IP Library Granted Patent US 11,881,328
Granted Patent B2
US 11,881,328 · App. 17/719,317 · Granted Jan 23, 2024

Superconductor article with directional flux pinning

Inventors: Venkat Selvamanickam (Houston, TX); Yimin Chen (Bridgewater, NJ)
Assignees: University of Houston System; SuperPower, Inc.
H01B12/02H01B1/026H01B9/006H10N60/0828H10N60/203H10N60/857H10N60/0632
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Quick Facts
Patent No.
US 11,881,328
App. No.
17/719,317
Granted
Jan 23, 2024
Kind
B2
Abstract

A method and composition for doped HTS tapes having directional flux pinning and critical current.

Claims (25)

1. A superconducting tape comprising:

a plurality of nanocolumns oriented perpendicular to a surface of the superconducting tape,

the superconducting tape having a first critical current at 0 T at 77 K;

wherein the superconducting tape is configured to have a magnetic field applied thereto, wherein the magnetic field is applied parallel to the surface of the superconducting tape at about 0.1 T at 77 K; and

wherein the superconducting tape is configured to retain, upon application of the magnetic field, a second critical current that is at least about 90% of the first critical current.

2. The superconducting tape of claim 1 , wherein the superconducting tape comprises copper and a rare-earth metal content of at least two of Gd, Y, Sm, Nd, Eu, Dy, Ho, Er or Yb, and wherein the superconducting tape comprises a ratio of the total rare-earth metals content to copper content of at least 1.5:3.

3. The superconducting tape of claim 2 , wherein the rare-earth metals content comprises Y and one of Sm or Gd.

4. The superconducting tape of claim 3 , wherein the ratio Y to Sm or Gd comprises a ratio of about 1:1.

5. The superconducting tape of claim 4 , wherein the superconducting tape comprises copper and at least one dopant comprising Zr, Ta, Hf, Sn, Nb, Ti or Ce, and wherein the dopant content to copper content ratio comprises at least about 0.05 dopant to at least about 3 copper.

6. A superconducting tape comprising:

a plurality of nanocolumns oriented perpendicular to a surface of the superconducting tape, the superconducting tape having a first critical current at 0 T at 77 K;

wherein the superconducting tape is configured to have a magnetic field applied thereto, wherein the magnetic field is applied parallel to the surface of the superconducting tape at about 0.5 T at 77 K; and

wherein the superconducting tape is configured to retain, upon application of the magnetic field, a second critical current that is at least about 50% of the first critical current.

7. The superconducting tape of claim 6 , wherein the superconducting tape comprises copper and a rare-earth metal content of at least two of Gd, Y, Sm, Nd, Eu, Dy, Ho, Er or Yb, and wherein the superconducting tape comprises a ratio of the total rare-earth metals content to copper content of at least 1.5:3.

8. The superconducting tape of claim 7 , wherein the rare-earth metals content comprises Y and one of Sm or Gd.

9. The superconducting tape of claim 8 , wherein the ratio Y to Sm or Gd comprises a ratio of about 1:1.

10. The superconducting tape of claim 9 , wherein the superconducting tape comprises copper and at least one dopant comprising Zr, Ta, Hf, Sn, Nb, Ti or Ce, and wherein the dopant content to copper content ratio comprises at least about 0.05 dopant to at least about 3 copper.

11. A superconducting tape comprising:

a plurality of nanocolumns oriented perpendicular to a surface of the superconducting tape, the superconducting tape having a first critical current at 0 T at 77 K;

wherein the superconducting tape is configured to have a magnetic field applied thereto, wherein the magnetic field is applied parallel to the surface of the superconducting tape at about 1 Tat 77 K; and

wherein the superconducting tape is configured to retain, upon application of the magnetic field, a second critical current that is at least about 30% of the first critical current.

12. The superconducting tape of claim 11 , wherein the superconducting tape comprises copper and a rare-earth metal content of at least two of Gd, Y, Sm, Nd, Eu, Dy, Ho, Er or Yb, and wherein the superconducting tape comprises a ratio of the total rare-earth metals content to copper content of at least 1.5:3.

13. The superconducting tape of claim 12 , wherein the rare-earth metals content comprises Y and one of Sm or Gd.

14. The superconducting tape of claim 13 , wherein the ratio Y to Sm or Gd comprises a ratio of about 1:1.

15. The superconducting tape of claim 14 , wherein the superconducting tape comprises copper and at least one dopant comprising Zr, Ta, Hf, Sn, Nb, Ti or Ce, and wherein the dopant content to copper content ratio comprises at least about 0.05 dopant to at least about 3 copper.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2023
From: SELVAMANICKAM, VENKAT
To: UNIVERSITY OF HOUSTON SYSTEM
Reel/Frame 065816/0769 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2023
From: CHEN, YIMIN
To: SUPERPOWER, INC.
Reel/Frame 065816/0865 →
Continuity (6)
Continuation 16829851 · Mar 25, 2020
Continuation 15384486 · Dec 20, 2016
Continuation 13916315 · Jun 12, 2013
Provisional Application 61696562 · Sep 4, 2012
Provisional Application 61658546 · Jun 12, 2012
Related Publication 20220230784A1 · Jul 21, 2022