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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Low cost drilled billet production method for Cu-Nb composite wire
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Low cost drilled billet production method for Cu-Nb composite wire

机译:Cu-Nb复合线材的低成本钻坯生产方法

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摘要

The primary requirements of conductor wires used for pulsed magnets are high strength and high electrical conductivity. There are several methods available to produce these wires, albeit expensive. This paper presents a preliminary result of a manufacturing method, which incorporates the conventional drilled-billet technique. The project can be classified into two stages. In the first stage, a processing method was developed to optimize the strength of the primary Cu-Nb/Ti rods, which were used as inserts in drilled Cu billets. An assembly of the Cu billets and the primary Cu-Nb/Ti rods was made, and this was subsequently deformed by swaging, avoiding an extrusion process. The microstructure, mechanical properties and electrical conductivity of the wires were evaluated at various stages of the processing. Details of the processing and characterization techniques used are provided in this paper. Although, the processing resulted in a wire with a reasonable conductivity of 78.8 IACS% at room temperature, its tensile strength was low. The low tensile strength value was attributed to a lack of adequate bonding in the material. Improvement in the manufacturing process is currently being implemented, with the view to address the bonding issue
机译:用于脉冲磁体的导线的主要要求是高强度和高电导率。有几种方法可以生产这些导线,尽管价格昂贵。本文介绍了一种制造方法的初步结果,该方法结合了常规的钻孔坯料技术。该项目可以分为两个阶段。在第一阶段,开发了一种加工方法来优化初级Cu-Nb / Ti棒的强度,该棒被用作钻孔Cu坯料的镶块。组装了铜坯和主要的Cu-Nb / Ti棒,然后通过模锻使其变形,避免了挤压过程。在加工的各个阶段对电线的微观结构,机械性能和导电性进行了评估。本文提供了所使用的处理和表征技术的详细信息。尽管该处理导致导线在室温下具有78.8 IACS%的合理电导率,但其抗拉强度却很低。低的抗拉强度值归因于材料中缺乏足够的粘结。为了解决粘接问题,目前正在对制造工艺进行改进。

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