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Giant field-induced reversible strain in magnetic shape memory NiMnGa alloy

IEEE Transactions on Magnetics · 2000 · Vol. 36(5) · pp. 3266–3268
Oleg HeczkoA. SozinovK. Ullakko

Abstract

A room temperature extensional strain of 5.1% was observed in martensitic Ni/sub 48/Mn/sub 31/Ga/sub 21/ alloy in the magnetic field of 480 kA/m. The magnitude of field-induced strain decreases with increasing external compressive stress applied in the direction of expansion. The compressive stress of about 3 MPa prevents the development of the substantial field-induced strain. Magnetization curves obtained by VSM exhibit an abrupt magnetization change and a transient hysteresis in the first quadrant. Large reversible field-induced strain and the abrupt magnetization change are due to the rearrangement or redistribution of martensitic twin variants by the applied magnetic field. It was confirmed by optical observation of movement and nucleation of martensitic twin boundaries.

Shape Memory Alloy TransformationsMagnetic and transport properties of perovskites and related materialsPaleontology and Evolutionary BiologyMaterials scienceMagnetizationCondensed matter physicsMagnetic shape-memory alloyMagnetic fieldMartensiteHysteresisNucleationDiffusionless transformationMagnetostriction
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References
Large magnetic-field-induced strains in Ni2MnGa single crystals
Applied Physics Letters · 1996 · 2,614 citations
Magnetic and magnetomechanical properties of Ni2MnGa
Journal of Magnetism and Magnetic Materials · 1999 · 474 citations
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