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Critical current densities of superconducting MgB2 tapes prepared on the base of mechanically alloyed precursors

机译:在机械合金化前驱体的基础上制备的MgB2超导带的临界电流密度

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摘要

Cu- and Fe-cladded monofilamentary tapes and 19-filamentary tapes with Fe matrix have been prepared by the powder-in-tube (PIT) method using mechanically alloyed precursor powders consisting of the constituents Mg, B, and MgB2. Despite of the low T-c values of about 31 K for monofilamentary tapes with Fe sheath maximum critical current densities (J(c)) of 29 and 6 kA/cm(2) at 4.2 K in external magnetic fields of 7.5 and 10 T, respectively, were achieved. The maximum J(c) value of 18.5 kA/cm(2) at 20 K in a field of 2 T was obtained for these conductors. The heat treatment of the monofilamentary tapes under uniaxial pressure of 0.5 GPa led to enhanced J(c) values compared to those of tapes annealed under normal pressure. Up to 27 and 11 kA/cm2 were achieved at 4.2 K in external fields of 8 and 10 T, respectively, for samples annealed under pressure. For the 19-filamentary tape J(c) values up to 35 and 9 kA/cm(2) in fields of 7.5 and 10 T, respectively, were measured at 4.2 K. Investigation of the microstructure by optical microscopy, SEM/WDX and XRD have shown that the high J(c) values may be mainly due to the remarkably small grain size of the MgB2 phase and defects particularly precipitates of magnesium oxide. J(c) of the Cu-cladded tapes is one order of magnitude below that of Fe-cladded ones. The main reason for this discrepancy is the higher porosity of the superconducting cores with Cu sheath compared to that with Fe sheath. At higher sintering temperatures strong interactions between the Cu sheath and constituents of the precursor contribute to the suppression of the superconducting properties of Cu-sheathed conductors. (C) 2004 Elsevier B.V. All rights reserved.
机译:铜和铁包覆的单丝带和带有铁基体的19丝带已经通过管内粉末(PIT)方法使用由成分Mg,B和MgB2组成的机械合金化前驱体粉末制备。尽管在7.5和10 T的外部磁场中Fe护套最大临界电流密度(J(c))分别为29 K和6 kA / cm(2)的单丝带的Tc值低至约31 K ,实现了。对于这些导体,在2 T的电场中,在20 K下的最大J(c)值为18.5 kA / cm(2)。与在常压下退火的带相比,单丝带在0.5 GPa的单轴压力下的热处理导致J(c)值提高。对于在压力下退火的样品,分别在8 K和10 T的外部磁场下于4.2 K时分别达到27 kA / cm2和11 kA / cm2。对于19根丝带,J(c)的值分别在7.5 T和10 T时分别达到35 K和9 kA / cm(2),分别在4.2 K下进行了测量。通过光学显微镜,SEM / WDX和XRD已经表明,高的J(c)值可能主要是由于MgB 2相的晶粒非常小并且缺陷特别是氧化镁的沉淀。包铜带的J(c)比包铁带的J(c)低一个数量级。造成这种差异的主要原因是,与铁皮相比,铜皮超导芯的孔隙率更高。在较高的烧结温度下,Cu鞘层与前体成分之间的强烈相互作用有助于抑制Cu护套导体的超导性能。 (C)2004 Elsevier B.V.保留所有权利。

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