The coercivity and the remanence of sintered M-type ferrites are highly dependent on the microstructure of the ferrite particles, particularly the size, morphology, and crystal orientation of the particles. To control the microstructures of ferrite particles, it is strongly recommended to control the nucleation and grain growth of them. In this paper, molten NaCl was used to control the crystal orientation and shape of Sr ferrite (SrFe12O19) particles. By changing the calcination conditions, Sr ferrite particles were obtained which had a hexagonal plate shape, and whose c-axis was aligned to the normal direction of the plate. Without any sophisticated magnetic alignment, Sr ferrite particles calcined at 1050 degrees C showed a saturation ma...
Strontium hexaferrite (SrFe12O19; Sr-ferrite) is one of the well-known materials for permanent magne...
661-665Strontium hexaferrite has been prepared by coprecipitation technique. Controlled precipitatio...
Sr-hexaferrite powders with Fe/Sr molar ratio of 11 was synthesized via conventional ceramic route. ...
The magnetic properties of ferrite powders are known to be strongly dependent on their morphologies,...
Reducing the particle size of hexagonal ferrites is known to increase their coercivity effectively. ...
Reducing the particle size of hexagonal ferrites is known to increase their coercivity effectively. ...
Nanocrystalline strontium hexaferrite (SrFe12O19) powders have been successfully synthesized using f...
Strontium ferrite (hexaferrite), SrFe12O19, was successfully fabricated in sizes ranging from hundre...
Fine strontium hexaferrite particles were prepared by the low temperature auto-combustion method. Aq...
Strontium hexaferrite (SrFe12O19, SrM) suitable for high-performance permanent magnet applications w...
176-180The effects of sodium ions added before and after calcination of coprecipitated hexagonal Sr-...
Magnet is a kind of material engineering that essential to be developed. Needs of this material are ...
Single phase Sr-M ferrite fine particles were prepared by the chemical coprecipitation and subsequen...
Single phase Sr-M ferrite fine particles were prepared by the chemical coprecipitation and subsequen...
Strontium ferrite (SrFe(12)O(19)) particles were prepared by co-precipitation method. The ferrite pr...
Strontium hexaferrite (SrFe12O19; Sr-ferrite) is one of the well-known materials for permanent magne...
661-665Strontium hexaferrite has been prepared by coprecipitation technique. Controlled precipitatio...
Sr-hexaferrite powders with Fe/Sr molar ratio of 11 was synthesized via conventional ceramic route. ...
The magnetic properties of ferrite powders are known to be strongly dependent on their morphologies,...
Reducing the particle size of hexagonal ferrites is known to increase their coercivity effectively. ...
Reducing the particle size of hexagonal ferrites is known to increase their coercivity effectively. ...
Nanocrystalline strontium hexaferrite (SrFe12O19) powders have been successfully synthesized using f...
Strontium ferrite (hexaferrite), SrFe12O19, was successfully fabricated in sizes ranging from hundre...
Fine strontium hexaferrite particles were prepared by the low temperature auto-combustion method. Aq...
Strontium hexaferrite (SrFe12O19, SrM) suitable for high-performance permanent magnet applications w...
176-180The effects of sodium ions added before and after calcination of coprecipitated hexagonal Sr-...
Magnet is a kind of material engineering that essential to be developed. Needs of this material are ...
Single phase Sr-M ferrite fine particles were prepared by the chemical coprecipitation and subsequen...
Single phase Sr-M ferrite fine particles were prepared by the chemical coprecipitation and subsequen...
Strontium ferrite (SrFe(12)O(19)) particles were prepared by co-precipitation method. The ferrite pr...
Strontium hexaferrite (SrFe12O19; Sr-ferrite) is one of the well-known materials for permanent magne...
661-665Strontium hexaferrite has been prepared by coprecipitation technique. Controlled precipitatio...
Sr-hexaferrite powders with Fe/Sr molar ratio of 11 was synthesized via conventional ceramic route. ...