Thin laminations of non-grain oriented (NO) electrical steels form the magnetic core of rotating electrical machines. The magnetic properties of these laminations are therefore key elements for the efficiency of electric drives and need to be fully utilized. Ideally, high magnetization and low losses are realized over the entire polarization and frequency spectrum at reasonable production and processing costs. However, such an ideal material does not exist and thus, achievable magnetic properties need to be deduced from the respective application requirements. Parameters of the electrical steel such as lamination thickness, microstructure and texture affect the magnetic properties as well as their polarization and frequency dependence. Thes...
During electrical steel processing, there are usually small variations in both chemical composition ...
This paper presents an up-to-date magnetic material investigation and overview on magnetic materials...
This paper presents an up-to-date magnetic material investigation and overview on magnetic materials...
The properties of the lamination of rotating electrical machines made of non-grain oriented electric...
The magnetic properties of non-oriented electrical steel, widely used in electric machines, are clos...
The influence of composition (Si, Al, Mn, P and B) and hot rolling parameters on the properties of f...
The efficiency of electrical machines has global impact and its improvement passes through a good kn...
Due to the nonlinear material behavior and contradicting application requirements, the selection of ...
Manufacturing the magnetic cores in electrical machines impacts the magnetic performance of the elec...
Methods of modern quantitative texture analysis are applied in order to characterize the crystallogr...
In this study, the influence of the rolling process on magnetic properties of Fe-3.3 wt% Si non-orie...
The magnetic properties, namely the iron losses and the relative permeability, of SiFe electrical st...
This study investigates the influence of a wide range of magnetising frequencies and peak flux densi...
The cutting process has a substantial influence on the ferromagnetic material properties of electric...
Methods of modern quantitative texture analysis are applied in order to characterize the crystallogr...
During electrical steel processing, there are usually small variations in both chemical composition ...
This paper presents an up-to-date magnetic material investigation and overview on magnetic materials...
This paper presents an up-to-date magnetic material investigation and overview on magnetic materials...
The properties of the lamination of rotating electrical machines made of non-grain oriented electric...
The magnetic properties of non-oriented electrical steel, widely used in electric machines, are clos...
The influence of composition (Si, Al, Mn, P and B) and hot rolling parameters on the properties of f...
The efficiency of electrical machines has global impact and its improvement passes through a good kn...
Due to the nonlinear material behavior and contradicting application requirements, the selection of ...
Manufacturing the magnetic cores in electrical machines impacts the magnetic performance of the elec...
Methods of modern quantitative texture analysis are applied in order to characterize the crystallogr...
In this study, the influence of the rolling process on magnetic properties of Fe-3.3 wt% Si non-orie...
The magnetic properties, namely the iron losses and the relative permeability, of SiFe electrical st...
This study investigates the influence of a wide range of magnetising frequencies and peak flux densi...
The cutting process has a substantial influence on the ferromagnetic material properties of electric...
Methods of modern quantitative texture analysis are applied in order to characterize the crystallogr...
During electrical steel processing, there are usually small variations in both chemical composition ...
This paper presents an up-to-date magnetic material investigation and overview on magnetic materials...
This paper presents an up-to-date magnetic material investigation and overview on magnetic materials...