The magnetic properties and reversibility of the magnetocaloric effect of Ni50Mn35In15 have been studied in the vicinity of the phase transition using magnetization and direct adiabatic temperature change (ΔTad) measurements in magnetic fields up to 14 T. The magnetostructural phase transitions (MSTs) between a martensitic phase (MP) with low magnetization (paramagnetic or antiferromagnetic) and a nearly ferromagnetic austenitic phase were detected from thermomagnetic curves, M(T,H), at the applied magnetic fields up to 5 T. The MST temperature was found to be nearly independent of magnetic field for H < 5 T, and shifted to lower temperature with the further increase of magnetic field to 14 T. A large and nearly reversible inverse magnetoca...
The magnetic, magnetotransport, and magnetocaloric properties near compound phase transitions in Ni ...
We report on the high irreversible adiabatic temperature change of −8 K in a magnetic field change o...
Ni-Mn-X (X = In, Sn, and Sb) based Heusler alloys show a strong potential for magnetic refrigeration...
"The magnetic properties and reversibility of the magnetocaloric effect of Ni50Mn35In15 have been st...
The magnetic and magnetocaloric characteristics of Ni50Mn35In15 Heusler alloy are studied in low and...
The magnetic and magnetocaloric characteristics of Ni50Mn35In15 Heusler alloy are studied in low and...
The magnetic, magnetocaloric and critical behavior properties are systematically investigated for th...
Ni50Mn35In14.25B0.75 is a typical representative of the family of metamagnetic In-based Heusler allo...
AbstractAdiabatic temperature change, resulting from MCE, is a complex effect depending on in-field ...
We have studied the magnetocaloric effect (MCE) in the shape-memory Heusler alloy Ni50Mn35In15 by di...
It has been found that Ni50Mn35In14B exhibits with increasing temperature a first-order magnetostruc...
AbstractIn this work we experimentally study the magnetic properties and magnetocaloric effect (MCE)...
Magnetocaloric effects (MCE) in the Ni50Mn35In15, Ni50.2Mn34.85In14.95, and Ni50Mn35In14.25В0.75Heus...
A study of the magnetocaloric effect (MCE) in the ferromagnetic Heusler alloys Ni50Mn37+xSb13−x (x =...
A study of the magnetocaloric effect (MCE) in the ferromagnetic Heusler alloys Ni50 Mn37+x Sb13-x (x...
The magnetic, magnetotransport, and magnetocaloric properties near compound phase transitions in Ni ...
We report on the high irreversible adiabatic temperature change of −8 K in a magnetic field change o...
Ni-Mn-X (X = In, Sn, and Sb) based Heusler alloys show a strong potential for magnetic refrigeration...
"The magnetic properties and reversibility of the magnetocaloric effect of Ni50Mn35In15 have been st...
The magnetic and magnetocaloric characteristics of Ni50Mn35In15 Heusler alloy are studied in low and...
The magnetic and magnetocaloric characteristics of Ni50Mn35In15 Heusler alloy are studied in low and...
The magnetic, magnetocaloric and critical behavior properties are systematically investigated for th...
Ni50Mn35In14.25B0.75 is a typical representative of the family of metamagnetic In-based Heusler allo...
AbstractAdiabatic temperature change, resulting from MCE, is a complex effect depending on in-field ...
We have studied the magnetocaloric effect (MCE) in the shape-memory Heusler alloy Ni50Mn35In15 by di...
It has been found that Ni50Mn35In14B exhibits with increasing temperature a first-order magnetostruc...
AbstractIn this work we experimentally study the magnetic properties and magnetocaloric effect (MCE)...
Magnetocaloric effects (MCE) in the Ni50Mn35In15, Ni50.2Mn34.85In14.95, and Ni50Mn35In14.25В0.75Heus...
A study of the magnetocaloric effect (MCE) in the ferromagnetic Heusler alloys Ni50Mn37+xSb13−x (x =...
A study of the magnetocaloric effect (MCE) in the ferromagnetic Heusler alloys Ni50 Mn37+x Sb13-x (x...
The magnetic, magnetotransport, and magnetocaloric properties near compound phase transitions in Ni ...
We report on the high irreversible adiabatic temperature change of −8 K in a magnetic field change o...
Ni-Mn-X (X = In, Sn, and Sb) based Heusler alloys show a strong potential for magnetic refrigeration...