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Superconducting properties of Nb3Al wire fabricated by the clad-chip extrusion method and the rapid-heating, quenching and transformation treatment

机译:复合包覆挤压法制备的Nb3Al线材的超导性能及快速加热,淬火和转变处理

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摘要

The study of a fabrication process for Nb3Al intermetallic compound wire and measurements of its superconducting properties are presented. The adopted process of fabrication for the superconducting wire consists of the clad-chip extrusion (CCE) method and the rapid-heating, quenching and transformation (RHQT) treatment. The former (CCE) is the processing of Nb/Al composite wire characterized by the extrusion of thin chips of Nb/Al clad-sheet in which the thickness ratio of the Nb-layer to the Al-layer corresponds to Nb3Al. The latter (RHQT) is the heat-treatment method to transform the CCE-processed Nb/Al composite wire into the Nb3Al intermetallic compound, which gives a nearly stoichiometric composition and a fine grain of Nb3Al for high performance of superconductivity. The experimental results show that the wire is successfully fabricated by the CCE method and the RHQT treatment, and its superconducting properties are improved to 18.02 K of T-c and 318 A/mm(3) of J(c) at 20 T and 4.2 K. It is also shown that 26.3 T of H-c2 is estimated by a Kramer plot. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 8]
机译:提出了Nb3Al金属间化合物复合线的制备工艺及其超导性能的测量方法。超导线材采用的制造工艺包括覆层芯片挤压(CCE)方法和快速加热,淬火和转变(RHQT)处理。前者(CCE)是Nb / Al复合线材的加工,其特征在于挤出Nb / Al覆层薄板,其中Nb层与Al层的厚度比对应于Nb3Al。后者(RHQT)是一种将CCE处理过的Nb / Al复合金属丝转变为Nb3Al金属间化合物的热处理方法,该化合物具有接近化学计量的组成和Nb3Al细晶粒,可实现超导性的高性能。实验结果表明,通过CCE方法和RHQT处理成功地制造了该导线,并在20 T和4.2 K下将其超导性能提高到Tc的18.02 K和J(c)的318 A / mm(3)。还显示通过Kramer图估计了26.3T的H-c 2。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:8]

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