Powder mixture of 50 mass % of barium titanate (BaTiO3) and 50 mass % of iron (Fe) was prepared by solid-state reaction technique, i.e. ball milled in air for 60 min, 80 min, 100 min, 120 min and 150 min. During mechanochemical activation it was observed the iron powder transitsion to iron oxides. Depending on the activation time the content of iron oxides FeO, Fe2 O3 and Fe3O4 varies. Simultaneously, with the content change of the activated system, magnetic properties change as well. The XRD analysis of milled samples shown that as the activation time increase, the iron oxide percentage increases to, whereby the percentage of BaTiO3 in a total sample mass decreases. The percentage of iron oxides and BaTiO3 in annealed samples changes depen...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
The initial powder (16 % Fe2O3, 4 % BaCO3, 80 % BaTiO3) was mechanically activated in a planetary mi...
Powder mixture of 50 mass % of barium titanate (BaTiO3) and 50 mass % of iron (Fe) was prepared b...
© 2020 Authors. Multiferroic systems are attractive to the researches worldwide due to diversity of ...
Powder mixture of 60 mass % of iron (Fe) and 40 mass % of barium titanate (BaTiO3) has been activate...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
A mixture of polycrystalline powders of Fe (70 % wt.) and BaTiO3 (30 % wt.) was ball-milled in a pla...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigate...
A mixture of polycrystalline powders of Fe (70 % wt.) and BaTiO3 (30 % wt.) was ball-milled in a pla...
Mechanical activation of a mixture of polycrystalline powders Fe3O4 (50% wt.) and BaTiO3 (50% wt.) w...
© 2018 Elsevier Ltd and Techna Group S.r.l. Barium hexaferrite ceramics were prepared using mechanic...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
The initial powder (16 % Fe2O3, 4 % BaCO3, 80 % BaTiO3) was mechanically activated in a planetary mi...
Powder mixture of 50 mass % of barium titanate (BaTiO3) and 50 mass % of iron (Fe) was prepared b...
© 2020 Authors. Multiferroic systems are attractive to the researches worldwide due to diversity of ...
Powder mixture of 60 mass % of iron (Fe) and 40 mass % of barium titanate (BaTiO3) has been activate...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
A mixture of polycrystalline powders of Fe (70 % wt.) and BaTiO3 (30 % wt.) was ball-milled in a pla...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
Crystal structure and morphology of mechanically activated nanocrystalline Fe/BaTiO3 was investigate...
A mixture of polycrystalline powders of Fe (70 % wt.) and BaTiO3 (30 % wt.) was ball-milled in a pla...
Mechanical activation of a mixture of polycrystalline powders Fe3O4 (50% wt.) and BaTiO3 (50% wt.) w...
© 2018 Elsevier Ltd and Techna Group S.r.l. Barium hexaferrite ceramics were prepared using mechanic...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
Barium hexaferrite ceramics were prepared using mechanically activated mixtures of iron and barium t...
The initial powder (16 % Fe2O3, 4 % BaCO3, 80 % BaTiO3) was mechanically activated in a planetary mi...