Claims
- 1. A method for producing a superconductor wire comprising the steps of:
- making a coherent superconductor preform by forming a powdered superconductor precursor material into a preform and sintering the preform to convert the superconductor precursor material to a superconductor phase;
- heating a portion of said preform to approximately the melting temperature, T.sub.m, of said superconductor material;
- drawing said portion of said preform into a wire having a smaller cross sectional area than the remainder of said preform; and
- cooling said wire to a temperature, T.sub.f, that is much less than T.sub.m.
- 2. A method for producing superconductor wire as recited in claim 1 further comprising the step of annealing said wire at a temperature which is much less than T.sub.m.
- 3. A method for producing superconductor wire as recited in claim 1 further comprising a step of coating said wire.
- 4. A method for producing superconductor wire as recited in claim 3 wherein said coating is a material which is an insulator at ordinary room temperatures.
- 5. A method for producing superconductor wire as recited in claim 3 wherein said coating is a material which is a semiconductor at ordinary room temperatures.
- 6. A method for producing superconductor wire as recited in claim 3 wherein said coating is a material which is a conductor at ordinary room temperatures.
- 7. A method for producing superconductor wire as recited in claim 1, wherein said superconductor material has approximately the composition Y.sub.2a Ba.sub.b Cu.sub.c O.sub.3a+(3-d)b+c, where a, b, c and d are positive numbers and d=1 or 2.
- 8. A method for producing superconductor wire as recited in claim 7, further comprising the step of choosing said combinations of said numbers a,b,c from the group of combinations consisting of 24,42,34; 15,53,32 and 18.5,65,16.5.
- 9. A method for producing superconductor wire as recited in claim 1, further comprising the steps of:
- providing a plurality of apertures extending through said wire in a direction transverse to a longitudinal axis of said wire; and
- filling said apertures with a material.
- 10. A method for producing superconductor wire as recited in claim 1, further comprising the steps of:
- providing a plurality of apertures extending through said wire in a direction transverse to a longitudinal axis of said wire; and
- flowing a fluid having a temperature is less than T.sub.c, through said apertures.
- 11. A method for producing a superconductor capillary comprising the steps of:
- making a coherent tubular superconductor preform by forming a powdered superconductor precursor material into a preform and sintering the preform to convert the superconductor precursor material to a superconductor phase;
- heating a portion of said preform to approximately the melting temperature, T.sub.m, of said superconductor material;
- drawing said portion of said preform into a capillary having a smaller cross sectional area than the remainder of said preform; and
- cooling said wire to a temperature, T.sub.f, that is much less than T.sub.m.
- 12. A method for producing superconductor capillary as recited in claim 1 further comprising a step of annealing said capillary at a temperature that is much less than T.sub.m.
- 13. A method for producing superconductor capillary as recited in claim 11 further comprising a step of coating said capillary.
- 14. A method for producing superconductor capillary as recited in claim 13 wherein said coating is a material which is an insulator at ordinary room temperatures.
- 15. A method for producing superconductor capillary as recited in claim 13 wherein said coating is a material which is a semiconductor at ordinary room temperatures.
- 16. A method for producing superconductor capillary as recited in claim 13 wherein said coating is a material which is a conductor at ordinary room temperatures.
- 17. A method for producing superconductor wire as recited in claim 11 further comprising the step of filling a hollow interior portion of said capillary with a material.
- 18. A method for producing superconductor wire as recited in claim 17 wherein said capillary is filled with a gas.
- 19. A method for producing superconductor wire as recited in claim 17 wherein said capillary is filled with a liquid.
- 20. A method for producing superconductor wire as recited in claim 17 wherein said capillary is filled with a solid.
- 21. A method for producing superconductor wire as recited in claim 20 wherein said solid is a conductive material at ordinary room temperatures.
- 22. A method for producing superconductor capillary as recited in claim 11, wherein said superconducting material has approximately the composition Y.sub.2a Ba.sub.b Cu.sub.c O.sub.3a+(3-d)b+c, where a, b,c and d are positive numbers and d=1 or 2.
