In this work, we suggest the temperature-induced resistivity change at the martensitic transformation in the Ni-Mn-Ga ferromagnetic shape memory alloy as a driving mechanism enabling periodic signal generation. We demonstrated its practical importance by a design of the prototype of a low-frequency autonomous generator. A prominent feature of this new generator is a control of its frequency by the external magnetic field
Ni-Mn-Ga is a Magnetic Shape Memory (MSM) alloy, which shape changes when either a mechanical stress...
In recent years there has been an increased demand for the development of smart and functional mater...
In the frame of Thermodynamics of irreversible process, a model describing the thermomagneto-mechan...
Mechanical actuators based on shape memory alloys (SMA) are becoming a key component in the developm...
By the inverse magnetoplastic (IMP) effect, twin boundaries in magnetic shape memory alloys (MSMA) c...
By the inverse magnetoplastic IMP effect, twin boundaries in magnetic shape memory alloys MSMA c...
Magnetic-field-induced strains in Ni-Mn-Ga alloys have shown promise since their recent discovery. L...
Inverse magnetoplasticity is the variation of the macroscopic magnetization of a magnetic shape-memo...
The ongoing drive to innovations has led to an array of highly adaptive structures called "Smart Mat...
The family of Ni-Mn based Heusler alloys provides an extended playground of physical properties. The...
The family of Ni-Mn based Heusler alloys provides an extended playground of physical properties. The...
The underlying mechanisms responsible for the giant magnetic or mechanical field-induced-strains in ...
By the inverse magnetoplastic (IMP) effect, twin boundaries in magnetic shape memory alloys (MSMA) c...
This paper deals with a new design of a thermo-magnetically activated piezoelectric generator. This ...
In the frame of Thermodynamics of irreversible process, a model describing the t...
Ni-Mn-Ga is a Magnetic Shape Memory (MSM) alloy, which shape changes when either a mechanical stress...
In recent years there has been an increased demand for the development of smart and functional mater...
In the frame of Thermodynamics of irreversible process, a model describing the thermomagneto-mechan...
Mechanical actuators based on shape memory alloys (SMA) are becoming a key component in the developm...
By the inverse magnetoplastic (IMP) effect, twin boundaries in magnetic shape memory alloys (MSMA) c...
By the inverse magnetoplastic IMP effect, twin boundaries in magnetic shape memory alloys MSMA c...
Magnetic-field-induced strains in Ni-Mn-Ga alloys have shown promise since their recent discovery. L...
Inverse magnetoplasticity is the variation of the macroscopic magnetization of a magnetic shape-memo...
The ongoing drive to innovations has led to an array of highly adaptive structures called "Smart Mat...
The family of Ni-Mn based Heusler alloys provides an extended playground of physical properties. The...
The family of Ni-Mn based Heusler alloys provides an extended playground of physical properties. The...
The underlying mechanisms responsible for the giant magnetic or mechanical field-induced-strains in ...
By the inverse magnetoplastic (IMP) effect, twin boundaries in magnetic shape memory alloys (MSMA) c...
This paper deals with a new design of a thermo-magnetically activated piezoelectric generator. This ...
In the frame of Thermodynamics of irreversible process, a model describing the t...
Ni-Mn-Ga is a Magnetic Shape Memory (MSM) alloy, which shape changes when either a mechanical stress...
In recent years there has been an increased demand for the development of smart and functional mater...
In the frame of Thermodynamics of irreversible process, a model describing the thermomagneto-mechan...