Abstract
Shape memory and magnetic properties of a Ni43 Co7 Mn39 Sn11 Heusler polycrystalline alloy were investigated by differential scanning calorimetry, the sample extraction method, and the three-terminal capacitance method. A unique martensitic transformation from the ferromagnetic parent phase to the antiferromagneticlike martensite phase was detected and magnetic-field-induced "reverse" transition was confirmed in a high magnetic field. In addition, a large magnetic-field-induced shape recovery strain of about 1.0% was observed to accompany reverse martensitic transformation, and the metamagnetic shape memory effect, which was firstly reported in a Ni45 Co5 Mn36.7 In13.3 Heusler single crystal, was confirmed in a polycrystalline specimen. © 2006 American Institute of Physics.
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CITATION STYLE
Kainuma, R., Imano, Y., Ito, W., Morito, H., Sutou, Y., Oikawa, K., … Kanomata, T. (2006). Metamagnetic shape memory effect in a Heusler-type Ni43Co 7Mn39Sn11 polycrystalline alloy. Applied Physics Letters, 88(19). https://doi.org/10.1063/1.2203211
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