Neodymium zinc titanate (NZT) is a very attractive perovskite due to its magnetic and dielectric properties. Considering the microstructure influence NZT stability and performance, it is of great importance to establish an approach for the analysis and prediction of grain boundary phenomena. The fractal nature analysis has already proved to be valuable for the reconstruction and prediction of ceramics intergranular electrical properties. However, no researches were performed on the fractal analysis applied on magnetic materials. This method could give an insight in magnetic properties change from the bulk to the grain interface level. In this study, fractal analysis was applied for the Curie-Weiss law correction, introducing fractal correct...
We are witnesses of blowing-up of new technologies and materials that nowadays are being introduced ...
Mixtures of high purity powders of 50 mass% Fe, 4 mass% Pb, 3 mass% Zr and 43 mass% BaTiO3 were acti...
Starting hematite (Fe2O3), zinc oxide (ZnO) and manganese carbonate (MnCO3) powders were homogenized...
Neodymium zinc titanate (NZT) is a very attractive perovskite due to its magnetic and dielectric pr...
In this paper we present the research results on dielectric properties based on Rare earth Neodymium...
Analysis of ceramic grain boundaries, esspecially for BaTiO3 , is also important for its dielectric ...
Well known material with ferroelectric properties, BaTiO3-ceramics, have many advanced applications....
The microstructures properties predicting are based on their materials characteristics. In ceramic m...
There are a lot of recently published research papers regarding representing nanostructures and biom...
Polymers offer the possibility of different reinforcement incorporation due to a broad range of chem...
MnZn ferrites are one of the most common soft magnetic materials for application in microelectronics...
Ceramics grain structure is difficult to describe by using traditional analytical methods based on E...
Polymers offer the possibility of different reinforcement incorporation due to a broad range of che...
Porous aluminium-silicate ceramics, modified by alloying with magnesium and microalloying with allum...
The electronic ceramics applications based on ferroelectric and dielectric properties have enormous ...
We are witnesses of blowing-up of new technologies and materials that nowadays are being introduced ...
Mixtures of high purity powders of 50 mass% Fe, 4 mass% Pb, 3 mass% Zr and 43 mass% BaTiO3 were acti...
Starting hematite (Fe2O3), zinc oxide (ZnO) and manganese carbonate (MnCO3) powders were homogenized...
Neodymium zinc titanate (NZT) is a very attractive perovskite due to its magnetic and dielectric pr...
In this paper we present the research results on dielectric properties based on Rare earth Neodymium...
Analysis of ceramic grain boundaries, esspecially for BaTiO3 , is also important for its dielectric ...
Well known material with ferroelectric properties, BaTiO3-ceramics, have many advanced applications....
The microstructures properties predicting are based on their materials characteristics. In ceramic m...
There are a lot of recently published research papers regarding representing nanostructures and biom...
Polymers offer the possibility of different reinforcement incorporation due to a broad range of chem...
MnZn ferrites are one of the most common soft magnetic materials for application in microelectronics...
Ceramics grain structure is difficult to describe by using traditional analytical methods based on E...
Polymers offer the possibility of different reinforcement incorporation due to a broad range of che...
Porous aluminium-silicate ceramics, modified by alloying with magnesium and microalloying with allum...
The electronic ceramics applications based on ferroelectric and dielectric properties have enormous ...
We are witnesses of blowing-up of new technologies and materials that nowadays are being introduced ...
Mixtures of high purity powders of 50 mass% Fe, 4 mass% Pb, 3 mass% Zr and 43 mass% BaTiO3 were acti...
Starting hematite (Fe2O3), zinc oxide (ZnO) and manganese carbonate (MnCO3) powders were homogenized...