The paper presents a method to determine the deterioration effects due to the punching process on soft magnetic materials used in electrical machines. Furthermore the possibility to recovery the magnetic and energetic original properties by mean of subsequent annealing treatments is reported too. The proposed methodology is based on a full experimental approach. Five toroidal cores, with the same geometrical dimensions, have been assembled overlapping a different number of laminations shaped as concentric rings. The rings have been obtained by means of a punching process: in this way the five cores have consistent differences in terms of punched edge length. The comparison between the magnetic and energetic properties on the five cores has ...
Thin laminations of non-grain oriented (NO) electrical steels form the magnetic core of rotating ele...
The paper reports the experimental results of a vast test campaign conducted on synchronous reluctan...
This paper presents an up-to-date magnetic material investigation and overview on magnetic materials...
The paper presents a method to determine the deterioration effects due to the punching process on so...
The paper presents a method to determine the effects due to the punching process on soft magnetic ma...
The rotor and the stator of electrical machines consists of an assembly of soft magnetic laminates t...
Manufacturing the magnetic cores in electrical machines impacts the magnetic performance of the elec...
As the major electricity consumer, electrical machines play a key role for global energy savings. Ma...
The study investigates the influence of the lamination geometry on the building factor of stator mag...
Many technologies for cutting the magnetic laminations, from which electric motors cores are built, ...
This article presents an up-to-date magnetic material investigation and overview on soft magnetic ma...
The manufacturing influence on the magnetic properties and iron losses in stator cores made of cobal...
Increasing demand for electric vehicles has put significant stress on designing highly efficient ele...
The adoption of high-performance soft magnetic material can be considered a possible way to respect ...
The effect of electrical steel degradation due to punching on the performance of fractional-kW elect...
Thin laminations of non-grain oriented (NO) electrical steels form the magnetic core of rotating ele...
The paper reports the experimental results of a vast test campaign conducted on synchronous reluctan...
This paper presents an up-to-date magnetic material investigation and overview on magnetic materials...
The paper presents a method to determine the deterioration effects due to the punching process on so...
The paper presents a method to determine the effects due to the punching process on soft magnetic ma...
The rotor and the stator of electrical machines consists of an assembly of soft magnetic laminates t...
Manufacturing the magnetic cores in electrical machines impacts the magnetic performance of the elec...
As the major electricity consumer, electrical machines play a key role for global energy savings. Ma...
The study investigates the influence of the lamination geometry on the building factor of stator mag...
Many technologies for cutting the magnetic laminations, from which electric motors cores are built, ...
This article presents an up-to-date magnetic material investigation and overview on soft magnetic ma...
The manufacturing influence on the magnetic properties and iron losses in stator cores made of cobal...
Increasing demand for electric vehicles has put significant stress on designing highly efficient ele...
The adoption of high-performance soft magnetic material can be considered a possible way to respect ...
The effect of electrical steel degradation due to punching on the performance of fractional-kW elect...
Thin laminations of non-grain oriented (NO) electrical steels form the magnetic core of rotating ele...
The paper reports the experimental results of a vast test campaign conducted on synchronous reluctan...
This paper presents an up-to-date magnetic material investigation and overview on magnetic materials...