The martensitic transformation (MT) as well as the structure, magnetic and magnetostrain properties of a polycrystalline Ni50.1Fe18.6Ga27.2Co4.1 (at%) ferromagnetic shape memory alloy are investigated. The studied alloy exhibits a martensitic ferromagnetic phase near room temperature that shows a non-modulated tetragonal structure with a tetragonality ratio of c/a> 1. Strain measurements reveal a complex spontaneous change at MT amounting to about 0.15 % that increases up to 0.22 % at 5 T of the applied magnetic field indicating orientation influence of the field on the martensitic variants growth. Magnetostrain measurements enable evaluation of the magnetic field-induced strain effect in the vicinity of MT. The sample shows moderate def...
Ferromagnetic shape memory alloys emerge as new functional materials which have interesting magnetom...
Abstract. The giant magnetically-induced deformation of ferromagnetic shape memory alloys results fr...
In order to discuss the advent of the magnetic-field-induced strains for a single crystal Fe22:0Ni51...
Ni$_{49.7}$Mn$_{29.1}$ Ga$_{21.2}$ magnetic shape memory sample showing magnetic-field-induced strai...
AbstractThe influence of the heat treatments on the martensitic transformation, magnetic properties ...
Effects of magnetic field on martensitic transformations have been examined in order to know a magne...
The present paper deals with the thermal- and stress-induced martensitic transformations, effects of...
The influence of a rotating magnetic field on disk-shaped twinned Ni-Mn-Ga single crystals is studie...
In recent years, a lot of investigations have been focused on ferromagnetic shape memory alloys (FSM...
Magnetic properties and magnetic shape memory effect of three Ni-Mn-Ga alloys representing three dif...
Some of the Ni-Mn-Ga alloys exhibit a large shape change in magnetic field. This phenomenon occurs i...
Ferromagnetic shape memory alloys (FSMA) have the possibility to induced a strain by applying a magn...
Abstract. Magnetically driven shape memory alloys, among them Ni2±x±yMn1±xGa1±y, represent a novel t...
It is experimentally found that in the Ni54Fe20 xCoxGa26 ferromagnetic shape memory alloys, Co varia...
In certain ferromagnetic shape memory Ni-Mn-Ga alloys, the shape changes of the material can be cont...
Ferromagnetic shape memory alloys emerge as new functional materials which have interesting magnetom...
Abstract. The giant magnetically-induced deformation of ferromagnetic shape memory alloys results fr...
In order to discuss the advent of the magnetic-field-induced strains for a single crystal Fe22:0Ni51...
Ni$_{49.7}$Mn$_{29.1}$ Ga$_{21.2}$ magnetic shape memory sample showing magnetic-field-induced strai...
AbstractThe influence of the heat treatments on the martensitic transformation, magnetic properties ...
Effects of magnetic field on martensitic transformations have been examined in order to know a magne...
The present paper deals with the thermal- and stress-induced martensitic transformations, effects of...
The influence of a rotating magnetic field on disk-shaped twinned Ni-Mn-Ga single crystals is studie...
In recent years, a lot of investigations have been focused on ferromagnetic shape memory alloys (FSM...
Magnetic properties and magnetic shape memory effect of three Ni-Mn-Ga alloys representing three dif...
Some of the Ni-Mn-Ga alloys exhibit a large shape change in magnetic field. This phenomenon occurs i...
Ferromagnetic shape memory alloys (FSMA) have the possibility to induced a strain by applying a magn...
Abstract. Magnetically driven shape memory alloys, among them Ni2±x±yMn1±xGa1±y, represent a novel t...
It is experimentally found that in the Ni54Fe20 xCoxGa26 ferromagnetic shape memory alloys, Co varia...
In certain ferromagnetic shape memory Ni-Mn-Ga alloys, the shape changes of the material can be cont...
Ferromagnetic shape memory alloys emerge as new functional materials which have interesting magnetom...
Abstract. The giant magnetically-induced deformation of ferromagnetic shape memory alloys results fr...
In order to discuss the advent of the magnetic-field-induced strains for a single crystal Fe22:0Ni51...