Preparation method of aluminum-magnesium carbon steel ladle refractory bricks
A refractory brick, aluminum-magnesium-carbon technology, applied in the field of iron and steel metallurgy, can solve the problems of molten steel pollution, poor corrosion resistance, and ineffective removal of inclusions in steel, etc., to achieve extended service life, high continuity, and improved spalling resistance performance effect
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Embodiment 1
[0016] A method for preparing aluminum-magnesium-carbon ladle refractory bricks, which are composed of the following components in parts by weight: 28 parts of α-corundum, 42 parts of fused magnesia, 6 parts of fused aluminum-magnesium spinel, and alumina 4 parts of micropowder, 1 part of silicon carbide powder, 2.5 parts of metal aluminum powder, 3 parts of phenolic resin, 5 parts of flake graphite, in which the particle size of α-corundum, fused magnesia, and fused aluminum-magnesium spinel is 1-10mm, In each component, 1-3mm accounted for 25%, 3-6mm accounted for 45%, 6-10mm accounted for 30%, the particle size of alumina powder, silicon carbide powder, metal aluminum powder was -200 mesh, flake graphite The particle size is -28 mesh, and the preparation method includes the following steps:
[0017] 1) Mixing: first put α-corundum, fused magnesia sand, and fused aluminum-magnesium spinel into the mixer according to the above content and particle size ratio and mix for 4 minute...
Embodiment 2
[0022] A method for preparing aluminum-magnesium-carbon ladle refractory bricks, which are composed of the following components in parts by weight:
[0023] 32 parts of α-corundum, 38 parts of fused magnesia, 8 parts of fused aluminum-magnesium spinel, 3 parts of alumina powder, 2 parts of silicon carbide powder, 1.5 parts of metal aluminum powder, 5 parts of phenolic resin, 3 parts of flake graphite , The particle size of α-corundum, fused magnesia, and fused aluminum-magnesium spinel is 1-10mm, each component of 1-3mm accounts for 25%, 3-6mm accounts for 45%, 6-10mm Accounted for 30%, the particle size of alumina powder, silicon carbide powder, and metal aluminum powder is -200 mesh, and the particle size of flake graphite is -28 mesh. The preparation method includes the following steps:
[0024] 1) Mixing: first put α-corundum, fused magnesia sand, and fused aluminum-magnesium spinel into the mixer according to the above content and particle size ratio and mix for 6 minutes, the...
Embodiment 3
[0029] A method for preparing aluminum-magnesium-carbon ladle refractory bricks, which are composed of the following components in parts by weight: 30 parts of α-corundum, 40 parts of fused magnesia, 7 parts of fused aluminum-magnesium spinel, and alumina 3.5 parts of micro powder, 1.5 parts of silicon carbide powder, 2 parts of metal aluminum powder, 4 parts of phenolic resin, 4 parts of flake graphite, among which the particle size of α-corundum, fused magnesia, and fused aluminum-magnesium spinel is 1-10mm, In each component, 1-3mm accounted for 25%, 3-6mm accounted for 45%, 6-10mm accounted for 30%, the particle size of alumina powder, silicon carbide powder, metal aluminum powder was -200 mesh, flake graphite The particle size is -28 mesh, and the preparation method includes the following steps:
[0030] 1) Mixing: first put α-corundum, fused magnesia sand, and fused aluminum-magnesium spinel according to the above content and particle size ratio into the mixer for 5 minutes...
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