Low-creep fire brick, and preparation method and application thereof
A refractory brick and low-creep technology, applied in the field of refractory materials, can solve the problems of anode carbon block production impact, low load softening point, poor thermal shock stability, etc., achieve reasonable composition, improve service life, and slag resistance strong effect
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Embodiment 1
[0026] This embodiment provides a low-creep refractory brick, which includes aggregate, fine material and pulp water, wherein the quality of the pulp water is 4.5% of the total mass of the aggregate and the fine material; the bone The material and the fine material include the following raw materials in mass percentage: 30% of large coke gemstone particles, 27% of small sillimanite particles, 15% of bonded clay fine powder and 28% of bauxite clinker fine powder.
[0027] Wherein, the particle size of the large burnt gemstone particles is 1 mm to 3 mm, the particle size of the small sillimanite particles is less than 1 mm, the particle size of the bonded clay fine powder is less than 0.074 mm, and the bauxite clinker fine powder is The particle size is less than 0.043 mm. The chemical composition of each raw material is shown in Table 1.
[0028] Table 1, the main chemical composition of each raw material
[0029] raw material
al 2 o 3
Fe 2 o 3
K ...
Embodiment 2
[0036] This embodiment provides a low-creep refractory brick, the specific raw material composition is roughly the same as that of Embodiment 1, the difference is that the quality of the pulp water in this embodiment is the total mass of the aggregate and the fine material 5%, the aggregate and the fine material include the following raw materials in mass percentages: 31% of large coke gemstone particles, 29% of sillimanite small particles, 18% of bonded clay fine powder and 22% of bauxite clinker fine powder %.
[0037] The preparation method of the low-creep refractory brick described in this example is roughly the same as the preparation method in Example 1, the difference is that the mixed mud is pressed into adobe, and then the adobe is put into a tunnel type Drying in a drying tunnel for 24 hours, wherein the inlet temperature of the tunnel-type drying tunnel is controlled at 60°C and the outlet temperature is 130°C; the dried bricks are loaded into a gas-fired tunnel ki...
Embodiment 3
[0040] This embodiment provides a low-creep refractory brick, the specific raw material composition is roughly the same as that of Embodiment 1, the difference is that in this embodiment, the mass of the pulp water is the total mass of the aggregate and the fine material 5.5%, the aggregate and the fine material include the following raw materials in mass percentages: 31% of large sillimanite particles, 29% of sillimanite small particles, 20% of bonded clay fine powder and 20% of bauxite clinker fine powder %.
[0041]The preparation method of the low-creep refractory brick described in this example is roughly the same as the preparation method in Example 1, the difference is that the mixed mud is pressed into adobe, and then the adobe is put into a tunnel type Drying in a drying tunnel for 24 hours, wherein the inlet temperature of the tunnel-type drying tunnel is controlled to be 60°C and the outlet temperature is 130°C; then the dried bricks are calcined at a temperature of...
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