Ladle castable for stainless steel smelting and preparation method thereof
A technology of ladle casting and stainless steel, applied in the field of ladle castables, can solve the problems of reducing the service life of refractory materials, peeling and damage of refractory materials, and unfavorable control of elements in steel, etc., to improve quality, improve thermal shock resistance and steel slag corrosion resistance. Good performance and thermal shock stability
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Embodiment 1
[0035] A ladle castable for stainless steel smelting and a preparation method thereof.
[0036] Using 43-53wt% microporous corundum particles and 19-27% magnesium-aluminum spinel particles as aggregates, 11-15wt% microporous corundum fine powder, 2-4wt% magnesium-aluminum spinel fine powder, 4 ~5wt% pseudoboehmite, 2~4wt% ρ-Al 2 o 3Fine powder, 0.1-1wt% monoclinic zirconia fine powder and 0.1-1wt% chromium powder are used as the matrix, the sum of the aggregate and the matrix is the raw material; 0.04-0.08wt% of the raw material is Organic fiber, 0.1-0.5wt% polycarboxylate water reducer, 0.2-0.5wt% maleic acid and 0.01-0.03wt% defoamer are additives.
[0037] Firstly premix the base and the admixture, add 4-7wt% water of the raw material, and stir for 2-4 minutes to obtain a premix. Install the mold, sprinkle the aggregate evenly into the mold, pour the premixed material into the mold, vibrate and shape, keep warm at 110-170°C for 36-48 hours, and demould to obtain stainl...
Embodiment 2
[0040] A ladle castable for stainless steel smelting and a preparation method thereof.
[0041] 48-58wt% microporous corundum particles and 16-24wt% magnesium-aluminum spinel particles are used as aggregates, 9-13wt% microporous corundum fine powder, 2-4wt% magnesium-aluminum spinel powder, 5-6wt% pseudo-boehmite, 2-4wt% ρ-Al 2 o 3 Fine powder, 0.1-1wt% monoclinic zirconia fine powder and 0.1-1wt% chromium powder are used as the matrix, the sum of the aggregate and the matrix is the raw material; 0.04-0.08wt% of the raw material is Organic fiber, 0.1-0.5wt% polycarboxylate water reducer, 0.2-0.5wt% maleic acid and 0.01-0.03wt% defoamer are additives.
[0042] Premix the base and the additive, add 5-8wt% water of the raw material, and stir for 2-4 minutes to obtain a premix. Install the mold, sprinkle the aggregate evenly into the mold, pour the premixed material into the mold, vibrate and shape, keep warm at 120-180°C for 28-40 hours, and demould to obtain stainless steel...
Embodiment 3
[0045] A ladle castable for stainless steel smelting and a preparation method thereof.
[0046] 53-63wt% microporous corundum particles and 13-21wt% magnesium-aluminum spinel particles are used as aggregates, 7-11wt% microporous corundum fine powder, 2-4wt% magnesium-aluminum spinel powder, 6-7wt% pseudo-boehmite, 2-4wt% ρ-Al 2 o 3 Fine powder, 0.1-1wt% monoclinic zirconia fine powder and 0.1-1wt% chromium powder are used as the matrix, the sum of the aggregate and the matrix is the raw material; 0.04-0.08wt% of the raw material is Organic fiber, 0.1-0.5wt% polycarboxylate water reducer, 0.2-0.5wt% maleic acid and 0.01-0.03wt% defoamer are additives.
[0047] Premix the base and the additive, add 6-9 wt% water of the raw material, and stir for 2-4 minutes to obtain the premix. Install the mold, sprinkle the aggregate evenly into the mold, then pour the premixed material into the mold, vibrate and shape, keep warm at 130-190°C for 20-32 hours, and demould to obtain stainle...
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