Magnetic-field-induced strain of hard 14M and soft 10M martensitic samples of Ni–Mn–Ga single crystals was measured and optically observed in a rotating magnetic field in one- and two-end-constrained conditions. The soft sample showed smooth, continuous deformation of 0.6% when two-end-constrained and 2.7% when one-end-constrained. The hard sample produced no strain when two-end-constrained, and discontinuous deformation of 1.8% when one-end-constrained. Thus, the constraints reduce, and even block, twin boundary motion. This finding must be considered in experiment and applications
Polycrystalline Ni–Mn–Ga samples were directionally solidified and trained in order to lower the twi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Small monocrystalline beams of the magnetic shape-memory alloy (MSMA) Ni–Mn–Ga, with a square 1×1 mm...
Magnetic-field-induced strain of hard 14M and soft 10M martensitic samples of Ni–Mn–Ga single crysta...
Large magnetic field-induced strains of up to 0.17% for a stress-free Ni53.1Mn26.6Ga20.3 single cry...
Large magnetic field induced strains of up to 0.17 for a stress free Ni53.1Mn26.6Ga20.3 single crys...
Magnetic shape memory alloys experience magnetic-field-induced torque due to magnetocrystalline anis...
In magnetically controlled shape memory (MSM) materials defonnation can be controlled by magnetic fi...
Field-induced strains of 6% are reported in ferromagnetic Ni–Mn–Ga martensites at room temperature. ...
We investigate the effect of temperature and applied magnetic field on the strain behavior of orient...
Ferromagnetic shape memory alloys (FSMA) have the possibility to induced a strain by applying a magn...
Magnetic shape memory alloys deform in an external magnetic field in two distinct ways: by axial str...
Magnetic shape memory alloy samples such as Ni-Mn-Ga elements change their shape when exposed to a v...
High mobility of twin boundary is crucial for magnetic shape memory effect. The twin boundary can be...
Polycrystalline Ni–Mn–Ga samples were directionally solidified and trained in order to lower the twi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Small monocrystalline beams of the magnetic shape-memory alloy (MSMA) Ni–Mn–Ga, with a square 1×1 mm...
Magnetic-field-induced strain of hard 14M and soft 10M martensitic samples of Ni–Mn–Ga single crysta...
Large magnetic field-induced strains of up to 0.17% for a stress-free Ni53.1Mn26.6Ga20.3 single cry...
Large magnetic field induced strains of up to 0.17 for a stress free Ni53.1Mn26.6Ga20.3 single crys...
Magnetic shape memory alloys experience magnetic-field-induced torque due to magnetocrystalline anis...
In magnetically controlled shape memory (MSM) materials defonnation can be controlled by magnetic fi...
Field-induced strains of 6% are reported in ferromagnetic Ni–Mn–Ga martensites at room temperature. ...
We investigate the effect of temperature and applied magnetic field on the strain behavior of orient...
Ferromagnetic shape memory alloys (FSMA) have the possibility to induced a strain by applying a magn...
Magnetic shape memory alloys deform in an external magnetic field in two distinct ways: by axial str...
Magnetic shape memory alloy samples such as Ni-Mn-Ga elements change their shape when exposed to a v...
High mobility of twin boundary is crucial for magnetic shape memory effect. The twin boundary can be...
Polycrystalline Ni–Mn–Ga samples were directionally solidified and trained in order to lower the twi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Small monocrystalline beams of the magnetic shape-memory alloy (MSMA) Ni–Mn–Ga, with a square 1×1 mm...