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Characterization and coil test results for a multifilamentary NbTi conductor utilizing artificial pinning center technology

机译:利用人工钉扎中心技术的多丝NbTi导体的表征和线圈测试结果

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The introduction of pinning centers via the controlled addition of a second phase, with the correct size and spacing, has been proposed as a method for producing a material with optimum flux pinning and hence a higher critical current density in practical superconductors. The demonstration of such artificial pinning center (APC) materials has been the aim of recent collaborative efforts with several US manufacturers. This paper reports the coil test results for a multifilamentary NbTi conductor fabricated using an APC technique. The conductor showed improved performance compared to earlier APC conductors, and its performance is comparable to that found in conventional multifilamentary NbTi conductors. In addition to coil test results. results of low-field magnetization, scanning electron microscopy (SEM), and transmission electron microscopy (TEM) are reported and compared with similar results on conventional NbTi.
机译:已经提出了通过以适当的尺寸和间距控制第二相的添加来引入钉扎中心,作为用于生产具有最佳通量钉扎并且因此在实际超导体中具有更高的临界电流密度的材料的方法。这种人造钉扎中心(APC)材料的演示一直是最近与多家美国制造商合作努力的目标。本文报告了使用APC技术制造的多丝NbTi导体的线圈测试结果。与早期的APC导体相比,该导体的性能有所提高,并且其性能可与传统的多丝NbTi导体相媲美。除了线圈测试结果。报告了低场磁化,扫描电子显微镜(SEM)和透射电子显微镜(TEM)的结果,并将其与常规NbTi上的类似结果进行了比较。

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