会议论文详细信息
21st Latin American Symposium on Solid State Physics
Characterization of ceramics materials mixed with Co3O4
Guzmán, A.F.^1 ; Téllez, D A Landínez^2 ; Roa-Rojas, J.^2 ; Fajardo, F.^1
Grupo de Estudios de Materiales-GEMA, Departamento de Física, Universidad Nacional de Colombia, AA 5997, Bogotá DC, Colombia^1
Grupo de Física de Nuevos Materiales, Departamento de Física, Universidad Nacional de Colombia, AA 5997, Bogotá DC, Colombia^2
关键词: Ceramic samples;    Cobalt concentration;    Cobalt spinel;    Crystallographic analysis;    Elasticity moduli;    Mechanical characterizations;    Quantitative phase analysis;    Standard solid state reaction method;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/480/1/012019/pdf
DOI  :  10.1088/1742-6596/480/1/012019
来源: IOP
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【 摘 要 】

We have performed the preparation, structural, electrical and mechanical characterizations of ceramic materials composed of kaolinite Al2(Si2O5)(OH)4and alumina (Al2O3) mixed with different concentrations of cobalt oxide (Co3O4). Ceramic samples were prepared from a base concentration of alumina 30% and kaolinite 70%, mixed with various concentrations of cobalt oxide in steps of 4% up to a value of 20%. The samples were sintered by the standard solid-state reaction method at a temperature of 1350 °C. In all samples with cobalt was found the presence of mullite. It was determined that alumina and cristobalite decreased when the cobalt concentration was increased due to the formation of the cobalt spinel. In order to determine the crystal structure of the samples, crystallographic analysis from X-ray diffraction experiments and also the semi-quantitative phase analysis were performed. Results were compared with theoretical parameters through the PowderCell 2.4 software. By increasing the concentration of cobalt oxide was found a significant increase in the resistance of materials to friction wear and a small decrease on the mean value of the dielectric constant. Through flexion measurements is observed the increases of the elasticity modulus by about 45% for the sample with 4% of cobalt oxide when compared with the samples without cobalt.

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