Grain boundaries hinder twin boundary motion in magnetic shape memory alloys and suppress magnetic field induced deformation in randomly textured polycrystalline material. The quest for high quality single crystals and the associated costs are a major barrier for the commercialization of magnetic shape memory alloys. Adding porosity to polycrystalline magneticshape memory alloys presents solutions for i the elimination of grain boundaries via the separation of neighboring grains by pores, and ii the reduction of production cost via replacing the directional solidification crystal growth process by conventional casting. Ni Mn Ga foams were produced with varying pore architecture and pore fractions. Thermo magnetic training procedures wer...
NiMnGa single crystals can produce large strain in moderate magnetic fields. It is the scope of this...
Funding Information: We gratefully acknowledge the support of the Aalto University seed funding for ...
Ferromagnetic shape memory alloys (FSMA) have recently attracted much interest and research because ...
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...
Foams with 55% and 76% open porosity were produced from a Ni-Mn-Ga magnetic shape-memory alloy by re...
Magnetic shape memory alloys MSMAs , exhibit large strains and hence are materials, which could sub...
Magnetic shape memory alloys (MSMAs), exhibit large strains and hence are materials, which could sub...
Magnetic shape memory alloys display magnetic-field-induced strain (MFIS) of up to 10% as single cry...
he magnetic shape-memory alloy Ni–Mn–Ga shows, in monocrystalline form, a reversible magnetic-field-...
The alloy Ni-Mn-Ga aroused great interest for application as a magnetic shape memory (MSM) material....
Porosity in polycrystalline Ni–Mn–Ga alloys reduces internal constraints imposed by grain boundaries...
Magnetic shape memory alloys (MSMA) strongly deform (up to 10%) when exposed to an external magnetic...
Magnetic shape memory alloys are promising materials to replace giant magnetostrictive materials and...
Ferromagnetic Ni–Mn–Ga shape memory alloys with large magnetic-field-induced strains are promising c...
NiMnGa single crystals can produce large strain in moderate magnetic fields. It is the scope of this...
Funding Information: We gratefully acknowledge the support of the Aalto University seed funding for ...
Ferromagnetic shape memory alloys (FSMA) have recently attracted much interest and research because ...
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...
Foams with 55% and 76% open porosity were produced from a Ni-Mn-Ga magnetic shape-memory alloy by re...
Magnetic shape memory alloys MSMAs , exhibit large strains and hence are materials, which could sub...
Magnetic shape memory alloys (MSMAs), exhibit large strains and hence are materials, which could sub...
Magnetic shape memory alloys display magnetic-field-induced strain (MFIS) of up to 10% as single cry...
he magnetic shape-memory alloy Ni–Mn–Ga shows, in monocrystalline form, a reversible magnetic-field-...
The alloy Ni-Mn-Ga aroused great interest for application as a magnetic shape memory (MSM) material....
Porosity in polycrystalline Ni–Mn–Ga alloys reduces internal constraints imposed by grain boundaries...
Magnetic shape memory alloys (MSMA) strongly deform (up to 10%) when exposed to an external magnetic...
Magnetic shape memory alloys are promising materials to replace giant magnetostrictive materials and...
Ferromagnetic Ni–Mn–Ga shape memory alloys with large magnetic-field-induced strains are promising c...
NiMnGa single crystals can produce large strain in moderate magnetic fields. It is the scope of this...
Funding Information: We gratefully acknowledge the support of the Aalto University seed funding for ...
Ferromagnetic shape memory alloys (FSMA) have recently attracted much interest and research because ...