This work aims to investigate the relationship between the microstructure of Ni-Zn ferrite and its electrical and magnetic properties in the presence and absence of as small amounts as 0.12% of 0.4CaO + 0.8SiO2 over different sintering times. The X-ray diffraction pattern showed a single spinel phase formation in all the samples. The results indicate that grain growth occurred by increasing sintering time from 15 to 270 min in the two types of samples prepared in this study although it was greatly impeded by the additive oxides. Moreover, the oxides increase the resistivity of the ferrite and decrease its zinc loss. Magnetic properties such as induction magnetization (BS) and saturation magnetization (MS) decreased in the presence of the ad...
Ferrite samples having the general formula Ni1–xZnxLa0.05Fe1.95O4 were prepared using the standard c...
Ni0.65 Zn0.35 Fe2 O4, with high density and fine grain size, is a desirable composition for applicat...
Ni0.65 Zn0.35 Fe2 O4, with high density and fine grain size, is a desirable composition for applicat...
This work aims to investigate the relationship between the microstructure of Ni-Zn ferrite and its e...
Effect of CaO and SiO2 additions on the grain growth and magnetic and electrical properties of a Ni-...
The magnetic and physical properties of ferrites are very sensitive to microstructure, which in turn...
In this research work, parallel evolving morphology and magnetic properties in nickel zinc ferrite w...
The relationship between microstructural properties and magnetic characteristics of nickel zinc ferr...
This study evaluates the structural, microstructural, electric and magnetic properties of nickel fer...
This study evaluates the structural, microstructural, electric and magnetic properties of nickel fer...
The effects of 0.01 and 0.1 mol B2O3 addition to the microstructure and magnetic properties of a Ni-...
The influence of the sintered microstructure on the electromagnetic properties of Cu-doped NiZn ferr...
Ni-Zn ferrites have been synthesized with varying MnO2 as sintering aid as well as enhancer in magne...
The effect of grain growth via sintering temperature on some magnetic properties is reported in this...
NiZn ferrites have been commercially used for many years as high frequency materials. Dielectric pro...
Ferrite samples having the general formula Ni1–xZnxLa0.05Fe1.95O4 were prepared using the standard c...
Ni0.65 Zn0.35 Fe2 O4, with high density and fine grain size, is a desirable composition for applicat...
Ni0.65 Zn0.35 Fe2 O4, with high density and fine grain size, is a desirable composition for applicat...
This work aims to investigate the relationship between the microstructure of Ni-Zn ferrite and its e...
Effect of CaO and SiO2 additions on the grain growth and magnetic and electrical properties of a Ni-...
The magnetic and physical properties of ferrites are very sensitive to microstructure, which in turn...
In this research work, parallel evolving morphology and magnetic properties in nickel zinc ferrite w...
The relationship between microstructural properties and magnetic characteristics of nickel zinc ferr...
This study evaluates the structural, microstructural, electric and magnetic properties of nickel fer...
This study evaluates the structural, microstructural, electric and magnetic properties of nickel fer...
The effects of 0.01 and 0.1 mol B2O3 addition to the microstructure and magnetic properties of a Ni-...
The influence of the sintered microstructure on the electromagnetic properties of Cu-doped NiZn ferr...
Ni-Zn ferrites have been synthesized with varying MnO2 as sintering aid as well as enhancer in magne...
The effect of grain growth via sintering temperature on some magnetic properties is reported in this...
NiZn ferrites have been commercially used for many years as high frequency materials. Dielectric pro...
Ferrite samples having the general formula Ni1–xZnxLa0.05Fe1.95O4 were prepared using the standard c...
Ni0.65 Zn0.35 Fe2 O4, with high density and fine grain size, is a desirable composition for applicat...
Ni0.65 Zn0.35 Fe2 O4, with high density and fine grain size, is a desirable composition for applicat...