Claims
- 1. A metallic alloy element having an adherent mixed oxide layer on the surface thereof, said mixed oxide layer formed by depositing a sol on said element, drying said sol to form a green coating, and heating said coating to cure said coating, wherein the improvement comprises preparing a sol consisting essentially of alumina, silica, and carrier, by:
- a. Preparing an alumina sol by combining, in the absence of air, from about 50 to about 400 moles of water, from about 1.0 to about 2.0 moles of aluminum organo-metallic compound, from about 0.1 to about 0.5 moles of peptizer, and a vaporizable carrier, at a temperature of from about 175.degree. to about 210.degree. F., for sufficient time to form a clear sol;
- b. Preparing a silica sol by combining from about 0.5 to about 2.0 moles of water, from about 3 to about 10 moles of alcohol, and from about 0.1 to about 0.5 moles of a silicon organo-metallic compound, for sufficient time to form a clear sol;
- c. Combining the alumina sol and the silica sol to obtain an alumina-silica sol having a ratio of alumina to silica of from about 10:1 to about 1:10; and
- d. Depositing sufficient alumina-silica sol on said substrate so as to achieve a thickness of from about 0.00005 inches to about 0.001 inches after curing.
- 2. The element of claim 1, comprising a material selected from the group consisting of titanium, titanium alloys, aluminum, stainless steel, and nickel base superalloys.
- 3. The element of claim 2, wherein the ratio of alumina to silica is about 3:2.
- 4. The element of claim 3, wherein said layer is from about 0.0001 inches to about 0.0002 inches in thickness.
- 5. The element of claim 3, wherein the element is heated after deposition of the sol thereupon to a temperature of from about 250.degree. F. to about 350.degree. F. to evaporate volatile liquids, and to set the sol to a green coating.
- 6. The element of claim 5, wherein the element having said green coating is further heated to a temperature of from about 1200.degree. F. to about 1500.degree. F. to completely cure said coating.
- 7. A metallic alloy element having an adherent mixed oxide layer on the surface thereof, said mixed oxide layer formed by depositing a sol on said element, drying said sol to form a green coating, and heating said coating to cure said coating, wherein the improvement comprises preparing a sol consisting essentially of alumina, silica, and carrier, by:
- a. Preparing an alumina sol by combining, in the absence of air, from about 100 to about 200 moles of water, from about 1.2 to about 1.6 moles of aluminum organo-metallic compound, from about 0.2 to about 0.3 moles of peptizer, and a vaporizable carrier, at a temperature of from about 190.degree. to about 210.degree. F., for sufficient time to form a clear sol;
- b. Preparing a silica sol by combining from about 0.8 to about 1.2 moles of water, from about 4.8 to about 5.5 moles of alcohol, and from about 0.2 to about 0.3 moles of a silicon organo-metallic compound, for sufficient time to form a clear sol;
- c. Combining the alumina sol and the silica sol to obtain an alumina-silica sol having a ratio of alumina to silica of from about 2:1 to about 1:2; and
- d. Depositing sufficient alumina-silica sol on said substrate so as to achieve a thickness of from about 0.00005 inches to about 0.001 inches after curing.
- 8. The element of claim 7, wherein said element comprises a material selected from the group consisting of titanium, titanium alloys, aluminum, stainless steel, and nickel base superalloys.
- 9. The element of claim 8, wherein the ratio of alumina to silica is about 3:2.
- 10. The element of claim 9, wherein said layer is from about 0.0001 inches to about 0.0002 inches in thickness.
- 11. The element of claim 10, wherein said layer of alumina is from about 0.00012 inches to about 0.00016 inches in thickness.
- 12. The element of claim 10, wherein the element is heated after deposition of the sol thereupon to a temperature of from about 275 .degree. F. to about 300.degree. F. to evaporate volatile liquids, and to set the sol to a green coating.
- 13. The element of claim 12, wherein the element having said green coating is further heated to a temperature of from about 1200.degree. F. to about 1500.degree. F. to completely cure said coating.
- 14. A metallic alloy element having an adherent mixed oxide layer on the surface thereof, said mixed oxide layer formed by depositing a sol on said element, drying said sol to form a green coating, and heating said coating to cure said coating, wherein the improvement comprises preparing a sol consisting essentially of alumina, silica, and carrier, by:
- a. Preparing an alumina sol by combining, in the absence of air, about 139 moles of water, about 1.4 moles of aluminum organo-metallic compound, about 0.22 moles of peptizer, and a vaporizable carrier, at a temperature of about 208.degree. F., for sufficient time to form a clear sol;
- b. Preparing a silica sol by combining about 1.0 moles of water, about 5.27 moles of alcohol, and about 0.25 moles of a silicon organo-metallic compound, for sufficient time to form a clear sol;
- c. Combining the alumina sol and the silica sol to obtain an alumina-silica sol having a ratio of alumina to silica of from about 1.5:1 to about 1:1.5; and
- d. Depositing sufficient alumina-silica sol on said substrate so as to achieve a thickness of from about 0.00005 inches to about 0.001 inches after curing.
- 15. The element of claim 14, wherein said element comprises a material selected from the group consisting of titanium, titanium alloys, aluminum, stainless steel, and nickel base superalloys.
- 16. The element of claim 15, wherein the ratio of alumina to silica is about 3:2.
- 17. The element of claim 16, wherein said layer is from about 0.0001 inches to about 0.0002 inches in thickness.
- 18. The element of claim 17, wherein said layer is from about 0.00012 inches to about 0.00016 inches in thickness.
- 19. The element of claim 17, wherein the element is heated after deposition of the sol thereupon to a temperature of from about 275.degree. F. to about 300.degree. F. to evaporate volatile liquids, and to set the sol to a green coating.
- 20. The element of claim 19, wherein the element having said green coating is further heated to a temperature of from about 1200.degree. F. to about 1500.degree. F. to completely cure said coating.
Government Interests
The invention was made under a U.S. Government contract and the Government has rights herein.
US Referenced Citations (38)