The influence of the pore size, the ratio of length to diameter, the microstructure of the initial growth part of the Fe cylinder and the packing density of the Fe needles on the magnetic behaviour of alumite media are reviewed. It is found that the magnetization reversal is controlled by curling rotation, if the applied field lies along the film normal. The Hc is mainly determined by the diameter of the needles, but it slightly decreases with increasing packing density. If the applied field deviates from the film normal, the magnetic behaviour of alumite media is strongly affected by the packing density. For alumite with a low packing density, the magnetization reversal is controlled by a cos-type of incoherent rotation and a demagnetizing...
The reversal of the direction of magnetization by domain wall movements has been studied on two thin...
Normal magnetization curves were obtained from high-frequency hysteresis loops of Fe-Al multilayers ...
Microstructure of the Fe90.04Al7.86C2.10 magnet was revealed using electron microscopy. Torque curve...
The influence of the pore size, the ratio of length to diameter, the microstructure of the initial g...
Alumite has been investigated by measuring the hysteresis loops for different field directions to de...
Rotational hysteresis energy loss measurements have been performed to support the analysis of the ma...
In addition to previous research on the magnetization reversal for sputtered CoCr films, two particu...
Magnetic properties were measured for anodic oxide films containing electro-deposited iron or cobalt...
The effects induced by an external homogeneous magnetic field on the oxide film growth on aluminum i...
An investigation of the remanent and hysteretic properties of perpendicular media such as Alumite in...
An investigation of the remanent and hysteretic properties of perpendicular media such as Alumite in...
An experimental investigation of transverse susceptibility (Xi) measurements on particulate recordin...
In this paper, we will present a study of the time-dependence effect in alumite perpendicular media ...
Recently, there has been a lot of activity trying to produce steel with an increased concentration, ...
The magnetization processes in barium ferrite micro-powders subjected to various annealing and milli...
The reversal of the direction of magnetization by domain wall movements has been studied on two thin...
Normal magnetization curves were obtained from high-frequency hysteresis loops of Fe-Al multilayers ...
Microstructure of the Fe90.04Al7.86C2.10 magnet was revealed using electron microscopy. Torque curve...
The influence of the pore size, the ratio of length to diameter, the microstructure of the initial g...
Alumite has been investigated by measuring the hysteresis loops for different field directions to de...
Rotational hysteresis energy loss measurements have been performed to support the analysis of the ma...
In addition to previous research on the magnetization reversal for sputtered CoCr films, two particu...
Magnetic properties were measured for anodic oxide films containing electro-deposited iron or cobalt...
The effects induced by an external homogeneous magnetic field on the oxide film growth on aluminum i...
An investigation of the remanent and hysteretic properties of perpendicular media such as Alumite in...
An investigation of the remanent and hysteretic properties of perpendicular media such as Alumite in...
An experimental investigation of transverse susceptibility (Xi) measurements on particulate recordin...
In this paper, we will present a study of the time-dependence effect in alumite perpendicular media ...
Recently, there has been a lot of activity trying to produce steel with an increased concentration, ...
The magnetization processes in barium ferrite micro-powders subjected to various annealing and milli...
The reversal of the direction of magnetization by domain wall movements has been studied on two thin...
Normal magnetization curves were obtained from high-frequency hysteresis loops of Fe-Al multilayers ...
Microstructure of the Fe90.04Al7.86C2.10 magnet was revealed using electron microscopy. Torque curve...