Low-cost, dimensionally stable, and hard cordierite ceramic materials were prepared by reaction sintering two Algerian natural clay minerals and synthetic magnesia. The microstructure and hardness of the developed materials were characterized by a scanning electron microscope and a hardness tester, respectively. Differential thermal analysis, dilatometry, and Raman spectroscopy were used to analyze the transformation of phases and sintering behavior. The coefficient of thermal expansion (α) was determined from dilatometry experiments. The microstructure of DT00M sample synthesized from stoichiometric powder mixture (clay minerals and synthetic magnesia) consisted of cordierite only. Whereas cordierite, magnesium silicate, and sapphirine pha...
Cordierite-mullite composite has been prepared from rice husk derived silica; Magnesium sulphate der...
This study describes the structural and physical properties of refractory cordierite prepared from r...
α Cordierite is very important phase in MgO-Al2O3-SiO2 system because of their very outstanding ther...
Cordierite based materials are widely used in high temperature applications due to their good thermo...
AbstractCordierite based materials are widely used in high temperature applications due to their goo...
Cordierite is a naturally occurring mineral with unique characteristics and can be synthesized from ...
Cordierite powders have been obtained by the combustion of aluminum nitrate, magnesium nitrate, magn...
AbstractCordierite–TiO2 composite (5–20wt.%) ceramics for various stoichiometric compositions were s...
Cordierite ceramics are known for their low CTE and high compressive strength values which affords t...
International audienceCordierite-based ceramic has been synthesized by solid state process from anda...
Dense cordierite ceramics were prepared from a sol mixture of alumina, silica, and magnesia, and the...
Two grades of cordierite powders have been prepared by the combustion of magnesium nitrate/magnesia,...
The research aims to prepare cordierite by using sources of alumina, silica, and magnesia from local...
Cordierite is one of the compounds in the MgO–Al2O3–SiO2 system which has the lowest thermal expansi...
Synthesis of cordierite (5SiO2⋅2MgO⋅2Al2O3) has attracted special attention from researchers for its...
Cordierite-mullite composite has been prepared from rice husk derived silica; Magnesium sulphate der...
This study describes the structural and physical properties of refractory cordierite prepared from r...
α Cordierite is very important phase in MgO-Al2O3-SiO2 system because of their very outstanding ther...
Cordierite based materials are widely used in high temperature applications due to their good thermo...
AbstractCordierite based materials are widely used in high temperature applications due to their goo...
Cordierite is a naturally occurring mineral with unique characteristics and can be synthesized from ...
Cordierite powders have been obtained by the combustion of aluminum nitrate, magnesium nitrate, magn...
AbstractCordierite–TiO2 composite (5–20wt.%) ceramics for various stoichiometric compositions were s...
Cordierite ceramics are known for their low CTE and high compressive strength values which affords t...
International audienceCordierite-based ceramic has been synthesized by solid state process from anda...
Dense cordierite ceramics were prepared from a sol mixture of alumina, silica, and magnesia, and the...
Two grades of cordierite powders have been prepared by the combustion of magnesium nitrate/magnesia,...
The research aims to prepare cordierite by using sources of alumina, silica, and magnesia from local...
Cordierite is one of the compounds in the MgO–Al2O3–SiO2 system which has the lowest thermal expansi...
Synthesis of cordierite (5SiO2⋅2MgO⋅2Al2O3) has attracted special attention from researchers for its...
Cordierite-mullite composite has been prepared from rice husk derived silica; Magnesium sulphate der...
This study describes the structural and physical properties of refractory cordierite prepared from r...
α Cordierite is very important phase in MgO-Al2O3-SiO2 system because of their very outstanding ther...