A magnetic powder, M-type barium hexaferrite (BaFe12O19), was consolidated with the spark plasma sinteringprocess. Three different holding temperatures, 850oC, 875oC and 900oC were applied to the spark plasma sinteringprocess with the same holding times, heating rates and compaction pressure of 30 MPa. The relative density was measuredsimultaneously with spark plasma sintering and the convergent relative density after cooling was found to be proportionalto the holding temperature. The full relative density was obtained at 900oC and the total sintering time wasonly 33.3 min, which was much less than the conventional furnace sintering method. The higher holding temperaturealso led to the higher saturation magnetic moment (??s) and the higher ...
In an attempt to obtain the best possible properties of barium hexaferrite (BaFe12O19), the sol–gel ...
Samples examined in this experimental work were in the form of hexagonal barium ferrite with various...
This research highlights the structural magnetic and microwave properties of nanoparticles of M-type...
Abstract A magnetic powder, M-type barium hexaferrite (BaFe12O19), was consolidated with the spark p...
This paper introduces a new spark plasma sintering technique that is able to order crystalline aniso...
The main purpose of this research work is to develop the single domain magnetic particles of M-type ...
International audienceDue to the limited rare-earth elements resources, ferrite magnets need to be i...
Most applications of hexaferrites require sintered products, but sintering of hexaferrites at high t...
Barium hexaferrite particles prepared by sol-gel technique yield best magnetic characteristics if a ...
Barium hexaferrite samples were prepared by mechanical alloying using the stoichiometric amounts of ...
Barium hexaferrite samples were prepared by mechanical alloying using the stoichiometric amounts of ...
Magnetic materials can be regarded now as being indispensable in modern technology. They are compone...
Stoichiometric and single-phase barium hexaferrite (BaM) has been synthesized by co-precipitation an...
Nanocrystalline of Barium Hexaferrite (BaFe12O19) powders have been synthesized using the sol gel au...
The phase composition, structure parameters, and main magnetic characteristics of BaFe12O19 hexaferr...
In an attempt to obtain the best possible properties of barium hexaferrite (BaFe12O19), the sol–gel ...
Samples examined in this experimental work were in the form of hexagonal barium ferrite with various...
This research highlights the structural magnetic and microwave properties of nanoparticles of M-type...
Abstract A magnetic powder, M-type barium hexaferrite (BaFe12O19), was consolidated with the spark p...
This paper introduces a new spark plasma sintering technique that is able to order crystalline aniso...
The main purpose of this research work is to develop the single domain magnetic particles of M-type ...
International audienceDue to the limited rare-earth elements resources, ferrite magnets need to be i...
Most applications of hexaferrites require sintered products, but sintering of hexaferrites at high t...
Barium hexaferrite particles prepared by sol-gel technique yield best magnetic characteristics if a ...
Barium hexaferrite samples were prepared by mechanical alloying using the stoichiometric amounts of ...
Barium hexaferrite samples were prepared by mechanical alloying using the stoichiometric amounts of ...
Magnetic materials can be regarded now as being indispensable in modern technology. They are compone...
Stoichiometric and single-phase barium hexaferrite (BaM) has been synthesized by co-precipitation an...
Nanocrystalline of Barium Hexaferrite (BaFe12O19) powders have been synthesized using the sol gel au...
The phase composition, structure parameters, and main magnetic characteristics of BaFe12O19 hexaferr...
In an attempt to obtain the best possible properties of barium hexaferrite (BaFe12O19), the sol–gel ...
Samples examined in this experimental work were in the form of hexagonal barium ferrite with various...
This research highlights the structural magnetic and microwave properties of nanoparticles of M-type...