgB4 and formation of CaB6 and Mg, compared with heat treated MgB2 powder. They are observed much more clearly for the mixtures with CaH2 addition. The MgO content decreases by the additions of those compounds. Neither of the a-axis and the c-axis parameters of MgB2 are changed by the additions, suggesting no reactions of substitutions of Ca for Mg and C for B in MgB2. The J(c) properties of the tape samples using the hand mixed filling powder with CaC2 addition degrade, whereas those with CaH2 addition are slightly improved. When using the ball milled mixtures, slight contraction of the a-axis parameter occurs only by CaC2 addition. Although the additions cause the reactions similar to those observed for the hand mixed powders, the MgO content reduces more clearly, compared with the MgB2 content. The J(c) properties of the tapes are enhanced in the high-field and lowfield regions by the additions of CaC2 and CaH2, respectively. These enhancements are attributed to the carbon substitution, the improved grain coupling and the increased content of MgB2. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们研究了在填充粉中添加Ca化合物CaC2和CaH2对异位处理的MgB2胶带的运输临界电流密度(J(c))性能的影响。预期这些添加剂可以减少现存的商用MgB2粉中存在的MgO,并改善胶带中MgB2的颗粒耦合。与热处理的MgB2粉末相比,对手工混合粉末MgB2和Ca化合物进行热处理既会导致MgB4消失,又会形成CaB6和Mg。对于添加CaH2的混合物,可以更清楚地观察到它们。通过添加这些化合物,MgO含量降低。 MgB2的a轴参数和c轴参数均未因添加而改变,这表明在MgB2中,Ca替代Mg和C替代B没有反应。使用添加了CaC2的手动混合填充粉降低了胶带样品的J(c)性能,而添加了CaH2的带状样品的J(c)性能则有所改善。当使用球磨混合物时,仅通过添加CaC2可使a轴参数略有收缩。尽管添加引起的反应类似于手工混合粉末所观察到的反应,但与MgB2含量相比,MgO含量降低得更明显。通过分别添加CaC2和CaH2,可以在高场和低场区域增强磁带的J(c)特性。这些增强归因于碳取代,改善的晶粒耦合和增加的MgB2含量。 (C)2016 Elsevier B.V.保留所有权利。

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