Cement-free refractory
A cement free refractory mixture contains aluminum oxide, silicon carbide, fumed silica, aluminum metal, an anti-oxidant, reactive alumina, and a carbon-bearing material. The mixture can be formed by conventional techniques to create refractory articles to contain or direct the flow of liquid metals. Refractory articles formed by the mixture do not require firing to achieve an initial cure.
1. A refractory mixture for the production of a refractory article, comprising
a) a substance selected from brown fused alumina, bauxite, andalusite, tabular alumina, mullite and combinations of these materials;
b) silicon carbide;
c) fumed silica;
d) aluminum metal;
e) an anti-oxidant selected from boron carbide, silicon and combinations of these materials;
f) reactive alumina; and
g) a carbon-bearing material selected from carbon black, pitch, petroleum pitch/clay co-grind, graphite, and combinations of these materials.
2. The refractory mixture of claim 1 , comprising
a) at least 50 wt % and at most 80 wt % of a substance selected from brown fused alumina, bauxite, andalusite, tabular alumina, mullite and combinations of these materials;
b) at least 10 wt % and at most 25 wt % silicon carbide;
c) at least 2 wt % and at most 8 wt % fumed silica;
d) at least 0.1 wt % and at most 1.5 wt % aluminum metal;
e) at least 0.25 wt % and at most 1.5 wt % silicon;
f) at least 5 wt % and at most 15 wt % reactive alumina; and
g) at least 1 wt % and at most 6 wt % of a carbon-bearing material selected from carbon black, pitch, petroleum pitch/clay co-grind, graphite, and combinations of these materials.
3. The refractory mixture of claim 1 , wherein an amount of calcium-containing compounds is less than 3.3 wt %.
4. The refractory mixture of claim 1 , further comprising a material selected from the group consisting of zirconia and magnesia.
5. The refractory mixture of claim 1 , wherein the fumed silica has a particle size of no greater than 70 mesh.
6. The refractory mixture of claim 1 , further comprising a deflocculant.
7. The refractory mixture of claim 1 , wherein the combined amount of aluminum and silicon present is in the range from and including 0.1 wt % to and including 5 wt %.
8. The refractory mixture of claim 1 , wherein the combined amount of aluminum and silicon present is in the range from and including 0.3 wt % to and including 5 wt %.
9. The refractory mixture of claim 1 , wherein the amount of silicon carbide present is in the range from and including 15 wt % to and including 25 wt %.
10. The refractory mixture of claim 1 , wherein the amount of fume silica present is in the range from and including 4.5 wt % to and including 6 wt %.
11. The refractory mixture of claim 1 , wherein the amount of aluminum metal present is in the range from and including 0.5 wt % to and including 1 wt %.
12. The refractory mixture of claim 1 , wherein the amount of silicon metal present is in the range from and including 0.5 wt % to and including 1 wt %.
13. The refractory mixture of claim 1 , wherein the amount of reactive aluminas present is in the range from and including 5 wt % to and including 10 wt %.
14. The refractory mixture of claim 1 , wherein an amount of calcium-containing compounds is equal to or less than 0.2 wt %.
15. The refractory mixture of claim 1 , wherein a content of water-soluble calcium compounds and partially water-soluble calcium compounds is less than 0.1 wt %.
16. The refractory mixture of claim 1 , consisting essentially of:
a) a substance selected from brown fused alumina, bauxite, andalusite, tabular alumina, mullite and combinations of these materials;
b) silicon carbide;
c) fumed silica;
d) aluminum metal;
e) an anti-oxidant selected from boron carbide, silicon and combinations of these materials;
f) reactive alumina;
g) a carbon-bearing material selected from carbon black, pitch, petroleum pitch/clay co-grind, graphite, and combinations of these materials; and
h) additives.
17. A refractory article formed from the mixture of claim 1 , made from a process characterized by:
a) mixing solid components;
b) adding a sufficient amount of water to create a mixture with a desired flowability and a pH;
c) forming the mixture into an article;
d) allowing the article to set; and
e) drying the set article to remove excess water.
18. The refractory article of claim 17 , characterized by heating the article to use temperature after drying.
19. A method of manufacturing an article from the refractory mixture of claim 1 , characterized by:
a) mixing solid components;
b) adding a sufficient amount of water to create a mixture with desired flowability;
c) forming the mixture into an article;
d) allowing the article to set; and
e) drying the set article to remove excess water.