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Journal ArticleDOI

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

Alexei Sozinov, +3 more
- 04 Mar 2002 - 
- Vol. 80, Iss: 10, pp 1746-1748
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TLDR
In this paper, a 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.
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)[110]p system was recorded. The results of mechanical tests and magnetic anisotropy property measurements are also reported.

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Citations
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Stress-assisted magnetic-field-induced strain in Ni-Fe-Ga-Co ferromagnetic shape memory alloys

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First-principles investigation of the composition dependent properties of Ni 2 + x Mn 1 − x Ga shape-memory alloys

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Shape memory effect and magnetostriction in polycrystalline Ni–Mn–Ga thin film microactuators

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TL;DR: In this article, Ni-Mn-Ga magnetic shape memory alloy (SMA) micro-trusses are created via a new additive manufacturing method combining 3D-printing of ∼400μm struts with an ink containing a polymer binder and elemental Ni, Mn, and Ga powders, binder burnout and metallic powder interdiffusion and homogenization to create the final alloy, and further sintering to increase strut density.
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Ferroelastic-switching-driven colossal shear strain and piezoelectricity in a hybrid ferroelectric

TL;DR: The electromechanical properties of these compounds suggest their potential in lightweight and high-energy-density devices, and the strategy described here could inspire the development of next-generation piezoelectrics and electroactive materials based on hybrid ferroelectrics.
References
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Journal ArticleDOI

Large magnetic‐field‐induced strains in Ni2MnGa single crystals

TL;DR: In this paper, the superelastic motion of twin boundaries in the martensitic phase of Ni2MnGa with magnetic fields of 8 kOe applied at 265 K was found to be associated with the staining.
Journal ArticleDOI

6% magnetic-field-induced strain by twin-boundary motion in ferromagnetic Ni–Mn–Ga

TL;DR: In this paper, a simple model accounts quantitatively for the dependence of strain on magnetic field and external stress using as input parameters only measured quantities, and the strain versus field curves exhibit appreciable hysteresis associated with the motion of the twin boundaries.
Journal ArticleDOI

Magnetostriction of martensite

TL;DR: In this article, a general strategy for inducing magnetostriction in ferromagnetic martensitic materials is described, and an analysis of domain redistribution caused by a magnetic field is given.
Journal ArticleDOI

Model for strain and magnetization in magnetic shape-memory alloys

TL;DR: In this paper, a simple phenomenological model for the magnetization process and field-induced strain by twin-boundary and phaseboundary motion is proposed for both the strong and weak anisotropy cases.
Journal ArticleDOI

Crystal structure of martensitic phases in Ni–Mn–Ga shape memory alloys

TL;DR: The crystal structures of the different martensitic phases observed in a wide variety of Ni-Mn-Ga alloy compositions have been studied in detail as discussed by the authors, and two approaches taken from the literature are analysed and discussed.
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