Claims
- 1) A method of manufacturing metal-to-ceramic seals comprising the steps of:
a) providing an alumina forming metal part, b) providing a ceramic part, c) providing a braze material in between said alumina forming metal part and said ceramic part, and d) heating said alumina forming metal part, braze material, and ceramic part in an oxidizing atmosphere.
- 2) The method of claim 1 wherein said alumina forming metal part is selected from the group consisting of high temperature stainless steels and high temperature superalloys.
- 3) The method of claim 2 wherein said high temperature stainless steels are selected from the group consisting of Durafoil (alpha-4), Fecralloy, Alumina-coated 430 stainless steel and Crofer-22APU.
- 4) The method of claim 2 wherein said high temperature superalloys are selected from the group consisting of Haynes 214, Nicrofer 6025, and Ducraloy.
- 5) The method of claim 1 wherein said braze material is selected as a metal oxide-noble metal mixture.
- 6) The method of claim 5 wherein said braze material is selected from the group consisting of Ag—CuO, Ag—V2O5, and Pt—Nb2O5.
- 7) The method of claim 6 wherein said braze material further contains braze temperature raising agents selected from the group consisting of Pd, Pt, and combinations thereof.
- 8) The method of claim 7 wherein said braze temperature raising agents are selected as between 10-70 mol % of said braze material.
- 9) The method of claim 6 wherein said braze material further contains braze temperature lowering agents selected from the group consisting of V2O5, MoO3, and combinations thereof.
- 10) The method of claim 7 wherein said braze temperature lowering agents are selected as between 1-6 mol % of said braze material.
- 11) The method of claim 6 wherein said braze material is between 30.65 to 100 mole % Ag in CuO.
- 12) The method of claim 1 wherein the step of heating said alumina forming metal part, braze material, and ceramic part in an oxidizing atmosphere is performed in air at a temperature of between 500° C. and 1300° C.
- 13) The metal-to-ceramic seal formed by the process of claim 1.
- 14) A method of manufacturing metal-to-ceramic seals comprising the steps of:
a) providing an alumina forming metal part, b) heating said alumina forming metal part at a temperature and for a time sufficient to form an aluminized surface of the alumina forming metal part, c) providing a ceramic part, d) providing a braze material in between said alumina forming metal part and said ceramic part, and e) heating said alumina forming metal part, braze material, and ceramic part in an oxidizing atmosphere.
- 15) The method of claim 14 wherein said alumina forming metal part is selected from the group consisting of high temperature stainless steels and high temperature superalloys.
- 16) The method of claim 15 wherein said high temperature stainless steels are selected from the group consisting of Durafoil (alpha-4), Fecralloy, Alumina-coated 430 stainless steel and Crofer-22APU.
- 17) The method of claim 15 wherein said high temperature superalloys are selected from the group consisting of Haynes 214, Nicrofer 6025, and Ducraloy.
- 18) The method of claim 14 wherein said braze material is selected as a metal oxide-noble metal mixture.
- 19) The method of claim 18 wherein said braze material is selected from the group consisting of Ag—CuO, Ag—V2O5, and Pt—Nb2O5.
- 20) The method of claim 19 wherein said braze material is between 30.65 to 100 mole % Ag in CuO.
- 21) The method of claim 14 wherein said braze material further contains braze temperature raising agents selected from the group consisting of Pd, Pt, and combinations thereof.
- 22) The method of claim 21 wherein said braze temperature raising agents are selected as between 10-70 mol % of said braze material.
- 23) The method of claim 14 wherein said braze material further contains braze temperature lowering agents selected from the group consisting of V2O5, MoO3, and combinations thereof.
- 24) The method of claim 23 wherein said braze temperature lowering agents are selected as between 1-6 mol % of said braze material.
- 25) The method of claim 14 wherein said braze material is between 30.65 to 100 mole % Ag in CuO.
- 26) The method of claim 14 wherein the step of heating said alumina forming metal part, braze material, and ceramic part in an oxidizing atmosphere is performed in air at a temperature of between 500° C. and 1 300° C.
- 27) The metal-to-ceramic seal formed by the process of claim 14.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] Priority is claimed to provisional U.S. patent application Ser. No. 60/348,688, entitled “Oxidation Ceramic-to-Metal Braze”, filed Jan. 11, 2002 by Weil et al., the entire contents of which are hereby incorporated by this reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60348688 |
Jan 2002 |
US |