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Preparation method of Bi-2212 high-temperature superconductivity wire

A bi-2212, high-temperature superconducting technology, applied in the usage of superconducting elements, superconducting devices, superconducting/high-conducting conductors, etc., can solve the problem that the core wire is difficult to achieve metallurgical bonding, the performance uniformity of the wire is reduced, and the middle part Problems such as core wire breakage, to achieve the effect of improving processing uniformity, low manufacturing cost, and reducing core breakage rate

Active Publication Date: 2012-07-11
NORTHWEST INSTITUTE FOR NON-FERROUS METAL RESEARCH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Drawing processing is the most important technology for preparing wire rods. However, during the drawing process, the tensile stress on the center of the round wire is much greater than that on the edge, which causes the core wire at the center of the wire rod to be easily broken during the processing process. It is difficult to achieve metallurgical bonding between the core wires during the drawing process, which exacerbates the possibility of fracture of the central core wire
Once the core wire in the center is broken, the core breaking phenomenon will gradually expand from the middle to the edge in subsequent processing, resulting in a broken core rate of the final wire generally exceeding 5%, resulting in a decrease in the uniformity of the wire performance, which has become a limit to its large-scale Important reasons to apply

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] (1) Bi-2212 superconducting powder is packed into the sterling silver tube until it is full, and the two ends of the sterling silver tube are closed with metal plugs to make a composite;

[0019] (2) Drawing the primary complex described in step (1) into a filament 1 with a diameter of 2.2 mm by using a drawing device, and then cutting the filament 1 into 19 sections of superconducting filaments on average by using a cutting device, Arrange the 19 sections of superconducting filaments according to the regular hexagonal arrangement and assemble them into the second pure silver tube to obtain a secondary composite of 19 superconducting cores; The size of the regular hexagonal structure formed by the arrangement of filaments matches;

[0020] (3) adopt drawing equipment to draw the secondary composite body described in step (2) into the filament two that diameter is 8mm, adopt cutting equipment to cut described filament two into 6 sections on average, simultaneously pure s...

Embodiment 2

[0025] (1) Bi-2212 superconducting powder is packed into the sterling silver tube until it is full, and the two ends of the sterling silver tube are closed with metal plugs to make a composite;

[0026] (2) Drawing the primary complex described in step (1) into a filament 1 with a diameter of 1.8 mm by using a drawing device, and then cutting the filament 1 into 37 sections of superconducting filaments on average by using a cutting device, Arrange 37 sections of superconducting filaments according to the regular hexagonal arrangement and assemble them into the second pure silver tube to obtain a secondary composite of 37 superconducting cores; The size of the regular hexagonal structure formed by the arrangement of filaments matches;

[0027] (3) adopt drawing equipment to draw the secondary composite body described in step (2) into the filament two that diameter is 6mm, adopt cutting equipment to cut described filament two into 18 segments on average, simultaneously silver ma...

Embodiment 3

[0032] (1) Bi-2212 superconducting powder is packed into the sterling silver tube until it is full, and the two ends of the sterling silver tube are closed with a metal plug to make a composite;

[0033] (2) Drawing the primary complex described in step (1) into a filament 1 with a diameter of 2.2 mm by using a drawing device, and then cutting the filament 1 into 19 sections of superconducting filaments on average by using a cutting device, Arrange the 19 sections of superconducting filaments according to the regular hexagonal arrangement and assemble them into the second pure silver tube to obtain a secondary composite of 19 superconducting cores; The size of the regular hexagonal structure formed by the arrangement of filaments matches;

[0034] (3) adopt drawing equipment to draw the secondary compound body described in step (2) into the filament two that diameter is 6mm, adopt cutting equipment to cut described filament two into 18 sections on average, simultaneously pure ...

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Abstract

The invention discloses a preparation method of Bi-2212 high-temperature superconductivity wire, comprising the following steps: firstly, filling superconductivity powder into a pipe; secondly, drawing to process and prepare a secondary compound; thirdly, after drawing the secondary compound, combining the secondary compound with a pure silver rod and a silver alloy rod, and then packing the compound into an AgMn alloy pipe so as to obtain a third compound; fourthly, drawing and processing the third compound into a wire; fifthly, carrying out semi-fused treatment on the wire, and obtaining the Bi-2212 high-temperature superconductivity wire after cooling a furnace. As for the preparation method, the process is simple, the design is reasonable, the manufacturing cost is low, and the application range is wide, and the method can be effectively applied to the preparation process of other relevant superconductivity wires. In the invention, one silver or silver alloy core wire is additionally arranged at the central part of a multi-core wire; therefore, the core wire can be prevented from being broken at the central part of multi-core Bi-2212 wire, the core breakage rate of the wire isobviously reduced, the processing uniformity of the wire is improved, the final uniformity of the wire is improved, and simultaneously the stretching performance of the wire is also improved; and thepreparation method is beneficial to the winding of magnet and other applications of superconductivity wire.

Description

technical field [0001] The invention belongs to the technical field of high-temperature superconducting wire preparation, and in particular relates to a preparation method of Bi-2212 high-temperature superconducting wire. Background technique [0002] Since Bi-2212 (Bi 2 Sr 2 CaCu 2 o x ) high-temperature superconductor has excellent low-temperature high-field current-carrying properties, and is the only high-temperature superconducting material that can be prepared into isotropic round wires, making it the first choice for the preparation of low-temperature high-field intercalated coils. [0003] At present, the preparation technology combining powder in tube method (PIT) and melting method is the mainstream technology for preparing high-performance Bi-2212 wire. The technology is to put Bi-2212 powder into a silver tube, prepare a multi-core composite by drawing and assembling, and then process it to the designed wire size, and then melt it at about 900°C to obtain a f...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01B13/00H01B12/02
CPCY02E40/641Y02E40/60
Inventor 郝清滨李成山张胜楠舒厚勇宋璐璐李高山熊晓梅贾佳林
Owner NORTHWEST INSTITUTE FOR NON-FERROUS METAL RESEARCH
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