High heat conductivity carbon brick for blast furnace and its producing method
A high thermal conductivity, blast furnace technology, applied in blast furnaces, blast furnace details, blast furnace parts, etc., can solve problems such as insufficient thermal conductivity, and achieve the effects of avoiding roasting waste, enhancing the cooling effect of the furnace bottom, and reducing costs
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Embodiment 1
[0029] The raw material ratio (percentage by weight) of high thermal conductivity carbon bricks for blast furnaces is as follows:
[0030] 40% of the graphite powder produced by the graphitization process; 37% of the roasted powder produced by the roasting process; 3% of SiC; 20% of coal tar pitch.
[0031] Dry material particle size composition (weight percent) is as follows:
[0032] 16~4mm is 20%; 4~1mm is 30%; 1~0.15mm is 5%; ≤0.15mm is 45%.
Embodiment 2
[0034] The raw material ratio (percentage by weight) of high thermal conductivity carbon bricks for blast furnaces is as follows:
[0035] 50% of the graphite powder produced by the graphitization process; 25% of the roasted powder produced by the roasting process; 1% of SiC; 24% of coal tar pitch.
[0036] Dry material particle size composition (weight percent) is as follows:
[0037] 16~4mm is 30%; 4~1mm is 20%; 1~0.15mm is 10%; ≤0.15mm is 40%.
Embodiment 3
[0039] The raw material ratio (percentage by weight) of high thermal conductivity carbon bricks for blast furnaces is as follows:
[0040] The graphite powder produced by the graphitization process is 45%; the roasted powder produced by the roasting process is 30%; SiC is 2%; coal tar pitch is 23%.
[0041] Dry material particle size composition (weight percent) is as follows:
[0042] 25% for 16-4mm; 25% for 4-1mm; 7% for 1-0.15mm; 43% for ≤0.15mm.
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