Foams with 55% and 76% open porosity were produced from a Ni-Mn-Ga magnetic shape-memory alloy by replication casting. These polycrystalline martensitic foams display a fully reversible magnetic-field- induced strain of up to 0.115% without bias stress, which is about 50 times larger than nonporous, fine-grained Ni-Mn-Ga. This very large improvement is attributed to the bamboolike structure of grains in the foam struts which, due to reduced internal constraints, deform by magnetic-field-induced twinning more easily than equiaxed grains in nonporous Ni-Mn-Ga
Monocrystalline Ni–Mn–Ga alloys show magnetic-field-induced strains (MFIS) of up to 10% as a result ...
Magnetic shape-memory alloys change shape in the presence of a variable magnetic field. Ni-Mn-Ga is ...
Single crystalline Ni-Mn-Ga is well known as a prototype ferromagnetic shape memory alloy (FSMA) exh...
Foams with 55% and 76% open porosity were produced from a Ni-Mn-Ga magnetic shape-memory alloy by re...
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...
Grain boundaries hinder twin boundary motion in magnetic shape-memory alloys and suppress magnetic-f...
he magnetic shape-memory alloy Ni–Mn–Ga shows, in monocrystalline form, a reversible magnetic-field-...
Porosity in polycrystalline Ni–Mn–Ga alloys reduces internal constraints imposed by grain boundaries...
Recently, we have shown that a polycrystalline Ni–Mn–Ga magnetic shape-memory alloy, when containing...
Ferromagnetic Ni–Mn–Ga shape memory alloys with large magnetic-field-induced strains are promising c...
Magnetic shape memory alloys display magnetic-field-induced strain (MFIS) of up to 10% as single cry...
The off-stoichiometric Ni2MnGa Heusler alloy is a magnetic shape-memory alloy capable of reversible ...
Monocrystalline Ni–Mn–Ga alloys show magnetic-field-induced strains (MFIS) of up to 10% as a result ...
Magnetic shape-memory alloys change shape in the presence of a variable magnetic field. Ni-Mn-Ga is ...
Single crystalline Ni-Mn-Ga is well known as a prototype ferromagnetic shape memory alloy (FSMA) exh...
Foams with 55% and 76% open porosity were produced from a Ni-Mn-Ga magnetic shape-memory alloy by re...
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...
Grain boundaries hinder twin boundary motion in magnetic shape-memory alloys and suppress magnetic-f...
he magnetic shape-memory alloy Ni–Mn–Ga shows, in monocrystalline form, a reversible magnetic-field-...
Porosity in polycrystalline Ni–Mn–Ga alloys reduces internal constraints imposed by grain boundaries...
Recently, we have shown that a polycrystalline Ni–Mn–Ga magnetic shape-memory alloy, when containing...
Ferromagnetic Ni–Mn–Ga shape memory alloys with large magnetic-field-induced strains are promising c...
Magnetic shape memory alloys display magnetic-field-induced strain (MFIS) of up to 10% as single cry...
The off-stoichiometric Ni2MnGa Heusler alloy is a magnetic shape-memory alloy capable of reversible ...
Monocrystalline Ni–Mn–Ga alloys show magnetic-field-induced strains (MFIS) of up to 10% as a result ...
Magnetic shape-memory alloys change shape in the presence of a variable magnetic field. Ni-Mn-Ga is ...
Single crystalline Ni-Mn-Ga is well known as a prototype ferromagnetic shape memory alloy (FSMA) exh...