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Giant magnetic-field-induced strain in NiMnGa seven-layered martensitic phase

Applied Physics Letters · 2002 · Vol. 80(10) · pp. 1746–1748

Abstract

Giant magnetic-field-induced strain of about 9.5% was observed at ambient temperature in a magnetic field of less than 1 T in NiMnGa orthorhombic seven-layered martensitic phase. The strain proved to be caused by magnetic-field-controlled twin boundary motion. According to an analysis of x-ray diffraction data, the crystal structure of this phase is nearly orthorhombic, having lattice parameters a=0.619 nm, b=0.580 nm, and c=0.553 nm (in cubic parent phase coordinates) at ambient temperature. Seven-layer shuffling-type modulation along the (110)[11̄0]p system was recorded. The results of mechanical tests and magnetic anisotropy property measurements are also reported.

Shape Memory Alloy TransformationsMagnetic Properties and ApplicationsMagnetic and transport properties of perovskites and related materialsMaterials scienceOrthorhombic crystal systemCondensed matter physicsMagnetic shape-memory alloyMagnetic anisotropyMagnetic fieldMagnetizationPhase (matter)MartensiteCrystal structure
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References
Large magnetic-field-induced strains in Ni2MnGa single crystals
Applied Physics Letters · 1996 · 2,614 citations
Giant field-induced reversible strain in magnetic shape memory NiMnGa alloy
IEEE Transactions on Magnetics · 2000 · 353 citations
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