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Spray-Formed High-Tin Bronze—A Homogeneous Pre-Material for ${rm Nb}_{3}{rm Sn}$ -Based Superconductor Wire

机译:喷射成型的高锡青铜—均质的用于$ {rm Nb} _ {3} {rm Sn} $$的超导线材

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摘要

The advantages of high-tin bronze which is produced by the innovative process “spray forming” and its commercial application in ${rm Nb}_{3}{rm Sn}$ superconductor wire are presented. An important decision in the processing of ${rm Nb}_{3}{rm Sn}$ superconductor wire after the bronze method is the choice of pre-material. As the bronze, together with the niobium, is subjected to hot and cold forming processes, homogeneous bronze pre-material is required. High-tin bronze produced by spray forming exhibits a high degree of homogeneity. Advantages of spray-formed bronze are the very fine, equi-axed grains, the homogeneous grain structure, the reduced delta phase particle size, the minimized delta phase volume fraction and the homogeneous element distribution. These advantages are given in all spray-formed bronze qualities with tin contents up to 20%. Spray-formed bronzes with tin contents of 14.5%, 15.5% and 16.0% and an additionally titanium content up to 0.3% are commercially produced and supplied to different superconductor wire manufacturers. The processing results show that the production process stability is excellent and the results of superconducting properties are reproducible. Bronzes with tin contents of 17% and 20% have also been successfully spray-formed and formed into tubes and rods. These bronzes are now subject of investigations regarding the use in future ${rm Nb}_{3}{rm Sn}$ superconducting magnets with increased magnetic field strength.
机译:提出了通过创新工艺“喷涂成型”生产的高锡青铜的优势及其在$ {rm Nb} _ {3} {rm Sn} $超导线中的商业应用。青铜法处理$ {rm Nb} _ {3} {rm Sn} $超导线材时的一个重要决定是预材料的选择。由于青铜与铌一起经历了冷热成型过程,因此需要均质的青铜预备材料。通过喷涂成型生产的高锡青铜具有高度的均质性。喷涂青铜的优点是非常细的等轴晶粒,均匀的晶粒结构,减少的δ相粒度,最小的δ相体积分数和均匀的元素分布。这些优势在锡含量高达20%的所有喷雾成型青铜品质中都具有。商业上生产锡含量分别为14.5%,15.5%和16.0%且钛含量最高为0.3%的喷涂青铜,并供应给不同的超导线材制造商。加工结果表明,生产过程的稳定性极好,超导性能的结果是可再现的。锡含量分别为17%和20%的青铜也已成功喷涂成型并制成管和棒。这些青铜器现在是有关将来在磁场强度增加的$ {rm Nb} _ {3} {rm Sn} $超导磁体中使用的研究对象。

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