Magnesium aluminate has the spinel structure along with good mechanical, chemical, and thermal properties. Magnesium aluminate has a wide range of applications including refractory ceramics, optically transparent ceramic windows, and armors. Its low dielectric permeability and low loss tangent enable its applications for integrated electronic devices, as well. In this paper, MgO and Al2O3 powders were mixed in a one-to-one molar ratio and calcined at temperatures ranging from 1500 to 1800o C to produce phase pure spinel. Thereafter, pellets were crushed and treated in a planetary ball mill for 60 min to obtain a fine powder. All powders were examined for phase composition, crystal structure, and morphology. The obtained results showed that ...
Solid-state mechanical activation of MgO and α-Al2O3 powders was used to produce MgAl2O4. The cation...
Solid-state mechanical activation of MgO and α-Al2O3 powders was used to produce MgAl2O4. The cation...
MgO rich spinel precursor containing $Al_2O_3 : MgO$ in weight proportions of 1:1, 1:1.1, 1:1.2, 1:1...
Magnesium aluminate has the spinel structure along with good mechanical, chemical, and thermal prope...
Magnesium aluminate has the spinel structure along with good mechanical, chemical, and thermal prope...
Magnesium aluminate has spinel structure and very good mechanical, chemical, and thermal properties....
Magnesium aluminate has spinel structure and very good mechanical, chemical, and thermal properties....
Solid-state mechanical activation of MgO and alpha-Al2O3 powders was used to produce MgAl2O4. The ca...
Magnesium aluminate, MgAl2O4, and other alumina-based spinels are refractory ceramics with high hard...
Magnesium aluminate, MgAl2O4, and other alumina-based spinels are refractory ceramics with high hard...
Magnesium aluminate, MgAl2O4 and other alumina-based spinels are ceramics with high hardness, high m...
Magnesium aluminate, MgAl2O4 and other alumina-based spinels are ceramics with high hardness, high m...
Magnesium aluminate and other alumina-based spinels are refractory ceramics with excellent propertie...
Magnesium aluminate and other alumina-based spinels are refractory ceramics with excellent propertie...
Solid-state mechanical activation of MgO and α-Al2O3 powders was used to produce MgAl2O4. The cation...
Solid-state mechanical activation of MgO and α-Al2O3 powders was used to produce MgAl2O4. The cation...
Solid-state mechanical activation of MgO and α-Al2O3 powders was used to produce MgAl2O4. The cation...
MgO rich spinel precursor containing $Al_2O_3 : MgO$ in weight proportions of 1:1, 1:1.1, 1:1.2, 1:1...
Magnesium aluminate has the spinel structure along with good mechanical, chemical, and thermal prope...
Magnesium aluminate has the spinel structure along with good mechanical, chemical, and thermal prope...
Magnesium aluminate has spinel structure and very good mechanical, chemical, and thermal properties....
Magnesium aluminate has spinel structure and very good mechanical, chemical, and thermal properties....
Solid-state mechanical activation of MgO and alpha-Al2O3 powders was used to produce MgAl2O4. The ca...
Magnesium aluminate, MgAl2O4, and other alumina-based spinels are refractory ceramics with high hard...
Magnesium aluminate, MgAl2O4, and other alumina-based spinels are refractory ceramics with high hard...
Magnesium aluminate, MgAl2O4 and other alumina-based spinels are ceramics with high hardness, high m...
Magnesium aluminate, MgAl2O4 and other alumina-based spinels are ceramics with high hardness, high m...
Magnesium aluminate and other alumina-based spinels are refractory ceramics with excellent propertie...
Magnesium aluminate and other alumina-based spinels are refractory ceramics with excellent propertie...
Solid-state mechanical activation of MgO and α-Al2O3 powders was used to produce MgAl2O4. The cation...
Solid-state mechanical activation of MgO and α-Al2O3 powders was used to produce MgAl2O4. The cation...
Solid-state mechanical activation of MgO and α-Al2O3 powders was used to produce MgAl2O4. The cation...
MgO rich spinel precursor containing $Al_2O_3 : MgO$ in weight proportions of 1:1, 1:1.1, 1:1.2, 1:1...