Claims
- 1. An immersion nozzle comprising at least one surface for contacting molten metal, wherein at least a portion of said surface comprises a refractory material, wherein said refractory material comprises an organic binder, 80 to 90 weight % of one or more of magnesia, alumina, spinel, mullite and silica, and also 0.3 to 15 weight % boron nitride, and wherein said refractory material does not contain graphite.
- 2. An immersion nozzle according to claim 1, comprising a layer of said refractory material having a thickness of 2 to 15 mm.
- 3. An immersion nozzle according to claim 1, wherein said refractory material consists essentially of 10 weight % organic binder, 4 weight % magnesia, 84 weight % alumina, 1 weight % silica and 1 weight % boron nitride.
- 4. An immersion nozzle according to claim 1, wherein said refractory material consists essentially of 10 weight % organic binder, 85 weight % spinel and 5 weight % boron nitride.
- 5. An immersion nozzle according to claim 1, wherein said refractory material consists essentially of 10 weight % organic binder, 39 weight % magnesia, 40 weight % spinel, 1 weight % of silica and 10 weight % boron nitride.
- 6. An immersion nozzle according to claim 1, wherein said refractory material consists essentially of 10 weight % organic binder, 4 weight % magnesia, 75 weight % of alumina, 1 weight % of silica and 10 weight % boron nitride.
- 7. An immersion nozzle comprising at least one surface for contacting molten metal wherein at least a portion of said surface consists essentially of a refractory material and wherein said refractory material consists essentially of an organic binder, 80 to 90 weight % of one or more of magnesia, alumina, spinel, mullite and silica, and also 0.3 to 15 weight % of boron nitride.
- 8. An immersion nozzle according to claim 7, comprising a layer of said refractory material having thickness of 2 to 15 mm.
- 9. An immersion nozzle according to claim 7, wherein said refractory material consists essentially of 10 weight % organic binder, 4 weight % magnesia, 84 weight % alumina, 1 weight % silica and 1 weight % boron nitride.
- 10. An immersion nozzle according to claim 7, wherein said refractory material consists essentially of 10 weight % organic binder, 85 weight % spinel and 5 weight % boron nitride.
- 11. An immersion nozzle according to claim 7, wherein said refractory material consists essentially of 10 weight % organic binder, 39 weight % magnesia, 40 weight % spinel, 1 weight % of silica and 10 weight % boron nitride.
- 12. An immersion nozzle according to claim 7, wherein said refractory material consists essentially of 10 weight % organic binder, 4 weight % magnesia, 75 weight % of alumina, 1 weight % of silica and 10 weight % boron nitride.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-116125 |
Apr 2000 |
JP |
|
Parent Case Info
[0001] This application is a continuation-in-part of parent U.S. application Ser. No. 09/819,890 filed Mar. 29, 2001, pending, which claims priority to Japanese Application 2000-116125 filed Apr. 18, 2000. The contents of both U.S. application Ser. No. 09/819,890 and Japanese Application 2000-116125 are hereby incorporated by reference in their entirety.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09819890 |
Mar 2001 |
US |
Child |
10142943 |
May 2002 |
US |