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The results are particularly important for the design of future ceramic materials combining tailored thermal properties, mechanical properties, electrical conductivity and oxidation resistance.
These materials have tailorable microstructure and properties, and behave like ceramic materials manufactured by advanced ceramic processing approaches.
All the results indicate that the Ba2LaV3O11 ceramic might be a promising candidate for low temperature cofired ceramic technology.
Each of these distributions can have a strong influence on ceramic processing and on the properties of ceramic products.
The results indicated that the ceramic body from Campos presents significant differences in the evaluated characteristics in comparison with the other ceramic bodies.
The piezoelectric properties of this nonreducible ceramic were comparable or superior to those of the same ceramic sintered in air.
The study of the technological properties shows that the new mixtures are suitable for the processing of ceramic products in which structural and thermal insulating properties are improved or kept.
The results show that ceramic materials made under these conditions are ideal candidates for manufacturing ceramic proppants for the exploitation of unconventional oil and gas resources.
Experimental results revealed that pure WO3 ceramic could exhibit a nonohmic behavior which was formed in the cooling process of ceramic, and very sensitive to heat treatment in different atmospheres.
The results show that the composite ceramic coatings are composed of an inner nitrocarburized layer, a CrN interlayer and an outmost AlCrTiSiN layer.