Iron losses in laser-cut toroidal samples of 12 mm thick steel laminations used in large synchronous motors are studied. Eddy currents in the lamination cross-section are solved with the 2-D finite element method while applying a constitutive law based on the Jiles-Atherton hysteresis model. The effect of cutting on the material properties is included by a continuous local material model approach, which enables to express the material properties as a function of distance from the cutting edge. The accuracy of the model is validated by comparing the simulations and experimental measurements of five toroidal samples assembled from concentric rings with different widths. Highly accurate results are obtained in terms of both the matching of B-H...
A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB / Simulink env...
© 2018 IEEE. A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB/S...
Starting from the well known analytical formula for the eddy current losses in electrical steel lami...
Publisher Copyright: CCBYIron losses in laser-cut toroidal samples of 12 mm thick steel laminations ...
In this paper, we propose an analytical method to compute the eddy-current loss in nonlinear thick s...
In this paper, we propose an analytical method to compute the eddy-current loss in nonlinear thick s...
In this article, we propose an analytical method to compute the eddy-current loss in nonlinear thick...
This paper proposes a model for the computation of iron losses in steel laminations accounting simul...
The purpose of this paper is to focus on the loss separation of non-grain-oriented electrical steels...
The purpose of this paper is to focus on the loss separation of non-grain-oriented electrical steels...
This thesis provides a quantitative analysis of degradation of magnetic properties due to guillotine...
Cutting of electrical steel sheets typically deteriorates the permeability and increases the iron lo...
The correct estimation of iron losses is still a challenging task in the numerical analysis of elect...
The correct estimation of iron losses is still a challenging task in the numerical analysis of elect...
The magnetic properties, namely the iron losses and the relative permeability, of SiFe electrical st...
A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB / Simulink env...
© 2018 IEEE. A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB/S...
Starting from the well known analytical formula for the eddy current losses in electrical steel lami...
Publisher Copyright: CCBYIron losses in laser-cut toroidal samples of 12 mm thick steel laminations ...
In this paper, we propose an analytical method to compute the eddy-current loss in nonlinear thick s...
In this paper, we propose an analytical method to compute the eddy-current loss in nonlinear thick s...
In this article, we propose an analytical method to compute the eddy-current loss in nonlinear thick...
This paper proposes a model for the computation of iron losses in steel laminations accounting simul...
The purpose of this paper is to focus on the loss separation of non-grain-oriented electrical steels...
The purpose of this paper is to focus on the loss separation of non-grain-oriented electrical steels...
This thesis provides a quantitative analysis of degradation of magnetic properties due to guillotine...
Cutting of electrical steel sheets typically deteriorates the permeability and increases the iron lo...
The correct estimation of iron losses is still a challenging task in the numerical analysis of elect...
The correct estimation of iron losses is still a challenging task in the numerical analysis of elect...
The magnetic properties, namely the iron losses and the relative permeability, of SiFe electrical st...
A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB / Simulink env...
© 2018 IEEE. A new implementation of an iron-loss model for laminated magnetic cores in the MATLAB/S...
Starting from the well known analytical formula for the eddy current losses in electrical steel lami...