Magnetostriction of nonoriented electrical steel was measured under rotating flux magnetization conditions which occur in AC electrical machine stator cores, and compared with the magnetostriction calculated from a model based on a mechanical elasticity analogy. Shear magnetostriction and magnetostriction perpendicular to the magnetization direction are accounted for in the model which leads to an accurate representation of magnetostriction throughout the electrical steel lamination plane. This has the potential for improving the accuracy of stator core deformation and vibration calculations
Surface domain patterns in electrical steel, which appear under rotational magnetisation, were noted...
This thesis deals with the computation of magnetic and magnetostrictive forces, as well as with the ...
This paper presents an anisotropic and mechanical strain-dependent model of magnetostriction in elec...
Magnetostriction of nonoriented electrical steel was measured under rotating flux magnetization cond...
Magnetostriction in non-oriented electrical steel is a source of vibration of electrical machine cor...
Magnetostriction data of non-oriented electrical steel is needed for calculation of deformation and ...
Magnetostriction in electrical steel is a source of acoustic noise and vibration of rotating electri...
Magnetostriction in nonoriented (NO) electrical steel is a possible source of vibration and acoustic...
Magnetostriction is a source of vibration and acoustic noise of electrical machines and it can be hi...
The magnetostriction in electrical steel under rotational magnetization is usually measured with cro...
In this paper, we propose a method to identify the magnetostrictive behavior of electrical steel she...
Magnetostriction is an important source of vibration and acoustic noise in electromagnetic cores. Th...
Surface domain patterns in electrical steel, which appear under rotational magnetisation, were noted...
This thesis deals with the computation of magnetic and magnetostrictive forces, as well as with the ...
This paper presents an anisotropic and mechanical strain-dependent model of magnetostriction in elec...
Magnetostriction of nonoriented electrical steel was measured under rotating flux magnetization cond...
Magnetostriction in non-oriented electrical steel is a source of vibration of electrical machine cor...
Magnetostriction data of non-oriented electrical steel is needed for calculation of deformation and ...
Magnetostriction in electrical steel is a source of acoustic noise and vibration of rotating electri...
Magnetostriction in nonoriented (NO) electrical steel is a possible source of vibration and acoustic...
Magnetostriction is a source of vibration and acoustic noise of electrical machines and it can be hi...
The magnetostriction in electrical steel under rotational magnetization is usually measured with cro...
In this paper, we propose a method to identify the magnetostrictive behavior of electrical steel she...
Magnetostriction is an important source of vibration and acoustic noise in electromagnetic cores. Th...
Surface domain patterns in electrical steel, which appear under rotational magnetisation, were noted...
This thesis deals with the computation of magnetic and magnetostrictive forces, as well as with the ...
This paper presents an anisotropic and mechanical strain-dependent model of magnetostriction in elec...