Refractory composition and process for forming article therefrom
Refractory compositions and methods of forming articles therefrom are provided that include a plurality of aggregate particles and a binder intermixed with the aggregate particles. The binder composition includes sintered crystalline chromium metaphosphate or chromium-aluminum metaphosphate, or combinations of the two distributed in the binder. The provided compositions are free of chromium oxide yet exhibit excellent slag resistance and are easily disposed of.
1. A refractory composition comprising:
a plurality of aggregate particles;
a binder intermixed with said plurality of aggregate particles, wherein sintered crystalline chromium metaphosphate, or sintered chromium-aluminum metaphosphate, or both, are distributed in said binder; and
a nonfacile additive of calcium aluminate cement, sodium silicate, polyphosphate, an organic salt, or combinations thereof.
2. The composition of claim 1 wherein said composition does not include chromium oxide.
3. The composition of claim 1 wherein sintered crystalline chromium metaphosphate is distributed in said binder.
4. The composition of claim 1 wherein sintered crystalline chromium-aluminum metaphosphate is distributed in said binder.
5. The composition of claim 1 wherein said chromium metaphosphate, or chromium-aluminum metaphosphate is in the form of neutral dry particles.
6. The composition of claim 1 wherein said aggregate comprises alumina.
7. The composition of claim 1 wherein said plurality of aggregate particles comprises at least one of silicon carbide, fumed silica, mullite, or any combination thereof.
8. The composition of claim 1 further comprising one or more strengthening fibers.
9. A process of forming a refractory article comprising:
forming a binder mixture of a chromium metaphosphate, chromium-aluminum metaphosphate, or both; and
mixing said binder with an aggregate to form a slurry;
wherein said refractory article is free of chromium oxide.
10. The process of claim 9 wherein said step of forming includes mixing chromium metaphosphate with alumina and heating to a temperature of 800° Celsius to 850° Celsius.
11. The process of claim 9 wherein said aggregate comprises alumina.
12. The process of claim 9 wherein said chromium metaphosphate is chromium-aluminum metaphosphate.
13. The process of claim 9 wherein said chromium metaphosphate is a crystalline neutral sintered material.
14. The process of claim 10 wherein said aggregate consists of alumina.
15. The process of claim 9 further comprising adding at least one additive of calcium aluminate cement, sodium silicate, or polyphosphate to said mixture.
16. The process of claim 9 further comprising heating the composition to induce sintering.
17. A refractory composition comprising:
a plurality of aggregate particles; and
a binder intermixed with said plurality of aggregate particles, wherein sintered crystalline chromium metaphosphate, or sintered chromium-aluminum metaphosphate, or both, is distributed in said binder;
said composition free of chromium oxide,
wherein said plurality of aggregate particles is selected from the group consisting of silicon carbide, fumed silica, alumina, mullite, bauxite, or combinations thereof;
the composition further comprising a nonfacile additive of calcium aluminate cement, sodium silicate, polyphosphate, an organic salt, or combinations thereof.
18. The refractory composition of claim 17 further comprising one or more strengthening fibers selected from the group consisting of stainless steel fibers, steel, other metal fibers, and carbon fibers.