Enhanced magnetocaloric effect tuning efficiency in Ni-Mn-Sn alloy ribbons

2017 
Abstract The present work was undertaken to investigate the effect of microstructure on the magnetic entropy change of Ni 50 Mn 37 Sn 13 ribbon alloys. Unchanged sample composition and cell parameter of austenite allowed us to study strictly the correlation between the average grain size and the total magnetic field induced entropy change (Δ S T ). We found that a size-dependent martensitic transformation tuning results in a wide temperature range tailoring (>40 K) of the magnetic entropy change with a reasonably small variation on the peak value of the total field induced entropy change. The peak values varied from 6.0 J kg −1  K −1 to 7.7 J kg −1  K −1 for applied fields up to 2 T. Different tuning efficiencies obtained by diverse MCE tailoring approaches are compared to highlight the advantages of the herein proposed mechanism.
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