Tensile properties and critical current strain limits of reinforced Bi-2212 conductors for high field magnets

We study here the effect of axial strain on the degradation of the critical current Ic for bare and reinforced, overpressure processed Bi-2212 conductors. We show that reinforcement markedly improves the conductor's stress limit, doubling it from ~150 MPa in the bare conductor to ~300 MPa when...

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Veröffentlicht in:IOP conference series. Materials Science and Engineering 2017-01, Vol.279 (1), p.12022
Hauptverfasser: Brown, M., Bosque, E., McRae, D., Walsh, R.P., Jiang, J., Hellstrom, E. E., Kim, Y., Trociewitz, U., Otto, A., Larbalestier, D. C.
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Sprache:eng
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Zusammenfassung:We study here the effect of axial strain on the degradation of the critical current Ic for bare and reinforced, overpressure processed Bi-2212 conductors. We show that reinforcement markedly improves the conductor's stress limit, doubling it from ~150 MPa in the bare conductor to ~300 MPa when reinforced. We find also that certain processes used to reinforce the conductor slightly reduce the Ic degradation strain limit from ~0.6% to ~0.4%. Stress vs strain data taken from the samples studied here has been used to create a finite element model to explore the feasibility of using a reinforced Bi-2212 strand (produced by Solid Material Solutions) in a small test coil. The model predicts an IC limited coil with a maximum hoop strain of 0.31%, well below the experimentally verified strain limit, and is designed to lead to Bi-2212 coils that are not strain limited, but Ic limited.
ISSN:1757-8981
1757-899X
DOI:10.1088/1757-899X/279/1/012022