High-performance magnesium-aluminum-chromium composite spinel brick and manufacturing method thereof
A spinel brick and a manufacturing method technology, applied in the field of refractory materials, can solve the problems of reduced density of magnesia-chrome bricks, damage of magnesia-chrome bricks, influence on slag resistance permeability and erosion performance, etc., and achieve low porosity and reduce pollution. , the effect of enhancing the direct binding ability
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Embodiment 1
[0034] A high-performance magnesium-aluminum-chromium composite spinel brick is made of the following raw materials in proportion by weight:
[0035] 8 parts of 5mm~3mm fused magnesia;
[0036] 27 parts of 3mm~1mm fused magnesia;
[0037] ≤ 1mm fused magnesia 24 parts;
[0038] ≤0.074mm fused magnesia 23 parts;
[0039]7 parts of 3mm~1mm low-chromium fused magnesia-chrome sand;
[0040] ≤ 1mm 4 parts of low-chromium fused magnesia-chrome sand;
[0041] 3 parts of ≤0.074mm low-chromium fused magnesia-chrome sand;
[0042] 10nm~50nm Nano Cr 2 o 3 2 parts powder;
[0043] 2 o 3 Micropowder 2 parts;
[0044] 2 ~ 4 parts of binder;
[0045] The binder is sulfurous acid pulp waste liquid.
[0046] A method for manufacturing high-performance magnesia-aluminum-chromium composite spinel bricks, comprising the steps of:
[0047] 1) Preparation of low-chromium fused magnesia-chrome sand: 15.4 parts of chromium ore powder and 84.6 parts o...
Embodiment 2
[0057] A high-performance magnesium-aluminum-chromium composite spinel brick is made of the following raw materials in proportion by weight:
[0058] 8 parts of 5mm~3mm fused magnesia;
[0059] 26 parts of 3mm~1mm fused magnesia;
[0060] 23 parts of 1mm~0mm fused magnesia;
[0061] ≤0.074mm fused magnesia 19.8 parts;
[0062] 8 parts of 3mm~1mm low chromium fused magnesia chrome sand;
[0063] 5 parts of 1mm~0mm low chromium fused magnesia chrome sand;
[0064] 4 parts of ≤0.074mm low-chromium fused magnesia-chrome sand;
[0065] 10nm~50nm Nano Cr 2 o 3 3.2 parts of powder;
[0066] 2 o 3 3 parts of micronized powder;
[0067] 2 ~ 4 parts of binder;
[0068] The binder is sulfurous acid pulp waste liquid.
[0069] A method for manufacturing high-performance magnesia-aluminum-chromium composite spinel bricks, comprising the steps of:
[0070] 1) Preparation of low-chromium fused magnesia-chrome sand: 15.4 parts of chromium ore powder and 84.6 parts of lightly ...
Embodiment 3
[0080] A high-performance magnesium-aluminum-chromium composite spinel brick is made of the following raw materials in proportion by weight:
[0081] 8 parts of 5mm~3mm fused magnesia;
[0082] 25 parts of 3mm~1mm fused magnesia;
[0083] ≤ 1mm fused magnesia 22 parts;
[0084] ≤0.074mm fused magnesia 16.6 parts;
[0085] 9 parts of 3mm~1mm low chromium fused magnesia chrome sand;
[0086] 6 parts of ≤ 1mm low-chromium fused magnesia-chrome sand;
[0087] ≤0.074mm low chromium fused magnesia chrome sand 5 parts;
[0088] 10nm~50nm Nano Cr 2 o 3 4.4 parts of powder;
[0089] 2 o 3 4 parts of fine powder;
[0090] 2 ~ 4 parts of binder;
[0091] The binder is sulfurous acid pulp waste liquid.
[0092] A method for manufacturing high-performance magnesia-aluminum-chromium composite spinel bricks, comprising the steps of:
[0093] 1) Preparation of low-chromium fused magnesia-chrome sand: 15.4 parts of chromium ore powder and 84.6 parts of lightly burned magnesium...
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