Energy losses have been investigated as a function of magnetizing frequency (DC - 200 Hz) and peak polarization value (0.25 T- 1.7 T) in non-oriented Fe-Si laminations under controlled alternating, elliptical, and circular flux loci. It is shown that, exploiting the concept of loss decomposition and the ensuing interpretative framework provided by the statistical theory of losses, a phenomenological approach to the energy loss prediction under two-dimensional fluxes can be formulated. The treatment conspicuously relies on the analysis of the excess loss component and its frequency dependence, which is observed to follow to a good approximation a law of the type W exc ∝ f 1/2, whatever the flux loci. It is concluded that the behavior of the ...
The paper presents an algorithm for calculating the energy loss due to macroscopic eddy currents con...
Power losses in soft magnetic materials can be solidly assessed by the statistical theory of losses ...
The paper presents an algorithm for calculating the energy loss due to macroscopic eddy currents con...
Magnetic energy losses have been measured in non-oriented Fe–Si laminations under alternating, ellip...
Magnetic energy losses have been measured in non-oriented Fe–Si laminations under alternating, ellip...
The efficiency of electrical machines has global impact and its improvement passes through a good kn...
Literature data on the energy loss behavior of steel sheets under rotating induction are restricted ...
The concept of loss separation based on the Statistical Theory of Losses (STL) provides complete and...
The concept of loss separation based on the Statistical Theory of Losses (STL) provides complete and...
Literature data on the energy loss behavior of steel sheets under rotating induction are restricted ...
Literature data on the energy loss behavior of steel sheets under rotating induction are restricted ...
Literature data on the energy loss behavior of steel sheets under rotating induction are restricted ...
We show that the magnetic losses of thin high-permeability grain-oriented Fe-Si sheets can be cohere...
Grain-oriented (GO) Fe-Si sheets are often preferred to non-oriented steels in large rotating machin...
A three-phase magnetizer has been developed, by which non-oriented Fe–Si steel sheets can be charact...
The paper presents an algorithm for calculating the energy loss due to macroscopic eddy currents con...
Power losses in soft magnetic materials can be solidly assessed by the statistical theory of losses ...
The paper presents an algorithm for calculating the energy loss due to macroscopic eddy currents con...
Magnetic energy losses have been measured in non-oriented Fe–Si laminations under alternating, ellip...
Magnetic energy losses have been measured in non-oriented Fe–Si laminations under alternating, ellip...
The efficiency of electrical machines has global impact and its improvement passes through a good kn...
Literature data on the energy loss behavior of steel sheets under rotating induction are restricted ...
The concept of loss separation based on the Statistical Theory of Losses (STL) provides complete and...
The concept of loss separation based on the Statistical Theory of Losses (STL) provides complete and...
Literature data on the energy loss behavior of steel sheets under rotating induction are restricted ...
Literature data on the energy loss behavior of steel sheets under rotating induction are restricted ...
Literature data on the energy loss behavior of steel sheets under rotating induction are restricted ...
We show that the magnetic losses of thin high-permeability grain-oriented Fe-Si sheets can be cohere...
Grain-oriented (GO) Fe-Si sheets are often preferred to non-oriented steels in large rotating machin...
A three-phase magnetizer has been developed, by which non-oriented Fe–Si steel sheets can be charact...
The paper presents an algorithm for calculating the energy loss due to macroscopic eddy currents con...
Power losses in soft magnetic materials can be solidly assessed by the statistical theory of losses ...
The paper presents an algorithm for calculating the energy loss due to macroscopic eddy currents con...