Claims
- 1. A method of coating a conductor with an insulating composition comprising:
preparing a sol-gel coating solution from one of Zr, Mg, Y, Ce, In and Sn based precursor materials, a solvent and a catalyst; dipping a conductor into the solution to coat the conductor with the solution; drying the dip coated conductor at a temperature and for a time sufficient to evaporate the solvent; and heating the coated conductor in an oxygen containing environment at a temperature and for a time sufficient to result in a ceramic insulation coating
- 2. A method as in claim 1 wherein drying is conducted at a temperature of about 300° C.
- 3. A method as in claim 1 wherein said heating is conducted at a temperature of about 500° C. to about 650° C. to result in an insulating coating comprising one of ZrO2, MgO—ZrO2, Y2 O3 —ZrO2, Ce O2—ZrO2, In2O3—ZrO2 and SnO2—ZrO2.
- 4. A method as in claim 1 wherein said conductor is one of Ag sheathed Bi-2212 tape, AgMg sheathed Bi-2212 tape, Cu sheathed Nb3Sn wire and Cu—Sn sheathed Nb3Sn wire.
- 5. A method as in claim 1 wherein: said solvent is isopropanol and said catalyst is acetyl acetone, and further comprising stirring said solution to result in a clear and stable solution at room temperature.
- 6. A method as in claim 1 wherein: said conductor is a high temperature superconductor; said coating is conducted with a mixed solution of zirconiumtetrabutoxide, isopropanol and acetyl acetone; and said heating is conducted at a temperature of about 500° C. to result in an insulative coating of ZrO2.
- 7. A method as in claim 1 wherein: said conductor is a high temperature superconductor; said coating is conducted with a mixed solution of zirconiumtetrabutoxide, isopropanol, acetyl acetone and magnesium 2,4-pentadionate; and said heating is conducted at a temperature of about 650° C. to result in an insulative coating of MgO—ZrO2
- 8. A method as in claim 1 wherein: said conductor is a high temperature superconductor; said coating is conducted with a mixed solution of zirconiumtetrabutoxide, isopropanol, acetyl acetone, and yttrium nitrate or yttrium isoproxide; and said heating is conducted at a temperature of about 650° C. to result in an insulative coating of Y2O3—ZrO2.
- 9. A method as in claim 1 wherein: said conductor is a high temperature superconductor; said coating is conducted with a mixed solution of zirconiumtetrabutoxide, isopropanol, acetyl acetone and cerium (III) 2,4 pentadionate; and said heating is conducted at a temperature of about 600° C. to result in an insulative coating of CeO2—ZrO2.
- 10. A method as in claim 1 wherein: said conductor is a low temperature superconductor; said coating is conducted with a mixed solution of zirconiumtetrabutoxide, isopropanol, acetyl acetone, and indium oxide or indium isoproxide; and said heating is conducted at a temperature of about 500° C. to result in an insulative coating in In2O3—ZrO2.
- 11. A method as in claim 1 wherein: said conductor is a low temperature superconductor; said coating is conducted with a mixed solution of zirconiumtetrabutoxide, isopropanol, acetyl acetone and tin oxide; and said heating is conducted at a temperature of about 500° C. to result in an insulative coating of SnO2—ZrO2.
- 12. A conductor having a ceramic insulative coating, comprising: said insulative coating having been applied by dipping the conductor in a sol-gel coating solution made up from one of Zr, Mg, Y, Ce, In and Sn based precursor materials, a solvent and a catalyst; drying the dip coated conductor at a temperature and for a time sufficient to evaporate the solvent and catalyst; and heating the conductor in an oxygen containing environment at a temperature and for a time sufficient to result in the ceramic insulative coating.
- 13. A conductor as in claim 12 wherein said conductor is made up of a matrix of one of Ag/Bi-2212 and AgMg/Bi-2212, and said insulative coating is ZrO2.
- 14. A conductor as in claim 12 wherein said conductor is made up of a matrix of one of Ag/Bi-2212 and AgMg/Bi-2212, and said insulative coating is MgO—ZrO2.
- 15. A conductor as in claim 12 wherein said conductor is made up of a matrix of one of Ag/Bi-2212 and AgMg/Bi-2212, and said insulative coating is Y2O3—ZrO2.
- 16. A conductor as in claim 12 wherein said conductor is made up of a matrix of one of Ag/Bi-2212 and AgMg/Bi-2212, and said insulative coating is CeO2—ZrO2.
- 17. A conductor as in claim 12 wherein said conductor is made up of a matrix of one of Cu/Nb3Sn and Cu—Sn/Nb3Sn, and said insulative coating is In2O3—ZrO2.
- 18. A conductor as in claim 12 wherein said conductor is made up of a matrix of one of Cu/Nb3Sn and Cu—Sn/Nb3Sn, and said insulative coating is SnO2—ZrO2.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation in part of co-pending application Ser. No. 08/324,540 which was filed Apr. 14, 1997.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09124148 |
Jul 1998 |
US |
Child |
09973374 |
Oct 2001 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08839429 |
Apr 1997 |
US |
Child |
09124148 |
Jul 1998 |
US |