首页> 外文会议>International cryogenic materials conference;ICMC;Cryogenic engineering conference;CEC >A NEW TECHNIQUE TO FABRICATE MULTIFILAMENT Nb_3Sn SUPERCONDUCTOR USING CABLED MONOCORE SUBELEMENTS
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A NEW TECHNIQUE TO FABRICATE MULTIFILAMENT Nb_3Sn SUPERCONDUCTOR USING CABLED MONOCORE SUBELEMENTS

机译:利用电缆单核子链制造多丝Nb_3Sn超导体的新技术

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Manufacture of multifilamentary Nb_3Sn superconducting wires having fine filaments usually involves two subelement stacking and three billet extrusion steps.A new technique of fabricating multifilamentary wires has been developed to eliminate one subelement stacking and one billet extrusion from the process by using cabled subelements. A bronze route Nb_3Sn superconducting wire with ~6,000 filaments of 4 urn diameter was fabricated using seven-strand cabled monocore subelements and compared with the wires produced using the conventional process. The workability of the new wire was excellent. Its critical current densities in magnetic fields and other superconducting performances were identical to that of the conventionally processed wires, and also meet the specifications for an industry standard wire. This technique, which can also be applied to fabricate multifilamentary NbTi superconducting wires, has the potential of reducing fabrication cost of multifilamentary superconducting wires.
机译:具有细丝的多丝Nb_3Sn超导线材的制造通常涉及两个子元素堆叠和三个坯段挤压步骤。 已经开发出一种制造复丝的新技术,以消除使用电缆状子元件的过程中的一个子元件堆叠和一个坯料挤出。使用七股电缆单芯子元件制造了一条直径约为6,000丝,直径为4 n的青铜线Nb_3Sn超导线,并将其与使用常规工艺生产的导线进行了比较。新焊丝的可加工性极好。它在磁场中的临界电流密度和其他超导性能与常规加工的电线相同,并且还符合工业标准电线的规格。该技术还可以用于制造多丝NbTi超导线材,具有降低多丝超导线材的制造成本的潜力。

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