Tapecast electro-conductive cermets for high temperature resistive heating systems
This invention relates to novel chemical compositions and manufacturing methods for producing electro-conductive, metal-ceramic materials having improved structural stability to operate at high temperatures in oxidizing atmospheres.
1. A composition for a metal-ceramic, the composition comprising:
an aluminum based composition;
a boron oxide-silicon dioxide composition pre-treated with a polyvinyl alcohol solution;
a filler material being selected from the group consisting of carbide, boride, and silicide; and
a thermally fugitive material.
2. The composition of claim 1 , wherein the aluminum base composition includes Aluminum metal.
3. The composition of claim 1 , wherein the Al is powder having a size of approximately −100 mesh or less.
4. The composition of claim 1 , wherein the filler materials are metal-based filler materials and include Ni.
5. The composition of claim 4 , wherein the filler materials further include a material selected from the group consisting of: borides of Ni and Fe; silicides of Mo and Ti, and carbides of Ti and Si.
6. The composition of claim 1 , wherein filler materials are nonmetal-based, the nonmetal-based filler materials selected from the group consisting of B and Si.
7. The composition of claim 6 , wherein the nonmetal-based filler materials further includes silicides of B, carbides of B, or combinations thereof.
8. The composition of claim 1 , wherein the filler materials are ternary compositions, the ternary composition including carbides of Ti and Si compounds, carbides of Ti and Al compounds, and carbides of Ti and Ge compounds.
9. The composition of claim 1 , wherein the thermal fugitive material is selected from the group consisting of plasticizers, binders, deflocculants, defoamers, surfactants, and solvents.
10. The composition of claim 1 , wherein boron oxide-silicon dioxide composition is a composition including B 2 O 3 being present at a weight percentage of 13%.
11. The composition of claim 1 , wherein the composition for the metal-ceramic includes a stochiometric ratio of Aluminum to B 2 O 3 that varies from about 2:1 to about 4:1, and a stochiometric ratio of B 2 O 3 to filler materials that varies from about 0.4:1 to about 9:1.