To characterize materials damage the scaling behavior of the deformation structure was analyzed. As a result of that the fractal dimension of surface topog. appears to be a suitable parameter assessing different stages of fatigue and residual service time. Since magnetic domain pattern correlates well with the deformation structure, the fractal features of the subsurface materials region was tested by the magnetic Barkhausen noise signals for ferromagnetic steel samples. Different materials were investigated and a characteristic step-like dependence of the fractal dimension as a function of cyclic load no. was found. Applications of the fractal concept to industrial components will be reported
Ferromagnetic materials are widely used for various manufactured products such as cars, trains, and ...
For the forecasting of the fatigue life of metallic constructions it is important to understand the ...
Carrying out information about the microstructure and stress behaviour of ferromagnetic steels, magn...
Nonlinear response of the magnetization respect to slowly changing magnetic field gives random noise...
In light of today’s problems concerning the life time of industrial components, scientists are searc...
The magnetic Barkhausen Noise technique is a well suited method for the characterization of ferromag...
Ferromagnetic materials are widely used for a lot of artificial products such as cars, trains, ships...
Ferromagnetic materials are widely used for a lot of artificial products such as cars, trains, ships...
The Barkhausen noise was measured in plastically deformed low-carbon steel at various frequencies of...
In light of today's problems concerning the life time of industrial components, scientists are searc...
Purpose: Bearings in field applications with high dynamic loading, e.g. wind energy plants, suffer f...
International audienceUnder the influence of an external magnetic field, the magnetic answer of a te...
Purpose - The purpose of this paper is to show how controlled exposure of electromagnetic fields tow...
The article describes the micromagnetic behavior of non- and pre-plastically deformed high strength ...
Magnetic Barkhausen noise (mBN) is known to be related to magnetization reversal mechanisms and the ...
Ferromagnetic materials are widely used for various manufactured products such as cars, trains, and ...
For the forecasting of the fatigue life of metallic constructions it is important to understand the ...
Carrying out information about the microstructure and stress behaviour of ferromagnetic steels, magn...
Nonlinear response of the magnetization respect to slowly changing magnetic field gives random noise...
In light of today’s problems concerning the life time of industrial components, scientists are searc...
The magnetic Barkhausen Noise technique is a well suited method for the characterization of ferromag...
Ferromagnetic materials are widely used for a lot of artificial products such as cars, trains, ships...
Ferromagnetic materials are widely used for a lot of artificial products such as cars, trains, ships...
The Barkhausen noise was measured in plastically deformed low-carbon steel at various frequencies of...
In light of today's problems concerning the life time of industrial components, scientists are searc...
Purpose: Bearings in field applications with high dynamic loading, e.g. wind energy plants, suffer f...
International audienceUnder the influence of an external magnetic field, the magnetic answer of a te...
Purpose - The purpose of this paper is to show how controlled exposure of electromagnetic fields tow...
The article describes the micromagnetic behavior of non- and pre-plastically deformed high strength ...
Magnetic Barkhausen noise (mBN) is known to be related to magnetization reversal mechanisms and the ...
Ferromagnetic materials are widely used for various manufactured products such as cars, trains, and ...
For the forecasting of the fatigue life of metallic constructions it is important to understand the ...
Carrying out information about the microstructure and stress behaviour of ferromagnetic steels, magn...