The compositions of magnesium-zinc ferrites (Mg 0.56 Zn 0.44 ) 1−y Fe 2+2y/3 O 4 , where y = −0.05, 0, +0.05 were sintered at temperatures 1230 and 1280 • C. The analysis of the kinetics of sintering was carried out by using the Ivensen model. It was shown that at decrease of y the sintering rate increases. The analysis of the electronic configurations of the cations in the ferrite composition showed the possibility of applying the Samsonov electronic theory of sintering powders to them. Magnetic permeability of the studied chemical compositions increases with increase of the density of ferrites as well as with the temperature and the time of isothermal soaking
Nanocrystalline Magnesium ferrite has been prepared by chemical co-precipitation technique. Structur...
Many physicists have studied the electrical and magnetic properties of polycrystalline ferrites in v...
The 3-component system of manganese-zinc-ferrites is being thoroughly investigated as regards its in...
The compositions of magnesium-zinc ferrites $(Mg_{0.56}Zn_{0.44})_{1-y}Fe_{2 + 2y/3}O_{4}$, where y ...
The formation of zinc ferrite from zinc and iron compounds, which reacted under sintering conditions...
The diploma thesis is focused on the investigation of the effect of zinc release during ferritic sin...
Microstructure of magnetic materials greatly influences the performance of magnetic properties, and ...
Zinc substituted magnesium (Mg–Zn) ferrites with the general formula Mg1−xZnxFe2O4 (x=0.00, 0.25, 0....
The magnetic properties of MnZn ferrites are highly influenced by the partial oxygen pressure during...
Abstract. The low temperature sintering of MgCuZn ferrite was investigated using the usual ceramic m...
The effects of Mg substitution by Cu on the properties of MgZn ferrites sintered at low temperature ...
Spark plasma sintering (SPS) is a powerful technique to produce fine grain dense ferrite at low temp...
The relationship between magnetic and mechanical properties has been studied as a function of compos...
Zinc ferrite samples were prepared by two different routes which are chemical co-precipitation and s...
International audienceThe Ni0.2Mg0.8-xZnxFe2O4 (x = 0.2, 0.4, 0.6 & 0.8) ferrites are prepared via m...
Nanocrystalline Magnesium ferrite has been prepared by chemical co-precipitation technique. Structur...
Many physicists have studied the electrical and magnetic properties of polycrystalline ferrites in v...
The 3-component system of manganese-zinc-ferrites is being thoroughly investigated as regards its in...
The compositions of magnesium-zinc ferrites $(Mg_{0.56}Zn_{0.44})_{1-y}Fe_{2 + 2y/3}O_{4}$, where y ...
The formation of zinc ferrite from zinc and iron compounds, which reacted under sintering conditions...
The diploma thesis is focused on the investigation of the effect of zinc release during ferritic sin...
Microstructure of magnetic materials greatly influences the performance of magnetic properties, and ...
Zinc substituted magnesium (Mg–Zn) ferrites with the general formula Mg1−xZnxFe2O4 (x=0.00, 0.25, 0....
The magnetic properties of MnZn ferrites are highly influenced by the partial oxygen pressure during...
Abstract. The low temperature sintering of MgCuZn ferrite was investigated using the usual ceramic m...
The effects of Mg substitution by Cu on the properties of MgZn ferrites sintered at low temperature ...
Spark plasma sintering (SPS) is a powerful technique to produce fine grain dense ferrite at low temp...
The relationship between magnetic and mechanical properties has been studied as a function of compos...
Zinc ferrite samples were prepared by two different routes which are chemical co-precipitation and s...
International audienceThe Ni0.2Mg0.8-xZnxFe2O4 (x = 0.2, 0.4, 0.6 & 0.8) ferrites are prepared via m...
Nanocrystalline Magnesium ferrite has been prepared by chemical co-precipitation technique. Structur...
Many physicists have studied the electrical and magnetic properties of polycrystalline ferrites in v...
The 3-component system of manganese-zinc-ferrites is being thoroughly investigated as regards its in...