The conventional ceramic route was utilized to prepare a hard magnetic powder (M-type strontium ferrite, SrFe12O19). The stoichiometric mixture of iron oxide and strontium carbonate were calcined at 1000oC and then fired at various temperatures. The influence of various reaction parameters such as mixing ratio, calcination temperature, firing temperature and firing time on the magnetic behaviors of the synthesized magnetic powder were investigated. The magnetic properties including Coercivity (Hc), Magnetic saturation (Ms), and Magnetic remnance (Mr) were measured by vibrating sample magnetometer. Morphologically the produced magnetic powder has a dense hexagonal grain shape structure
Strontium hexaferrite nanocrystalline powders were synthesized using a citrate combustion method and...
Magnetic powder of Sr-ferrite was prepared by conventional and sol-gel auto-combustion methods. In c...
peer reviewedStrontium M-type hexagonal ferrites were synthesized at different calcination temperatu...
Strontium hexaferrite (SrFe12O19; Sr-ferrite) is one of the well-known materials for permanent magne...
The magnetic properties of ferrite powders are known to be strongly dependent on their morphologies,...
Fine strontium hexaferrite particles were prepared by the low temperature auto-combustion method. Aq...
Nanocrystalline strontium hexaferrite (SrFe12O19) powders have been successfully synthesized using f...
Powders of strontium hexaferrite (SrFe12O19-SrF) have been prepared by the sol-gel process. The prep...
Strontium hard ferrite (SrFe12O19), commonly known as the ceramic permanent magnet is conventionally...
Strontium M-type hexagonal ferrites were synthesized at different calcination temperatures (800 °C, ...
Abstract. Strontium hexaferrite powder, produced conventionally from strontium carbonate and iron ox...
Magnet is a kind of material engineering that essential to be developed. Needs of this material are ...
Strontium hexaferrite powder, produced conventionally from strontium carbonate and iron oxide has be...
The interest toward hard magnetic materials increases in the last years. In order to have the best m...
Reducing the particle size of hexagonal ferrites is known to increase their coercivity effectively. ...
Strontium hexaferrite nanocrystalline powders were synthesized using a citrate combustion method and...
Magnetic powder of Sr-ferrite was prepared by conventional and sol-gel auto-combustion methods. In c...
peer reviewedStrontium M-type hexagonal ferrites were synthesized at different calcination temperatu...
Strontium hexaferrite (SrFe12O19; Sr-ferrite) is one of the well-known materials for permanent magne...
The magnetic properties of ferrite powders are known to be strongly dependent on their morphologies,...
Fine strontium hexaferrite particles were prepared by the low temperature auto-combustion method. Aq...
Nanocrystalline strontium hexaferrite (SrFe12O19) powders have been successfully synthesized using f...
Powders of strontium hexaferrite (SrFe12O19-SrF) have been prepared by the sol-gel process. The prep...
Strontium hard ferrite (SrFe12O19), commonly known as the ceramic permanent magnet is conventionally...
Strontium M-type hexagonal ferrites were synthesized at different calcination temperatures (800 °C, ...
Abstract. Strontium hexaferrite powder, produced conventionally from strontium carbonate and iron ox...
Magnet is a kind of material engineering that essential to be developed. Needs of this material are ...
Strontium hexaferrite powder, produced conventionally from strontium carbonate and iron oxide has be...
The interest toward hard magnetic materials increases in the last years. In order to have the best m...
Reducing the particle size of hexagonal ferrites is known to increase their coercivity effectively. ...
Strontium hexaferrite nanocrystalline powders were synthesized using a citrate combustion method and...
Magnetic powder of Sr-ferrite was prepared by conventional and sol-gel auto-combustion methods. In c...
peer reviewedStrontium M-type hexagonal ferrites were synthesized at different calcination temperatu...