Magnetic shape memory alloys deform in an external magnetic field in two distinct ways: by axial straining—known as magnetic-field-induced strain—and by bending when exposed to torque. Here, we examine the magnetic torque that a magnetic field exerts on a long Ni–Mn–Ga rod. A single crystal specimen of Ni–Mn–Ga was constrained with respect to bending and subjected to an external magnetic field. The torque required to rotate the specimen in the field was measured as a function of the orientation of the sample with the external magnetic field, strain, and the magnitude of the external magnetic field. The torque was analyzed based on the changes in the free energy with the angle between the field and the sample. The contributions of magnetocry...
Magnetic shape memory materials can deform by some percent via twin boundary motion under the influe...
Ni-Mn-Ga, a ferromagnetic shape-memory alloy, changes shape upon the application of a variable magne...
Large magnetic field-induced strains of up to 0.17% for a stress-free Ni53.1Mn26.6Ga20.3 single cry...
Magnetic shape memory alloys deform in an external magnetic field in two distinct ways: by axial str...
Magnetic shape memory alloys experience magnetic-field-induced torque due to magnetocrystalline anis...
Small monocrystalline beams of the magnetic shape-memory alloy (MSMA) Ni–Mn–Ga, with a square 1×1 mm...
This research characterizes ferromagnetic shape memory elements for use as mechanical actuators. A s...
The underlying physics of the giant magnetic or mechanical field-induced-strains in Ni–Mn–Ga alloys ...
Magnetic-field-induced strain of hard 14M and soft 10M martensitic samples of Ni–Mn–Ga single crysta...
In order to discuss the advent of the magnetic-field-induced strains for a single crystal Fe22:0Ni51...
Ferromagnetic shape memory alloys (FSMA) have the possibility to induced a strain by applying a magn...
We investigate the effect of temperature and applied magnetic field on the strain behavior of orient...
The influence of a rotating magnetic field on disk-shaped twinned Ni-Mn-Ga single crystals is studie...
In the present paper some magnetomechanical properties of a near-stoichiometric Ni-Mn-Ga magnetic sh...
Magnetic shape memory materials can deform by some percent via twin boundary motion under the influe...
Ni-Mn-Ga, a ferromagnetic shape-memory alloy, changes shape upon the application of a variable magne...
Large magnetic field-induced strains of up to 0.17% for a stress-free Ni53.1Mn26.6Ga20.3 single cry...
Magnetic shape memory alloys deform in an external magnetic field in two distinct ways: by axial str...
Magnetic shape memory alloys experience magnetic-field-induced torque due to magnetocrystalline anis...
Small monocrystalline beams of the magnetic shape-memory alloy (MSMA) Ni–Mn–Ga, with a square 1×1 mm...
This research characterizes ferromagnetic shape memory elements for use as mechanical actuators. A s...
The underlying physics of the giant magnetic or mechanical field-induced-strains in Ni–Mn–Ga alloys ...
Magnetic-field-induced strain of hard 14M and soft 10M martensitic samples of Ni–Mn–Ga single crysta...
In order to discuss the advent of the magnetic-field-induced strains for a single crystal Fe22:0Ni51...
Ferromagnetic shape memory alloys (FSMA) have the possibility to induced a strain by applying a magn...
We investigate the effect of temperature and applied magnetic field on the strain behavior of orient...
The influence of a rotating magnetic field on disk-shaped twinned Ni-Mn-Ga single crystals is studie...
In the present paper some magnetomechanical properties of a near-stoichiometric Ni-Mn-Ga magnetic sh...
Magnetic shape memory materials can deform by some percent via twin boundary motion under the influe...
Ni-Mn-Ga, a ferromagnetic shape-memory alloy, changes shape upon the application of a variable magne...
Large magnetic field-induced strains of up to 0.17% for a stress-free Ni53.1Mn26.6Ga20.3 single cry...