Magnetic shape memory alloys display magnetic-field-induced strain (MFIS) of up to 10% as single crystals. Polycrystalline materials are much easier to create but display a near-zero MFIS because twinning of neighboring grains introduces strain incompatibility, leading to high internal stresses. Pores reduce these incompatibilities between grains and thus increase the MFIS of polycrystalline Ni–Mn–Ga, which after training (thermo-magneto-mechanical cycling) exhibits MFIS as high as 8.7%. Here, we show that this training effect results from a decoupling of struts surrounding pores in polycrystalline Ni–Mn–Ga during the martensitic transformation. To show this effect in highly textured porous samples, neutron diffraction measurements were per...
The alloy Ni-Mn-Ga aroused great interest for application as a magnetic shape memory (MSM) material....
Ni-Mn-Ga alloys close to the stoichiometric composition Ni2MnGa belong to the quite new family of fe...
The microstructures and magneto-mechanical strain experiments of differently trained Ni-Mn-Ga single...
Magnetic shape memory alloys display magnetic-field-induced strain (MFIS) of up to 10% as single cry...
Recently, we have shown that a polycrystalline Ni–Mn–Ga magnetic shape-memory alloy, when containing...
Porosity in polycrystalline Ni–Mn–Ga alloys reduces internal constraints imposed by grain boundaries...
he magnetic shape-memory alloy Ni–Mn–Ga shows, in monocrystalline form, a reversible magnetic-field-...
Grain boundaries hinder twin boundary motion in magnetic shape memory alloys and suppress magnetic f...
The magnetic shape memory alloy Ni Mn Ga shows, in monocrystalline form, a reversible magnetic field...
Ferromagnetic Ni–Mn–Ga shape memory alloys with large magnetic-field-induced strains are promising c...
Monocrystalline Ni–Mn–Ga alloys show magnetic-field-induced strains (MFIS) of up to 10% as a result ...
Grain boundaries hinder twin boundary motion in magnetic shape-memory alloys and suppress magnetic-f...
NiMnGa single crystals can produce large strain in moderate magnetic fields. It is the scope of this...
Foams with 55% and 76% open porosity were produced from a Ni-Mn-Ga magnetic shape-memory alloy by re...
Magnetic shape memory alloys (MSMA) are fascinating materials that show a recoverable shape change i...
The alloy Ni-Mn-Ga aroused great interest for application as a magnetic shape memory (MSM) material....
Ni-Mn-Ga alloys close to the stoichiometric composition Ni2MnGa belong to the quite new family of fe...
The microstructures and magneto-mechanical strain experiments of differently trained Ni-Mn-Ga single...
Magnetic shape memory alloys display magnetic-field-induced strain (MFIS) of up to 10% as single cry...
Recently, we have shown that a polycrystalline Ni–Mn–Ga magnetic shape-memory alloy, when containing...
Porosity in polycrystalline Ni–Mn–Ga alloys reduces internal constraints imposed by grain boundaries...
he magnetic shape-memory alloy Ni–Mn–Ga shows, in monocrystalline form, a reversible magnetic-field-...
Grain boundaries hinder twin boundary motion in magnetic shape memory alloys and suppress magnetic f...
The magnetic shape memory alloy Ni Mn Ga shows, in monocrystalline form, a reversible magnetic field...
Ferromagnetic Ni–Mn–Ga shape memory alloys with large magnetic-field-induced strains are promising c...
Monocrystalline Ni–Mn–Ga alloys show magnetic-field-induced strains (MFIS) of up to 10% as a result ...
Grain boundaries hinder twin boundary motion in magnetic shape-memory alloys and suppress magnetic-f...
NiMnGa single crystals can produce large strain in moderate magnetic fields. It is the scope of this...
Foams with 55% and 76% open porosity were produced from a Ni-Mn-Ga magnetic shape-memory alloy by re...
Magnetic shape memory alloys (MSMA) are fascinating materials that show a recoverable shape change i...
The alloy Ni-Mn-Ga aroused great interest for application as a magnetic shape memory (MSM) material....
Ni-Mn-Ga alloys close to the stoichiometric composition Ni2MnGa belong to the quite new family of fe...
The microstructures and magneto-mechanical strain experiments of differently trained Ni-Mn-Ga single...