Preparation method of zirconium oxide-enhanced aluminum oxide porous ceramic with closed-pore structure
A technology of closed-cell structure and porous ceramics, applied in the field of ceramic materials, can solve the problems of affecting density and thermal conductivity, mechanical strength can not be solved well, porosity, etc. high rate effect
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Embodiment 1
[0025] (1) According to the volume ratio of 2:3, slowly drop 0.05M oxalic acid aqueous solution into the 0.2M chromium oxychloride solution, stir evenly to obtain zirconium sol, and first immerse the nanoporous alumina film with a pore size of 20nm into the zirconium sol 10min, then immerse in the iridium oxide precursor solution for 10min, take it out, dry it under an infrared lamp, and then sinter at 500°C for 5h in an argon atmosphere to obtain a stable iridium oxide with a diameter of 50-300nm and a length greater than 10μm. Nanowire tetragonal zirconia powder.
[0026] (2) By weight percentage, 4% iridium oxide-stabilized nanowire tetragonal zirconia powder, 16% hollow alumina balls with a particle size of 0.5 μm and a diameter of 5 μm with a weight ratio of 1:1 , a mixture of alumina fibers with a length of 1-2mm and 0.3% of silica sol with a particle size of 20nm are mixed, and ball milled in a rolling ball mill for 4h to obtain a mixed slurry, wherein the amount of alu...
Embodiment 2
[0030] (1) According to the volume ratio of 2:3, slowly drop 0.05M oxalic acid aqueous solution into the 0.2M chromium oxychloride solution, stir evenly to obtain zirconium sol, and first immerse the nanoporous alumina film with a pore size of 20nm into the zirconium sol 10min, then immerse in the iridium oxide precursor solution for 10min, take it out, dry it under an infrared lamp, and then sinter at 500°C for 5h under an argon atmosphere to obtain a stable iridium oxide with a diameter of 50-300nm and a length greater than 10μm. Nanowire tetragonal zirconia powder.
[0031] (2) By weight percentage, 9.5% of iridium oxide-stabilized nanowire tetragonal zirconia powder, 35% of hollow alumina balls with a particle size of 0.5 μm and a diameter of 5 μm with a weight ratio of 3:1 , a mixture of alumina fibers with a length of 1-2mm and 0.5% of silica sol with a particle size of 20nm are mixed, and ball milled in a rolling ball mill for 6h to obtain a mixed slurry, wherein the am...
Embodiment 3
[0035] (1) According to the volume ratio of 2:3, slowly drop 0.05M oxalic acid aqueous solution into the 0.2M chromium oxychloride solution, stir evenly to obtain zirconium sol, and first immerse the nanoporous alumina film with a pore size of 20nm into the zirconium sol 10min, then immerse in the iridium oxide precursor solution for 10min, take it out, dry it under an infrared lamp, and then sinter at 500°C for 5h in an argon atmosphere to obtain a stable iridium oxide with a diameter of 50-300nm and a length greater than 10μm. Nanowire tetragonal zirconia powder.
[0036] (2) By weight percentage, 1.8% iridium oxide-stabilized nanowire tetragonal zirconia powder, 5% hollow alumina balls with a particle size of 0.2 μm and a diameter of 5 μm with a weight ratio of 2:1 , a mixture of alumina fibers with a length of 1-2mm and 0.2% of silica sol with a particle size of 20nm are mixed, and ball milled in a rolling ball mill for 1h to obtain a mixed slurry, wherein the amount of al...
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