Heat treatment control of Bi-2212 coils: I. Unravelling the complex dependence of the critical current density of Bi-2212 wires on heat treatment
•Variation of the critical current density Jc of 11 superconducting Bi-2212 round wires with its heat treatment parameters is experimentally determined.•Roles of key heat treatment parameters in controlling Jc of Bi-2212 wires are analyzed.•Practical advices on heat treatment of Bi-2212 superconduct...
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Veröffentlicht in: | Cryogenics (Guildford) 2018-01, Vol.89 (C), p.95-101 |
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Sprache: | eng |
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Zusammenfassung: | •Variation of the critical current density Jc of 11 superconducting Bi-2212 round wires with its heat treatment parameters is experimentally determined.•Roles of key heat treatment parameters in controlling Jc of Bi-2212 wires are analyzed.•Practical advices on heat treatment of Bi-2212 superconducting coils are given.
A robust and reliable heat treatment is crucial for developing superconducting magnets from several superconductors especially Bi-2212. An improper heat treatment may significantly reduce the critical current density Jc of a Bi-2212 superconducting coil, even to zero, since the Jc of Bi-2212 wires is sensitive to parameters of its heat treatment (partial melt processing). To provide an essential database for heat treating Bi-2212 coils, the dependence of Jc on heat treatment is studied systematically in 11 industrial Bi-2212 wires, revealing several common traits shared between these wires and outlier behaviors. The dependence of the Jc of Bi-2212 on heat treatment is rather complex, with many processing parameters affecting Jc, including the peak processing temperature Tp, the time at the peak temperature tp, the time in the melt tmelt, the rate at which Bi-2212 melt is initially cooled CR1, the rate at which the solidification of Bi-2212 melt occurs CR2, and the temperature Tq at which the cooling rate switches from CR1 to CR2. The role of these parameters is analyzed and clarified, in the perspective of heat treating a coil. Practical advices on heat treatment design are given. The ability of a Bi-2212 coil to follow the prescribed recipe decreases with increasing coil sizes. The size of a coil that can be properly heat treated is determined. |
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ISSN: | 0011-2275 1879-2235 |
DOI: | 10.1016/j.cryogenics.2017.11.006 |