We briefly summarize the results from a set of experiments designed to demonstrate the effects of high magnetic fields applied during thermal annealing of amorphous Nd2Fe14B produced through melt-spinning. A custom-built differential scanning calorimeter was used to determine the crystallization temperatures in zero-field and in applied fields of 20 kOe and 90 kOe, which guided subsequent heat treatments to evaluate phase evolution. X-ray diffraction was used for phase identification and transmission electron microscopy was employed for observation of the crystallite size and morphology. Magnetization measurements were also used to evaluate the resulting magnetic phases after thermomagnetic processing. While the applied magnetic fields do n...
The formation of amorphous and crystalline state of the Nd2Fe23B3 alloy from melt-spun ribbon is pre...
Nd2Fe14B F phase crystallites were formed in Nd16.7Fe65.5B17.8 thin films prepared by RF sputtering ...
prepared in form of ribbons (thickness of about 20 µm) by rapid quenching using the melt spinning te...
We briefly summarize the results from a set of experiments designed to demonstrate the effects of hi...
Microstructural and magnetic measurements of the evolution by heat treatment of initially amorphous ...
The application of a magnetic field to the melt in the transverse direction of the wheel rotation du...
NdFeB melt-spun amorphous or partially amorphous alloys of four compositions were prepared. Their cr...
The ferromagnetic Fe-based amorphous alloys have been studied due to the attractive properties for s...
Phase transformations in the function of heat treatment regime for defined initial chemical composit...
In recent time the study topic of many scientific institutions throughout the world is the process o...
The crystallization of the amorphous phase into the tetragonal Nd2Fe14B (F) phase and the correspond...
To clarify the effect of small magnetic fields on the magnetic properties and microstructure in FeCo...
Amorphous (Nd,Pr)_(13)Fe_(80)Nb_1B_6 ribbons were crystallized at 670-730℃ for 5-25 min to study the...
This thesis investigates and explains the effect of strong magnetic fields on two types of phase tra...
In contrast with amorphous alloys, nanocrystalline soft magnetic materials show improved thermal sta...
The formation of amorphous and crystalline state of the Nd2Fe23B3 alloy from melt-spun ribbon is pre...
Nd2Fe14B F phase crystallites were formed in Nd16.7Fe65.5B17.8 thin films prepared by RF sputtering ...
prepared in form of ribbons (thickness of about 20 µm) by rapid quenching using the melt spinning te...
We briefly summarize the results from a set of experiments designed to demonstrate the effects of hi...
Microstructural and magnetic measurements of the evolution by heat treatment of initially amorphous ...
The application of a magnetic field to the melt in the transverse direction of the wheel rotation du...
NdFeB melt-spun amorphous or partially amorphous alloys of four compositions were prepared. Their cr...
The ferromagnetic Fe-based amorphous alloys have been studied due to the attractive properties for s...
Phase transformations in the function of heat treatment regime for defined initial chemical composit...
In recent time the study topic of many scientific institutions throughout the world is the process o...
The crystallization of the amorphous phase into the tetragonal Nd2Fe14B (F) phase and the correspond...
To clarify the effect of small magnetic fields on the magnetic properties and microstructure in FeCo...
Amorphous (Nd,Pr)_(13)Fe_(80)Nb_1B_6 ribbons were crystallized at 670-730℃ for 5-25 min to study the...
This thesis investigates and explains the effect of strong magnetic fields on two types of phase tra...
In contrast with amorphous alloys, nanocrystalline soft magnetic materials show improved thermal sta...
The formation of amorphous and crystalline state of the Nd2Fe23B3 alloy from melt-spun ribbon is pre...
Nd2Fe14B F phase crystallites were formed in Nd16.7Fe65.5B17.8 thin films prepared by RF sputtering ...
prepared in form of ribbons (thickness of about 20 µm) by rapid quenching using the melt spinning te...