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Flux pinning behavior in Nb50Ti/Cu superconducting composite with different form of artificial pinning center

机译:具有不同形式的人工钉扎中心的Nb50Ti / Cu超导复合材料的助焊剂钉扎行为

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摘要

Artificial pinning center (APC) niobium-titanium composites achieve very high critical current density value at low magnetic field (below 5 T), but they are inferior to conventional composites at high magnetic fields (above 7 T) due to weak flux pining force. Therefore, realization of flux pinning behavior and improvement of flux pinning force of NbTi composite are very important. In this paper, three forms of niobium APC were introduced into Nb50Ti/Cu composites, that is, island-shaped, net-shaped and sheet-shaped Nb APC. The results show that Nb50Ti/Cu composites with island-shaped APC have highest flux pinning force over other two kinds of composites with net-shaped and sheet-shaped APC, however, this difference will be reduced after heat treatment process. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 5]
机译:人工钉扎中心(APC)铌钛复合材料在低磁场强度(低于5 T)下可获得非常高的临界电流密度值,但由于弱磁通钉扎力,它们在高磁场强度(高于7 T)下不如常规复合材料。因此,实现NbTi复合材料的磁通钉扎行为和提高磁通钉扎力非常重要。本文将Nb50Ti / Cu复合材料引入了三种形式的铌APC,即岛状,网状和片状Nb APC。结果表明,岛形APC的Nb50Ti / Cu复合材料具有比网状和片状APC的其他两种复合材料更高的磁通钉扎力,但是热处理后这种差异将减小。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:5]

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