首页> 外文期刊>Physica, C. Superconductivity and its applications >The property of (Bi,Pb)-2223 Ag-AgCu sheathed superconductors with various sheath assemblages
【24h】

The property of (Bi,Pb)-2223 Ag-AgCu sheathed superconductors with various sheath assemblages

机译:具有各种护套组件的(Bi,Pb)-2223 Ag-AgCu护套超导体的性能

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper the Ag-AgCu3 (Ag-97%, Cu-3%) sheathed (Bi,Pb)-2223 superconductors with the different sheath assemblages were manufactured and investigated with the help of I-c measurement, X-ray diffraction (XRD) and scanning electron microscope observation, thermal stability and bending and straightening measurements. The sheath assemblages were designed to be four forms according to the special assemblage of the two sheath materials in the inner and outer sheath of the multi-filament conductors, which include inner Ag (inner)-Ag (outer), Ag (inner)-AgCu3 (outer), AgCu3 (inner)-Ag (outer) and AgCu3 (inner)-AgCu3 (outer). Deformation observation for the four series of the samples indicates that there are different deformation degrees for these samples. Using AgCu3 as the outer sheath can improve the homogeneous deformation of the multi-filament tapes. Therefore, there needs different intermediate rolling reductions for the four series of the samples in order to achieve the best transport capacity. XRD measurements indicate that there are different amounts of 2223 in the four series of the conductors. Samples using Ag as the inner sheath and AgCu3 as the outer sheath have the largest amount of 2223 and the lowest amounts of the secondary phases, whereas samples using AgCu3 as the inner sheath have the lowest amount of 2223 and the largest amounts of the secondary phases. The thermal stability experiment shows that the transport capacity of the samples using AgCu3 as the outer sheath can be stabilized until the fifth circle, whereas the I-c values can be stabilized only until the third circle for the samples using Ag as the outer sheath. The best result is achieved for the samples using Ag as the inner sheath and AgCu3 as the outer sheath. The bending experiment shows the samples using AgCu3 as the outer sheath have better transport property during the bending treatment. The critical tensile stress of the samples using AgCu3 as the outer sheath is about one time larger than that of the standard Ag sheathed samples. From the aspects of the deformation and mechanical strength, samples using AgCu3 as the inner and outer sheath is a good choice. But considering the contamination of the sheath element on the ceramic core during the heat treatment in the samples using AgCu3 as the inner sheath, samples using Ag as the inner sheath and AgCu3 as the outer sheath may be an ideal choice in manufacturing of the Ag-AgCu sheathed conductors. This design not only avoids the contamination of the sheath element on the ceramic core but also is comparable in the deformation and mechanical strength aspects with that of the samples using AgCu3 as the inner and outer sheath. On the other hand, if adjusting the chemical composition of the ceramic core to fit the contamination of the sheath element, the choice using AgCu3 as the inner and outer sheath may also be a good choice. Using AgCu3 as the inner sheath and Ag as the outer sheath is obviously unsuitable for manufacturing of the alloy sheathed conductors even compared with that of the standard Ag sheathed conductors. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 24]
机译:本文制造了具有不同护套组件的Ag-AgCu3(Ag-97%,Cu-3%)护套(Bi,Pb)-2223超导体,并借助Ic测量,X射线衍射(XRD)进行了研究和扫描电子显微镜观察,热稳定性以及弯曲和矫直测量。根据在复丝导体的内,外护套中两种护套材料的特殊组合,将护套组合件设计为四种形式,包括内部Ag(内部)-Ag(外部),Ag(内部)- AgCu3(外部),AgCu3(内部)-Ag(外部)和AgCu3(内部)-AgCu3(外部)。对四个系列样品的变形观察表明,这些样品具有不同的变形程度。使用AgCu3作为外部护套可以改善复丝带的均匀变形。因此,对于四个系列的样品,需要不同的中间轧制压下量,以实现最佳的输送能力。 XRD测量表明,在四个系列的导体中存在不同数量的2223。以Ag为内护套,以AgCu3为外护套的样品具有最大的2223和次要相的数量,而以AgCu3为内护套的样品具有最少的2223和最大的次生相的数量。 。热稳定性实验表明,使用AgCu3作为外部护套的样品的传输能力可以稳定到第五个圆,而使用Ag作为外部护套的样品的I-c值只能稳定到第三个圆形。对于以Ag为内护套,以AgCu3为外护套的样品,可获得最佳结果。弯曲实验表明,以AgCu3为外皮的样品在弯曲处理过程中具有更好的传输性能。使用AgCu3作为外部护套的样品的临界拉伸应力比标准Ag护套样品的临界拉伸应力大一倍。从变形和机械强度方面来看,使用AgCu3作为内外护套的样品是一个不错的选择。但是,考虑到在使用AgCu3作为内护套的样品中进行热处理时,陶瓷芯上的护套元素受到污染,使用Ag作为内护套和以AgCu3作为外护套的样品可能是制造Ag-的理想选择。 AgCu护套导体。这种设计不仅避免了护套元件对陶瓷芯的污染,而且在变形和机械强度方面与使用AgCu3作为内外护套的样品相当。另一方面,如果要调整陶瓷芯的化学成分以适应护套元素的污染,则使用AgCu3作为内护套和外护套的选择也是一个不错的选择。与标准的Ag护套导体相比,使用AgCu3作为内护套和Ag作为外部护套显然不适合制造合金护套导体。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:24]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号