Preparation method of compact calcium hexaluminate-corundum composite ceramic
A technology of calcium hexaaluminate and multi-phase ceramics, which is applied in the field of industrial ceramics preparation, can solve the problems of low diffusion coefficient of calcium hexaaluminate and corundum lattice, reduce production cost, and high sintering temperature, so as to reduce fuel cost and save raw materials The effect of low cost and firing temperature
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Embodiment 1
[0022] A preparation method of dense calcium hexaaluminate-corundum composite ceramics, comprising the following steps:
[0023] (1) Raw material treatment: use a ball mill to wet-mill 8 hours of ferro-titanium slag and industrial alumina respectively. The ball-milling medium is water. Aluminum is passed through a 250-mesh sieve.
[0024] (2) Mixing of raw materials: adding zirconia, a reinforcing agent with a certain particle size, to the raw materials, and weighing ferro-titanium slag, alumina and zirconia in a certain proportion, wherein, 70% of ferrotitanium slag is weighed by mass percentage, industrial Alumina 22% and zirconia 8%, the fineness of zirconia is 20nm, ball milling in a ball mill tank for 1h and mixed evenly to obtain a mixture.
[0025] (3) Granulation and stale: adopt spray drying method, add PVA aqueous solution to the mixture according to 7% of the mass of the mixture, stale for 24 hours after granulation, and form a billet. Wherein, the PVA concentrati...
Embodiment 2
[0031] A preparation method of dense calcium hexaaluminate-corundum composite ceramics, comprising the following steps:
[0032] (1) Raw material treatment: use a ball mill to wet-mill 12 hours of ferro-titanium slag and industrial alumina respectively. The ball-milling medium is water. Aluminum is passed through a 250-mesh sieve.
[0033] (2) Mixing of raw materials: adding zirconia, a reinforcing agent with a certain particle size, to the raw materials, and weighing ferro-titanium slag, alumina and zirconia in a certain proportion, wherein, 50% of ferrotitanium slag is weighed by mass percentage, industrial Alumina 38% and zirconia 12%, the fineness of zirconia is 20nm, ball milled in a ball mill tank for 3 hours and mixed evenly to obtain a mixture.
[0034] (3) Granulation and staling: adopt spray drying method, add PVA aqueous solution to the mixture according to 10% of the mass of the mixture, stale for 48 hours after granulation, and form a billet. Wherein, the PVA co...
Embodiment 3
[0040] A preparation method of dense calcium hexaaluminate-corundum composite ceramics, comprising the following steps:
[0041] (1) Raw material treatment: Use a ball mill to wet-mill 10 hours of ferro-titanium slag and industrial alumina respectively. The ball-milling medium is water. Aluminum is passed through a 250-mesh sieve.
[0042] (2) Mixing of raw materials: adding zirconia, a reinforcing agent with a certain particle size, to the raw materials, and weighing ferro-titanium slag, alumina and zirconia according to a certain proportion, wherein, 60% of ferrotitanium slag is weighed by mass percentage, industrial 30% of alumina and 10% of zirconia, the fineness of zirconia is 20nm, ball milled in a ball mill tank for 2 hours and mixed evenly to obtain a mixture.
[0043] (3) Granulation and staling: adopt spray drying method, add PVA aqueous solution to the mixture according to 8% of the mass of the mixture, stale for 36 hours after granulation, and form a billet. Wher...
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