Dislocations affect the magnetic properties of ferromagnetic materials by pinning the domain walls. The primary mechanism is interaction between the stress fields of dislocation and domain walls. Using magnetic nondestructive methods, namely the acoustic Barkhausen noise (AB), magnetic Barkhausen noise (MB), and the hysteresis curves, we have studied these interactions. The three measurements give different types of information. AB provides information about non‐180° type domain wall interaction, MB primarily provides information about 180° domain wall interaction, and the hysteresis curve about both these interactions as well as about rotation of domain walls. The paper presents results obtained on polycrystalline nickel which was first de...
Mechanical properties of metals depend strongly on the grain size. The yield strength, for example, ...
The change in the magnetic and acoustic properties of nickel as a result of cold deformation and sub...
La principale interaction entre les dislocations et la direction d'aimantation des ferromagnétiques ...
Magnetic NDE techniques, namely, the acoustic Barkhausen noise, the magnetic Barkhausen noise and th...
There are a lot of experimental results concerning the effect of stress, elastic and plastic deforma...
Results on annealed nickel show that the total number of counts of both magnetic and acoustic Barkha...
The magneto-elastic interaction between dislocations and a 180° domain wall in a ferromagnetic mater...
A model has been developed that describes the interrelating effects of plastic deformation and appli...
AbstractWhen a low frequency external variable magnetic field is applied to a ferromagnetic material...
The magnetic properties of steels are affected by plastic deformation, because the domain wall proce...
AbstractThe movement of magnetic domain walls can be disturbed by material defects, also named pinni...
The magnetic properties of steels are affected by plastic deformation, because the domain wall proce...
A strong coupling exists between mechanical and magnetic properties of ferromagnetic materials. The ...
The article describes the micromagnetic behavior of non- and pre-plastically deformed high strength ...
It has been observed that the flow stress of a nickel single crystal can be lowered about 15% by app...
Mechanical properties of metals depend strongly on the grain size. The yield strength, for example, ...
The change in the magnetic and acoustic properties of nickel as a result of cold deformation and sub...
La principale interaction entre les dislocations et la direction d'aimantation des ferromagnétiques ...
Magnetic NDE techniques, namely, the acoustic Barkhausen noise, the magnetic Barkhausen noise and th...
There are a lot of experimental results concerning the effect of stress, elastic and plastic deforma...
Results on annealed nickel show that the total number of counts of both magnetic and acoustic Barkha...
The magneto-elastic interaction between dislocations and a 180° domain wall in a ferromagnetic mater...
A model has been developed that describes the interrelating effects of plastic deformation and appli...
AbstractWhen a low frequency external variable magnetic field is applied to a ferromagnetic material...
The magnetic properties of steels are affected by plastic deformation, because the domain wall proce...
AbstractThe movement of magnetic domain walls can be disturbed by material defects, also named pinni...
The magnetic properties of steels are affected by plastic deformation, because the domain wall proce...
A strong coupling exists between mechanical and magnetic properties of ferromagnetic materials. The ...
The article describes the micromagnetic behavior of non- and pre-plastically deformed high strength ...
It has been observed that the flow stress of a nickel single crystal can be lowered about 15% by app...
Mechanical properties of metals depend strongly on the grain size. The yield strength, for example, ...
The change in the magnetic and acoustic properties of nickel as a result of cold deformation and sub...
La principale interaction entre les dislocations et la direction d'aimantation des ferromagnétiques ...