Title :
Influences of Calcination Temperature on Densification and Magnetic Properties of Bi-Modified NiCuZn Ferrites
Author :
Suna Zhang ; Lijun Jia ; Huaiwu Zhang ; Feiming Bai ; Baoyuan Liu
Author_Institution :
State Key Lab. of Electron. Thin Films & Integrated Devices, Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Abstract :
The influences of calcination temperature on the densification, microstructures, and magnetic properties of low-temperature-fired Bi-modified NiCuZn ferrites have been investigated in order to adapt the development of low-temperature cofired ferrites technology and produce high-frequency devices with a multilayer process. It is found that with increasing calcination temperature, some Bi3+ ions enter into the spinel lattice gradually, and consequently improve the microstructural uniformity and densification. Thus, the quality factor increases observably while the real permeability decreases a little. Optimized magnetic properties and linear sintering shrinkage can be obtained for Bi-modified NiCuZn ferrites calcined at proper temperature due to uniform microstructures with small grain size, and higher sintering density.
Keywords :
Q-factor; bismuth compounds; calcination; copper compounds; densification; ferrites; grain size; magnetic permeability; nickel compounds; shrinkage; sintering; zinc compounds; BiNiCuZnFeO3; calcination temperature; densification; grain size; high-frequency devices; linear sintering shrinkage; low-temperature-fired ferrites; magnetic permeability; magnetic properties; microstructure; multilayer process; quality factor; spinel lattice; Bismuth; Calcination; Ferrites; Magnetic properties; Microstructure; Permeability; Temperature; Bi-modified NiCuZn ferrites; calcination; densification; magnetic properties; microstructure;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2247385