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Refractory coating
A composition for coating a refractory body is disclosed. The composition comprises a glass frit component; an oxidisable component; and a phosphate frit comprising phosphorous oxide. The composition is substantially aluminium metal free. The glass frit component may comprise a first borosilicate frit and a second cobalt-containing borosilicate frit. The composition may comprise a refractory component such as clay. The oxidisable component may comprise a metal or metalloid; the metal or metalloid may comprise silicon metal. The oxidisable component may comprise a carbide such as silicon carbide. The refractory body may be made from a carbon-based material, such as magnesia-carbon (MgO-C), alumina-carbon (Al2O3-C), zirconia-carbon (ZrO2-C), or graphite. The refractory body may be for a continuous metal casting system.
Refractory coating
A composition for coating a refractory body is disclosed. The composition comprises a glass frit component; an oxidisable component; and a phosphate frit comprising phosphorous oxide. The composition is substantially aluminium metal free. The glass frit component may comprise a first borosilicate frit and a second cobalt-containing borosilicate frit. The composition may comprise a refractory component such as clay. The oxidisable component may comprise a metal or metalloid; the metal or metalloid may comprise silicon metal. The oxidisable component may comprise a carbide such as silicon carbide. The refractory body may be made from a carbon-based material, such as magnesia-carbon (MgO-C), alumina-carbon (Al2O3-C), zirconia-carbon (ZrO2-C), or graphite. The refractory body may be for a continuous metal casting system.
Refractory coating
PHILIP FRAMPTON (author) / MICHAL MIEKINA (author)
2023-07-05
Patent
Electronic Resource
English