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Composite core Nb/sub 3/Sn wires: preparation and characterization

机译:复合芯Nb / sub 3 / Sn线材的制备和表征

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摘要

Powder metallurgically processed composite-core Nb/sub 3/Sn wires, a novel type with filaments containing controlled amounts of normal conducting inclusions elongated in the wire axis, e.g., Ta or NbTi, have recently been developed. Composite cores replace the Nb cores, which are inserted either in a CuSn or in a Cu matrix for producing wires by the bronze route or by the internal Sn diffusion process, respectively. The ductile inclusions are deformed during the wire drawing process to long ribbons being >100 nm apart. If the reaction temperature is sufficiently low, the Ta or NbTi shows little reaction with the Nb/sub 3/Sn phase but reduces the A15 grain growth in the radial direction. The resulting enhanced pinning at the grain boundaries (artificial pinning) leads to higher critical-current densities, particularly in the field range B>14 T. A difference between the observed field dependence for Ta and NbTi inclusions in the present configuration is explained by different degrees of prestress. The achievement of higher J/sub c/ values at 10-12 T may be advantageous for their application in fusion magnets.
机译:最近已经开发了粉末冶金处理的复合芯Nb / sub 3 / Sn焊丝,这种新型的丝具有包含受控量的在焊丝轴线上伸长的正常导电夹杂物的细丝,例如Ta或NbTi。复合芯代替了Nb芯,这些Nb芯分别插入到CuSn或Cu基体中,用于通过青铜路线或内部Sn扩散工艺生产导线。延展性夹杂物在拉丝过程中变形为相距> 100 nm的长条带。如果反应温度足够低,则Ta或NbTi几乎不与Nb / sub 3 / Sn相反应,但是会降低A15在径向上的晶粒生长。晶界处增强的钉扎(人工钉扎)导致更高的临界电流密度,尤其是在B> 14 T的磁场范围内。在本配置中,观察到的Ta和NbTi夹杂物的场相关性差异由不同的解释预应力度。在10-12 T处获得更高的J / sub c /值可能有利于它们在聚变磁体中的应用。

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