Magnetic shape-memory alloys tend to deform via magnetic-field-induced and stress-induced twin-boundary motion. The rather low martensite transformation temperature of ternary Ni–Mn–Ga limits the operating temperature for potential applications. By alloying 5 at.% cobalt, the martensite transformation temperature and the Curie temperature was increased from 70 and 110 °C respectively up to 160 °C. In the single crystalline samples two non-modulated structures with tetragonal and orthorhombic lattices were found. The non-modulated orthorhombic structure has similar lattice parameters to the pseudo-orthorhombic 14M Ni–Mn–Ga phase. The single crystal specimen with the non-modulated orthorhombic structure exhibited a cyclic permutatio...
Magnetic-field-induced strain of hard 14M and soft 10M martensitic samples of Ni–Mn–Ga single crysta...
Observations are presented, obtained by in situ straining and conventional TEM, of a transformation ...
Field-induced strains of 6% are reported in ferromagnetic Ni–Mn–Ga martensites at room temperature. ...
The magnetomechanical properties of ferromagnetic shape memory alloy Ni–Mn–Ga single crystals depend...
Deformation twinning is investigated in the martensitic phase of a Ni46.75Mn34Ga19.25 (at.%) alloy. ...
Low twinning stress (TS) is a prerequisite for magnetic shape memory functionality in ferromagnetic ...
Three Ni-Mn-Ga alloys with different chemical compositions and nonmodulated tetragonal martensitic ...
Ni-Mn-Ga alloys close to the stoichiometric composition Ni2MnGa belong to the quite new family of fe...
Ni2MnGa is a ferromagnetic shape memory alloy (FSMA). FSMAs exhibit a shape memory effect which is i...
Large magnetic field-induced strains of up to 0.17% for a stress-free Ni53.1Mn26.6Ga20.3 single cry...
Atomic-force microscopy (AFM), magnetic-force microscopy (MFM), and nanoindentation experiments were...
We investigate the effect of temperature and applied magnetic field on the strain behavior of orient...
The maximum actuation frequency of magnetic shape-memory alloys (MSMAs) significantly increases with...
The maximum actuation frequency of magnetic shape-memory alloys (MSMAs) significantly increases with...
Magnetic-field-induced strain of hard 14M and soft 10M martensitic samples of Ni–Mn–Ga single crysta...
Observations are presented, obtained by in situ straining and conventional TEM, of a transformation ...
Field-induced strains of 6% are reported in ferromagnetic Ni–Mn–Ga martensites at room temperature. ...
The magnetomechanical properties of ferromagnetic shape memory alloy Ni–Mn–Ga single crystals depend...
Deformation twinning is investigated in the martensitic phase of a Ni46.75Mn34Ga19.25 (at.%) alloy. ...
Low twinning stress (TS) is a prerequisite for magnetic shape memory functionality in ferromagnetic ...
Three Ni-Mn-Ga alloys with different chemical compositions and nonmodulated tetragonal martensitic ...
Ni-Mn-Ga alloys close to the stoichiometric composition Ni2MnGa belong to the quite new family of fe...
Ni2MnGa is a ferromagnetic shape memory alloy (FSMA). FSMAs exhibit a shape memory effect which is i...
Large magnetic field-induced strains of up to 0.17% for a stress-free Ni53.1Mn26.6Ga20.3 single cry...
Atomic-force microscopy (AFM), magnetic-force microscopy (MFM), and nanoindentation experiments were...
We investigate the effect of temperature and applied magnetic field on the strain behavior of orient...
The maximum actuation frequency of magnetic shape-memory alloys (MSMAs) significantly increases with...
The maximum actuation frequency of magnetic shape-memory alloys (MSMAs) significantly increases with...
Magnetic-field-induced strain of hard 14M and soft 10M martensitic samples of Ni–Mn–Ga single crysta...
Observations are presented, obtained by in situ straining and conventional TEM, of a transformation ...
Field-induced strains of 6% are reported in ferromagnetic Ni–Mn–Ga martensites at room temperature. ...