The magnetostriction of Epstein strips of 0.30 mm thick grain oriented electrical steel cut using three techniques was measured under longitudinal applied stress. Commercially available guillotining, electrical discharge machining, and laser cutting techniques were used. The parameter used to determine their effect was the stress shift of the peak to peak magnetostriction. The increase in the magnetostriction, especially under compressive stress, is related to the appearance of domain stress patterns on the strip surface. Hence, to investigate and correlate the cutting stress with the shift of the curve of magnetostriction against stress, static domain observations were carried out. The results from the magnetostriction under stress measure...
The magnetostriction effect has been known for over 100 years. The first observation was made by Jou...
Magnetostriction of core laminations is one of the main sources of transformer acoustic noise. The m...
The magnetostriction and the domain structure of grain oriented silicon steel sheets cut at various ...
The magnetostriction of Epstein strips of 0.30 mm thick grain oriented electrical steel cut using th...
Surface domain patterns in electrical steel, which appear under rotational magnetisation, were noted...
The magnetostriction of the core laminations is one of the primary causes of transformer acoustic no...
The magnetostriction of a magnetic strip steel can be measured while subjecting the sample to an ext...
In this paper, we propose a method to identify the magnetostrictive behavior of electrical steel she...
Magnetostriction strain measurements on the samples of grain oriented and non-oriented electrical st...
Electrical steel laminations used in the construction of transformer cores are subject to stresses i...
Magnetostriction data of non-oriented electrical steel is needed for calculation of deformation and ...
In real electromagnetic devices the non-oriented electrical steel is often subjected to various mech...
The effect of uniaxial stress on iron losses of M400-50A grade non-oriented electrical steel sheets ...
The magnetostriction effect has been known for over 100 years. The first observation was made by Jou...
Magnetostriction of core laminations is one of the main sources of transformer acoustic noise. The m...
The magnetostriction and the domain structure of grain oriented silicon steel sheets cut at various ...
The magnetostriction of Epstein strips of 0.30 mm thick grain oriented electrical steel cut using th...
Surface domain patterns in electrical steel, which appear under rotational magnetisation, were noted...
The magnetostriction of the core laminations is one of the primary causes of transformer acoustic no...
The magnetostriction of a magnetic strip steel can be measured while subjecting the sample to an ext...
In this paper, we propose a method to identify the magnetostrictive behavior of electrical steel she...
Magnetostriction strain measurements on the samples of grain oriented and non-oriented electrical st...
Electrical steel laminations used in the construction of transformer cores are subject to stresses i...
Magnetostriction data of non-oriented electrical steel is needed for calculation of deformation and ...
In real electromagnetic devices the non-oriented electrical steel is often subjected to various mech...
The effect of uniaxial stress on iron losses of M400-50A grade non-oriented electrical steel sheets ...
The magnetostriction effect has been known for over 100 years. The first observation was made by Jou...
Magnetostriction of core laminations is one of the main sources of transformer acoustic noise. The m...
The magnetostriction and the domain structure of grain oriented silicon steel sheets cut at various ...