In situ investigations of phase transformations in Fe-sheathed MgB 2 wires

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Abstract

The phase evolution inside Fe-sheathed wires containing precursor powders consisting of a mixture of Mg and B has been studied in situ by means of x-ray diffraction with hard synchrotron radiation (90 keV). Mg was found to disappear progressively during the heating stage. At 500 °C, the intensity of the Mg diffraction lines is reduced by about 20%. This effect is partly attributable to MgO formation. The MgB2 phase was detected from 575 °C. Fe 2B was forming at the interface between the sheath and the ceramic core at sintering temperatures of 780 and 700 °C, but not at 650 °C. The formation rate of this phase is strongly dependent on the heat treatment temperature. Its presence can be readily detected as soon as the average interface reaction thickness exceeds 150-200 nm.

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Grivel, J. C., Pinholt, R., Andersen, N. H., Kováč, P., Hušek, I., & Homeyer, J. (2006). In situ investigations of phase transformations in Fe-sheathed MgB 2 wires. Superconductor Science and Technology, 19(1), 96–101. https://doi.org/10.1088/0953-2048/19/1/016

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