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Superconducting properties, microstructure and chemical composition of MgB2 sheathed materials

机译:MgB2包覆材料的超导性能,微观结构和化学组成

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The superconducting properties, the microstructure and the chemical composition of sheathed MgB2 tapes and of one wire, all synthesized by the powder-in-tube method, were investigated. At 4.2 K critical current densities up to 10(5) A cm(-2) (0 T) and 1.5 x 10(4) A cm(-2) (2.5 T) were obtained by transport measurements in the wire and the tapes, respectively. In the MgB2 matrix of all samples, oxygen was identified and mole fractions of 0-10 at% were determined by electron probe microanalysis. It was found by scanning electron microscopy that only the tapes showed boron-rich secondary phases about 10 mum in size. Comparing different tapes, the critical currents increase with the aspect ratio and decrease with the oxygen mole fraction in the MgB2 material. In the tapes, aspect ratios were inhomogeneous and critical current densities at low fields were limited by insufficient thermal stabilization. For understanding the internal oxidation in the MgB2 tapes, one tape was investigated by analytical transmission electron microscopy (TEM). The combination of energy-dispersive x-ray spectroscopy and electron spectroscopic imaging in the TEM yielded phase maps of this sample. It showed a heterogeneous microstructure, MgB2 grain sizes ranged between 20 nm and 1 mum. Oxygen was primarily bound in 20 nm-1 mum MgO precipitates and secondary phases, and no boron oxides could be evidenced. Randomly distributed 50 nm-1 mum boron-rich secondary phases (MgB4+delta, MgB7+gamma) embedded in the MgB2 matrix were identified. The possible reasons for the oxidation of the superconducting matrix are discussed. [References: 21]
机译:研究了全部由粉管法合成的MgB2护套带和一根导线的超导性能,微观结构和化学组成。通过在电线和胶带中进行传输测量,在4.2 K的临界电流密度下,可得到高达10(5)A cm(-2)(0 T)和1.5 x 10(4)A cm(-2)(2.5 T)的密度, 分别。在所有样品的MgB2基质中,通过电子探针微分析确定了氧气并确定了0-10 at%的摩尔分数。通过扫描电子显微镜发现,只有带显示出约10μm大小的富硼第二相。比较不同的胶带,临界电流随长宽比的增加而增加,随MgB2材料中的氧摩尔分数而降低。在胶带中,长宽比不均匀,在低电场下的临界电流密度受到热稳定性不足的限制。为了了解MgB2胶带中的内部氧化,通过分析型透射电子显微镜(TEM)研究了一根胶带。 TEM中能量色散X射线光谱学和电子光谱学成像的结合产生了该样品的相图。它显示出异质的微观结构,MgB2晶粒尺寸在20 nm和1 um之间。氧气主要结合在20 nm-1的MgO沉淀物和次生相中,没有氧化硼的迹象。确定了嵌入在MgB2基质中的随机分布的50 nm-1妈妈富含硼的次生相(MgB4 +δ,MgB7 +γ)。讨论了超导基体氧化的可能原因。 [参考:21]

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