Furnace-protecting anhydrous stemming
A technology of anhydrous taphole mud and raw materials, which is applied in the field of refractory materials, can solve problems such as the influence of hearth life, and achieve the effects of avoiding iron penetration, prolonging iron tapping time, and low shrinkage
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Embodiment 1
[0017] The chemical composition and weight percentage content of the raw material of anhydrous taphole mud for furnace protection are:
[0018] Corundum powder 25%; coke powder 16%; clay powder 19%; silicon carbide powder 9%; asphalt powder 3%; anthracene oil 18%; titanium dioxide powder 10%.
[0019] Among them: Al in corundum powder 2 o 3 94.5%; SiC in silicon carbide powder is 95%; TiO in titanium dioxide powder 2 96.5%. The particle size of each solid raw material is 325 mesh, and the maximum particle size does not exceed 2.8mm.
Embodiment 2
[0021] The chemical composition and weight percentage content of the raw material of anhydrous taphole mud for furnace protection are:
[0022] Corundum powder 20%; coke powder 17%; clay powder 16%; silicon carbide powder 12%; asphalt powder 4%; anthracene oil 20%; titanium dioxide powder 11%.
[0023] Among them: Al in corundum powder 2 o 3 94%; SiC in silicon carbide powder is 95%; TiO in titanium dioxide powder 2 97%. The particle size of each solid raw material is 325 mesh, and the maximum particle size does not exceed 1.5mm.
Embodiment 3
[0025] The chemical composition and weight percentage content of the raw material of anhydrous taphole mud for furnace protection are:
[0026] Corundum powder 15%; coke powder 18%; clay powder 20%; silicon carbide powder 13%; asphalt powder 2%; anthracene oil 23%; titanium dioxide powder 9%.
[0027] Among them: Al in corundum powder 2 o 3 95%; SiC in silicon carbide powder is 94.5%; TiO in titanium dioxide powder 2 96.5%. The particle size of each solid raw material is 325 mesh, and the maximum particle size does not exceed 2.0mm.
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