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arxiv: 2312.14580 · v1 · pith:2DNKFAZK · submitted 2023-12-22 · cond-mat.mtrl-sci

Synthesis of hard magnetic {α}-MnBi phase by high pressure torsion and field assisted annealing

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classification cond-mat.mtrl-sci
keywords alphamnbiphaseannealingformationmagneticfieldhard
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Bulk composites using powder blends of Mn and Bi with equal atomic ratios are consolidated and severely deformed by high-pressure torsion (HPT). Subsequent annealing treatments lead to the formation of the ferromagnetic and rare-earth free hard magnetic {\alpha}-MnBi phase. The initial phase formation is studied by in-situ high-energy XRD annealing experiments showing a beneficial influence of HPT-deformation on the amount of {\alpha}-MnBi. The nucleation sites are strongly increased, thus the volumetric {\alpha}-MnBi phase content exceeds 50 vol.%. A lower HPT-pressure of 2 GPa is found to be preferred over 5 GPa to obtain high {\alpha}-MnBi contents. Annealing is done with or without applying an external magnetic field. Additionally, influences of the HPT-induced shear deformation are discussed and correlated with preferred diffusion path ways fostering the formation of anisotropic {\alpha}-MnBi phase.

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