Erosion-resistant ceramic material, powder, slip and component
The use of magnesium oxide, reactive alumina and aluminium oxide as a base provides for a new erosion-resistant material upon sintering.
1. A powder comprising (in % by weight):
from 96.0% to 99.9% of aluminum oxide; and
reactive magnesium oxide in an amount of from 0.1% to 4.0%, to form spinel with the aluminum oxide present, the reactive magnesium functioning as a temporary binder phase;
wherein aluminum oxide is present as tabular alumina.
2. The powder as claimed in claim 1 , wherein the reactive magnesium oxide has a citric acid activity of from 10 seconds to 250 seconds.
3. The powder as claimed in claim 1 , wherein the tabular alumina has at least three different particle size fractions.
4. The powder as claimed in claim 1 , wherein the tabular alumina has a maximum particle size of up to 10 mm.
5. The powder as claimed in claim 1 , wherein no silicon oxide is present in the powder.
6. The powder as claimed in claim 1 , wherein no silicon compounds are present in the powder.
7. A powder comprising (in % by weight):
from 96.0% to 99.9% of aluminum oxide; and
reactive magnesium oxide in an amount of from 0.1% to 4.0%, to form spinel with the aluminum oxide present, the reactive magnesium functioning as a temporary binder phase;
wherein aluminum oxide is present as reactive alumina to reduce a water content, and the reactive alumina is used in a proportion from 10% by weight to 25% by weight in a total mix.
8. The powder as claimed in claim 7 , wherein the reactive alumina has at least two different particle size fractions.
9. The powder as claimed in claim 7 , wherein no silicon oxide is present in the powder.
10. The powder as claimed in claim 7 , wherein no silicon compounds are present in the powder.