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On the Manufacture of Silver-Sheathed Bi-2212 High Temperature Superconducting Wires

机译:银护套Bi-2212高温超导线的制造

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High temperature superconductors (HTS) are presently being considered for a variety of defense and commercial applications. However, problems associated with low critical current density (J_c) in long length conductors still need to be addressed. It is realized that success in the fabrication of long lengths of wire and tape (up to 1 km) with optimum superconducting properties relies on improved manufacturing technologies. Unfortunately, there is no systematic study concerning the effect of processing parameters on the green properties of wires and tapes during the deformation processes. The focus of this investigation centered on silver (Ag) sheathed Bi-2212 wire forming processes and use of the two most common techniques, wire drawing and hydrostatic extrusion. Billets of 6.35 mm outside diameter were reduced separately by five different die sequences to a final diameter of 1.63 mm. Wires made by these procedures were characterized for properties such as Bi-2212 relative packing density, sheath material thickness, deformation force, elongation, drawing friction, and microstructural and mechanical properties. These results indicated that the amount of reduction per pass has a significant impact on the characteristics of non-heat treated wires and on the mechanical aspects of the wire drawing operations.
机译:当前正在考虑将高温超导体(HTS)用于各种国防和商业应用。然而,仍然需要解决与长导体中的低临界电流密度(J_c)相关的问题。已经认识到,成功制造具有最佳超导性能的长距离的电线和带材(长达1 km)取决于改进的制造技术。不幸的是,关于变形过程中工艺参数对电线和带材生坯性能的影响,尚无系统的研究。这项研究的重点集中在银(Ag)包覆的Bi-2212线材成型工艺以及两种最常用的技术(线材拉伸和静液压挤压)的使用上。外径为6.35毫米的坯料通过五个不同的模头顺序分别减小到最终直径为1.63毫米。通过这些程序制造的金属丝具有诸如Bi-2212相对堆积密度,护套材料厚度,变形力,伸长率,拉伸摩擦以及微结构和机械性能等特性。这些结果表明,每道次的减少量对未热处理的焊丝的特性以及拉丝操作的机械方面有重大影响。

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