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Size and arrangement effect of Nb artificial pinning centers onflux pinning in Nb-Ti multifilamentary wires

机译:Nb人工钉扎中心的尺寸和排列对Nb-Ti复丝中助焊剂钉扎的影响

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Flux pinning properties of niobium-titanium multifilamentary wires with artificial pinning centers (APC) were studied. Previous investigations on the effects of different APC materials (Nb, Nb-7.5 wt.% Ta, Ta) on the flux pinning properties found that Nb pins had larger pinning force in comparison with other material and improved critical current density drastically in magnetic fields up to 5 T. In this paper, to increase the flux pinning force, 1, 7, 19 and 37 Nb pins were introduced into Nb-46.5 wt.% Ti filaments, and the volume fraction of Nb pins was varied from 0 to 25%. The effect of the size and arrangement of the Nb pins on the flux pinning properties was investigated. Consequently, a peak of the bulk flux pinning force density (FP) as a function of magnetic field shifts to a higher field as the pin interval becomes smaller. This behavior becomes more pronounced with decreasing a pin size because the pin deforms into a ribbon-like configuration. Furthermore, we investigated the effect of heat treatment on flux pinning to study the effect of boundary conditions between pin and Nb-Ti matrix. We also discuss the scaling behavior of FP
机译:研究了具有人工钉扎中心(APC)的铌钛复丝的助焊剂钉扎性能。先前对不同APC材料(Nb,Nb-7.5 wt。%Ta,Ta)对磁通钉扎性能的影响的研究发现,与其他材料相比,Nb钉具有更大的钉扎力,并且在磁场向上的情况下可大幅提高临界电流密度为了增加磁通钉扎力,在Nb-46.5 wt。%Ti细丝中引入了1,7,7,19和37 Nb钉,Nb钉的体积分数从0到25%不等。 。研究了Nb引脚的尺寸和排列方式对磁通钉扎特性的影响。因此,随着销间隔变小,作为磁场函数的体积通量钉扎力密度(FP)的峰值移向较高的磁场。随着销尺寸的减小,该行为变得更加明显,因为销变形为带状构造。此外,我们研究了热处理对助焊剂钉扎的影响,以研究钉与Nb-Ti基体之间边界条件的影响。我们还将讨论FP的缩放行为

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