- 23. A method for producing superconductor capillary as recited in claim 22, further comprising the step of choosing said combinations of said integers a,b,c from the group of combinations consisting of 24,42,34: 15,53,32 and 37,130,33.
- 24. A method for producing superconductor capillary as recited in claim 11, further comprising the step of flowing a fluid having a temperature is less than T.sub.c, through said hollow interior of said capillary.
- 25. A method for producing superconductor wire comprising the steps of:
- making a coherent superconductor preform by forming a powdered superconductor precursor material into a preform and sintering the preform to convert the superconductor precursor material to a superconductor phase, said coherent preform having a first end and a second end;
- heating a selected portion of the preform near said first end to approximately the melting temperature, T.sub.m, of said superconductor material while the remainder of the preform between the selected portion and said second end is maintained at temperatures much less than T.sub.m ;
- allowing the position of the selected portion of the preform to move from the first preform end toward the second preform end;
- drawing the selected portion of the preform into a wire having a longitudinal axis and having a diameter that is smaller than the diameter of the remainder of the preform; and
- cooling the wire to a temperature, T.sub.f, that is much less than T.sub.m.
- 26. The method for producing superconductor wire as recited in claim 25, wherein said superconducting material has approximately the composition (A.sub.x E.sub.1-x).sub.a Cu.sub.b O.sub.y, where a,b,x and y are positive numbers with 0<x<1, the element A is either Y or La, and the element E is either Ba or Sr.
- 27. A method for producing superconductor wire as recited in claim 26, the method further comprising steps of choosing A=Y, E=Ba, x=0.4, a=2, b=1 and y.ltoreq.4.
- 28. A method for producing superconductor wire as recited in claim 26, the method further comprising steps of choosing A=Y, E=Ba, x=0.667, a=3, b=3 and y=6-8.
- 29. A method for producing superconductor capillary comprising the steps of:
- making a coherent superconductor preform by forming a powdered superconductor precursor material into a preform and sintering the preform to convert the superconductor precursor material to a superconductor phase, said material having a superconducting transition temperature, T.sub.c, and having approximately the composition (A.sub.x E.sub.1-x).sub.a Cu.sub.b O.sub.y, where a,b,x and y are positive numbers with 0<x<1, the element A is either Y or La, and the element E is either Ba or Sr, the preform having a first end a second end and having the form of a tube;
- heating a selected portion of the preform near the first end thereof to approximately the melting temperature, T.sub.m, of said superconductor material while the remainder of the preform between the selected portion and the second end is maintained at temperatures much less than T.sub.m ;
- allowing the position of the selected portion of the preform to move from the first preform end toward the second preform end;
- drawing the selected portion of the preform into a capillary having a hollow interior and having another diameter that is smaller than the diameter of the remainder of the preform; and
- cooling the wire to a temperature, T.sub.f, that is much less than T.sub.m.
- 30. A method for producing superconductor capillary as recited in claim 29, wherein said superconducting material has approximately the composition (A.sub.x E.sub.1-x).sub.a Cu.sub.b O.sub.y, where a,b,x and y are positive numbers with 0<x<1, the element A is either Y or La, and the element E is either Ba or Sr, the preform having a first end and a second end.
- 31. A method for producing superconductor capillary as recited in claim 30, the method further comprising steps of choosing A=Y, E=Ba, x=0.4, a=2, b=1, and y.ltoreq.4.
- 32. A method for producing superconductor capillary as recited in claim 30, the method further comprising steps of choosing A=Y, E=Ba, x=0.667, a=3, b=3 and y=6-8.
Parent Case Info
This is a divisional of copending application Ser. No. 07/034,867 filed on Apr. 6, 1987, now abandoned.
US Referenced Citations (10)
Divisions (1)
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Number |
Date |
Country |
Parent |
34867 |
Apr 1987 |
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