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Significant enhancement of flux pinning in MgB2/Fe/Cu superconducting wires fabricated by in situ powder-in-tube method

机译:原位粉管法制备的MgB2 / Fe / Cu超导线材的磁通钉扎作用显着增强

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Dense MgB2/Fe/Cu wires with and without Zr doping were successfully prepared through the in situ powder-in-tube (PIT) method. MgB2/Fe/Cu wires were sintered at 650-850 degrees C for 2 h in argon. Critical current density (J(c)) of the wires was measured at different temperatures in the magnetic field up to 8 T by standard four probe method. As shown by inductive measurements, the heat treatment temperature has an obvious influence on flux pinning of MgB2 wire. Also it is found that the flux pinning in MgB2 wire can be remarkably improved by Zr doping. The microstructure observation for MgB2 wires shows that MgB2Fe/Cu wire with Zr doping has better grain connectivity and higher density than other samples. The mechanism leading to high transport critical current densities of MgB2/Fe/Cu wires based on MgB2 grain size is discussed. The results indicate that the J(c) can be further improved to meet the requirement for applications by optimizing the process conditions. (c) 2005 Published by Elsevier B.V.
机译:通过原位管内粉末(PIT)方法成功地制备了带有和不带有Zr掺杂的致密MgB2 / Fe / Cu导线。 MgB2 / Fe / Cu线在氩气中于650-850摄氏度烧结2小时。通过标准的四探针法在高达8 T的磁场中的不同温度下测量了导线的临界电流密度(J(c))。如电感测量所示,热处理温度对MgB2焊丝的磁通钉扎有明显影响。还发现通过Zr掺杂可以显着改善MgB 2导线中的磁通钉扎。对MgB2焊丝的显微组织观察表明,掺Zr的MgB2Fe / Cu焊丝比其他样品具有更好的晶粒连通性和更高的密度。讨论了基于MgB2晶粒尺寸导致MgB2 / Fe / Cu导线具有高传输临界电流密度的机理。结果表明,通过优化工艺条件,可以进一步提高J(c)以满足应用需求。 (c)2005年由Elsevier B.V.

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