Single additive refractory materials suitable for multiple application methods
Processes of forming or repairing a structure for use in high temperature applications may include intermixing a sodium nitrite (NaNO 2 ) additive with a refractory material; and applying the refractory material to a structure surface.
1. A process of forming or repairing a structure for use in high temperature applications comprising:
intermixing a sodium nitrite (NaNO 2 ) additive with a refractory material to form a refractory mixture; and
applying the refractory mixture to a structure surface;
wherein the sodium nitrite additive is a sodium nitrite solution having 0.1 weight percent to 10.0 weight percent sodium nitrite based on the total weight of the solution;
wherein the refractory mixture further comprises a dispersant selected from the group consisting of: a phosphate; polycarboxylate; polyglycolether; polyacrylate; and combinations thereof.
2. The process of claim 1 , wherein the sodium nitrite solution is an aqueous solution.
3. The process of claim 1 , wherein the sodium nitrite additive is intermixed with the refractory material within five minutes prior to applying the refractory mixture to the structure surface.
4. The process of claim 1 , wherein the refractory material comprises a low cement refractory material having less than 2.5 weight percent calcium oxide.
5. The process of claim 1 , wherein applying the refractory mixture comprises casting, pumping, pneumatic dry gunning, ramming, or wet shot-crete methods.
6. The process of claim 1 , wherein the refractory material comprises alumina;
and the refractory material comprises 4.0 to 15.0 weight percent microsilica based on a total weight of the refractory material.
7. The process of claim 1 , wherein the process further comprises adding the dispersant to the refractory material prior adding the sodium nitrite additive, wherein the amount of dispersant is from 0.08 weight percent to 1.0 weight percent based on the total weight of the refractory material.
8. A process of forming or repairing a structure for use in high temperature applications comprising:
intermixing a sodium nitrite solution with a refractory material to form a refractory mixture, the sodium nitrite solution comprising 0.01 weight percent to 10.0 weight percent sodium nitrite based on the weight of the solution, wherein the sodium nitrite solution is intermixed at a weight percent of 0.01 weight percent to 4.0 weight percent sodium nitrite based on the combined weight of dry refractory material and the sodium nitrite solution; and
applying the refractory mixture to a structure surface;
wherein the refractory mixture comprises a dispersant selected from the group consisting of: a phosphate; polycarboxylate; polyglycolether; polyacrylate; and combinations thereof.
9. The process of claim 8 , wherein the applying the refractory mixture comprises casting, pumping, pneumatic dry gunning, ramming, or wet shot-crete methods.
10. The process of claim 8 , wherein the refractory material comprises less than 2.5 weight percent calcium oxide;
and the refractory material comprises 4.0 to 15.0 weight percent microsilica based on a total weight of the refractory material.
11. The process of claim 8 , wherein the refractory material comprises alumina.
12. The process of claim 8 , wherein the dispersant is present in the refractory material prior to the addition of the sodium nitrite additive at an amount of 0.08 to 1.0 weight percent based on a total weight of the refractory material.
13. A process of forming or repairing a structure for use in high temperature applications comprising:
intermixing a sodium nitrite additive with a refractory material to form a refractory mixture, the sodium nitrite additive comprising a sodium nitrite powder and water, wherein the amount of sodium nitrite powder is from 1.0 weight percent to 8.0 weight percent the total weight of the sodium nitrite additive and from 0.10 weight percent to 10 percent based on the combined weight of the dry refractory material and the sodium nitrite additive; and
applying the refractory mixture to a structure surface by casting, pumping, pneumatic dry gunning, ramming, wet shot-crete methods, or combination thereof;
the refractory material comprising a dispersant selected from the group consisting of a phosphate, polycarboxylate, polyglycolether, polyacrylate, and combinations thereof;
the refractory material comprising between 50 weight percent and 85 weight percent alumina.
14. The process of claim 13 , wherein the dispersant is present in the refractory material in amount of from 0.08 weight percent to 1.0 weight percent based on a total weight of the refractory material.
15. The process of claim 13 , wherein the intermixing further comprises low water additions.
16. The process of claim 13 , wherein the refractory material comprises less than 2.5 weight percent calcium oxide;
and the refractory material comprises 4.0 to 15.0 weight percent microsilica based on a total weight of the refractory material.
17. The process of claim 13 , wherein the dispersant is present in the refractory material in amount of from 0.08 weight percent to 0.1 weight percent based on a total weight of the refractory material.
18. The process of claim 1 , wherein the sodium nitrite additive consists of sodium nitrite and water.
19. The process of claim 1 , wherein the refractory mixture exhibits a drying shrinkage of less than 0.1%.