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Influence of nano-Cu additive on MgB2 phase formation, processing temperature, and transport properties
11
Citations
27
References
2011
Year
Superconducting MaterialMagnetic PropertiesEngineeringTransport JcGrain SizeNano-cu AdditiveChemical EngineeringCorrosionSuperconductivityLow-temperature SuperconductivityMaterials EngineeringMaterials ScienceHigh-tc SuperconductivityMetallurgical InteractionProcessing TemperatureElemental MetalMicrostructureMinor Cu DopingHigh Temperature MaterialsHigh-temperature SuperconductivityApplied PhysicsMagnesium-based CompositeMgb2 Phase FormationAlloy Phase
Pure and nano-Cu doped MgB2/Fe superconducting wires were prepared by in situ powder-in-tube method at different temperatures (550–675 °C). The phase formation, microstructure, and transport critical current density of the wires were investigated as a function of the heat-treatment temperature. A small amount of nano-Cu addition (2.5 wt %) was found to dramatically decrease the reaction temperature of magnesium and boron, forming MgB2 without any degradation in the transport critical current. From x-ray diffraction and scanning electron microscopy analyses, it was found that the added Cu form a reacted phase Mg2Cu with Mg which melts at around 550 °C. This liquid phase helps the formation of MgB2 at a significant lower temperature with improved grain connectivity, grain size, and density. All Cu doped samples heat treated in the range of 550–650 °C exhibited a transport JC quite comparable to that of the pure sample processed at 650 °C, which shows that high quality MgB2 conductors can be produced even at 550 °C with minor Cu doping.
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