DocumentCode :
1195044
Title :
Development of high-quality ceramic powders for Sr0.9Ca 0.1Zn2-W type hexagonal ferrite for permanent magnet devices
Author :
Ram, Shanker ; Joubert, J.C.
Author_Institution :
Lab. des Materiaux et du Genie Phys., Domaine Univ., Grenoble, France
Volume :
28
Issue :
1
fYear :
1992
fDate :
1/1/1992 12:00:00 AM
Firstpage :
15
Lastpage :
20
Abstract :
Fine ceramic powders of Sr0.9Ca0.1Zn2 Fe16O27 (Sr0.9Ca0.1Zn 2-W) ferrite, of almost single domain grain size ~1 μm, have been synthesized successfully by sintering for a few hours a mixture of SrCO3, CaCO3, ZnO, and α-Fe2 O3 in stoichiometric amounts at an effectively low temperature (Ts) of ~1100°C. Carbon dioxide evolves in the reaction Sr(Ca)CO3+2ZnO+8 α-Fe2D3 &lrarr2;Sr(Ca)Zn2Fe16O2+C2 , making fine pores in the sample, which prevent large grain growth of the material and result in a very loose powder. The small ⩽10% substitution of Sr by Ca activates the reaction, but preserves the crystallization of the small-sized grains. This yields magnetic properties useful for most permanent magnet applications, with a promisingly high coercivity Hc~3650 Oe and saturation magnetization Ms~65 emu/g. A considerably better saturation magnetization Ms~85 emu/g can be obtained by sintering the samples at higher Ts~1300°C, but that results in a rather very low coercivity Hc~105 Oe
Keywords :
X-ray diffraction examination of materials; annealing; calcium compounds; ceramics; coercive force; ferrites; grain growth; grain size; magnetic properties of fine particles; magnetisation; permanent magnets; powder technology; sintering; strontium compounds; zinc compounds; 1100 C; 1300 C; Sr0.9Ca0.1Zn2Fe16O 27 ferrite; X-ray diffraction; coercivity; crystallization; fine ceramic powders; grain growth; hexagonal ferrite; high-quality ceramic powders; magnetic properties; permanent magnet devices; saturation magnetization; single domain grain size; sintering; stoichiometry; thermal annealing; Ceramics; Coercive force; Ferrites; Grain size; Iron; Powders; Saturation magnetization; Strontium; Temperature; Zinc oxide;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.119811
Filename :
119811
Link To Document :
بازگشت