A kind of carbon composite refractory material and preparation method thereof
A refractory material and carbon composite technology, applied in the field of refractory materials, can solve the problems of poor thermal shock stability and slag erosion resistance, easy damage, and excessive temperature drop of molten steel, etc., and achieve thermal shock stability and slag erosion resistance Excellent, the effect of inhibiting crack growth and reducing heat energy loss
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Embodiment 1
[0031] A carbon composite refractory material and a preparation method thereof, the raw materials and contents of the carbon composite refractory material are:
[0032] Fused magnesia particles 65-72wt%;
[0033] Fused magnesia fine powder 10-14wt%;
[0034] Lightly burned magnesia powder 6-9wt%;
[0035] Graphite 2~3wt%;
[0036] Commercially available graphene 1-2wt%;
[0037] Al powder 2~5wt%;
[0038] Si powder 1~3wt%;
[0039] Phenolic resin 3~4wt%.
[0040] The preparation process of this embodiment 1 is: according to the corresponding content of each of the above-mentioned raw materials, first commercially available graphene, light burnt magnesia micropowder, Al powder and Si powder are co-milled to obtain prefabricated mixed powder; then prefabricated mixed powder, Fused magnesia particles, fine powder of fused magnesia, graphite and phenolic resin are mixed evenly and formed; then heat treated at 180-210°C and lightly fired at 700-800°C to obtain a carbon compos...
Embodiment 2
[0043] A carbon composite refractory material and a preparation method thereof, the raw materials and contents of the carbon composite refractory material are:
[0044] Fused magnesia particles 62-70wt%;
[0045] Fused magnesia fine powder 12-16wt%;
[0046] Lightly burned magnesia powder 5-8wt%;
[0047] Graphite 1~3wt%;
[0048] Carbon black 1~2wt%;
[0049] Commercially available graphene 0.1~1wt%;
[0050] Al powder 2~4wt%;
[0051] Al-Mg alloy powder 0.5~1wt%;
[0052] Silicone resin 4~5wt%.
[0053]The preparation process of this embodiment 2 is: according to the corresponding content of each of the above-mentioned raw materials, first commercially available graphene, light calcined magnesia micropowder, Al powder and Al-Mg alloy powder are co-milled to obtain prefabricated mixed powder; then prefabricated The mixed powder, fused magnesia particles, fused magnesia fine powder, graphite, carbon black and silicone resin are mixed evenly and formed; then heat treated...
Embodiment 3
[0056] A carbon composite refractory material and a preparation method thereof, the raw materials and contents of the carbon composite refractory material are:
[0057] Fused magnesia particles 60-68wt%;
[0058] Fused magnesia fine powder 14-18wt%;
[0059] Lightly burned magnesia powder 6-10wt%;
[0060] Graphite 1~3wt%;
[0061] Carbon black 0.5~1wt%;
[0062] Asphalt powder 0.5~1wt%;
[0063] Al powder 2~4wt%;
[0064] Si powder 1~2wt%;
[0065] Al-Mg alloy powder 0.5~1wt%;
[0066] B 4 C powder 0.5~1wt%;
[0067] Phenolic resin 4~5wt%;
[0068] 0.1-1wt% of graphene that forms an anti-oxidation coating on the surface of commercially available graphene by chemical vapor deposition;
[0069] The preparation process of this embodiment 3 is: according to the corresponding content of each of the above-mentioned raw materials, the graphene, lightly burned magnesia micropowder, Al powder, and Si powder that are formed on the surface of commercially available graphene by...
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