Preparation method of ramming mass of ladle permanent liner
A ramming material, a permanent technology, applied in the field of iron and steel metallurgy, can solve the problems of short working life, high labor intensity, deterioration of castable performance, etc., to improve toughness and temperature resistance expansion performance, increase strength and service life, and improve use The effect of longevity
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Embodiment 1
[0020] A method for preparing a permanent lining ramming material for a ladle. The raw material of the ramming material consists of the following components in parts by weight: 45 parts of magnesia calcium sand, 8 parts of waste aluminum magnesia spinel refractory bricks, and 10 parts of sintered converter waste slag , 4 parts of boron nitride, 3 parts of attapulgite, 14 parts of ordinary bauxite, 3 parts of kaolin, 4 parts of asbestos fiber, 3 parts of aluminum silicate fiber, 6 parts of corn starch, and 4 parts of borax; wherein, the magnesium The CaO content in calcium sand is 18-24%, and it is composed of three particle size ratios, of which 3-1mm accounts for 20%, 1mm-0.074mm accounts for 45%, and particle size ≥ 2mm accounts for 40%; particle size ≤ 2mm accounts for 60%; the particle size of sintered converter waste slag is -80 mesh; the preparation method includes the following: step:
[0021] 1) Treatment of waste magnesia-alumina-spinel refractory bricks: sort waste ...
Embodiment 2
[0027] A method for preparing a permanent lining ramming material for a ladle. The raw material of the ramming material consists of the following components in parts by weight: 47 parts of magnesia calcium sand, 6 parts of waste aluminum magnesia spinel refractory bricks, and 12 parts of sintered converter waste slag , 2 parts of boron nitride, 5 parts of attapulgite, 12 parts of ordinary bauxite, 5 parts of kaolin, 2 parts of asbestos fiber, 5 parts of aluminum silicate fiber, 4 parts of corn starch, and 6 parts of borax; wherein, the magnesium The CaO content in calcium sand is 18-24%, and it is composed of three particle size ratios, of which 3-1mm accounts for 20%, 1mm-0.074mm accounts for 45%, and particle size ≥ 2mm accounts for 40%; particle size ≤ 2mm accounts for 60%; the particle size of sintered converter waste slag is -80 mesh; the preparation method includes the following: step:
[0028] 1) Treatment of waste magnesia-alumina-spinel refractory bricks: sort waste ...
Embodiment 3
[0034] A method for preparing a permanent lining ramming material for a ladle. The raw material of the ramming material consists of the following components in parts by weight: 46 parts of magnesia calcium sand, 7 parts of waste aluminum magnesia spinel refractory bricks, and 11 parts of sintered converter waste slag , 3 parts of boron nitride, 4 parts of attapulgite, 13 parts of ordinary bauxite, 4 parts of kaolin, 3 parts of asbestos fiber, 4 parts of aluminum silicate fiber, 5 parts of corn starch, and 5 parts of borax; wherein, the magnesium The CaO content in calcium sand is 18-24%, and it is composed of three particle size ratios, of which 3-1mm accounts for 20%, 1mm-0.074mm accounts for 45%, and particle size ≥ 2mm accounts for 40%; particle size ≤ 2mm accounts for 60%; the particle size of sintered converter waste slag is -80 mesh; the preparation method includes the following: step:
[0035] 1) Treatment of waste magnesia-alumina-spinel refractory bricks: sort waste ...
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