he application of partial melting techniques to the densification of BSCCO 2223 ceramics is presented. A new method has been developed, that avoids the peritectic decomposition of the 2223 phase and exploits the existence of a limited region of the phase diagram, occurring for composition richer in Ca and Cu, in which this phase is the only BSCCO phase coexisting with the liquid. This allows the densification process assisted by the liquid phase, limiting at the same time the formation of undesired intergrowths of lower To phases. In comparison with the usually adopted processes, the new method results in a dramatic decrease of the post-treatment times, which are typically limited to a few hours. By optimising the thermal as well as the temporal parameters governing a standard two-steps procedure, values of .Jc of the order of 103 Acm-2, at 77 K, can be obtained for a global process time not exceeding 6 hours.

Jc enhancement by partial melting in BSCCO 2223 ceramics

A Migliori;R Masini;
1997

Abstract

he application of partial melting techniques to the densification of BSCCO 2223 ceramics is presented. A new method has been developed, that avoids the peritectic decomposition of the 2223 phase and exploits the existence of a limited region of the phase diagram, occurring for composition richer in Ca and Cu, in which this phase is the only BSCCO phase coexisting with the liquid. This allows the densification process assisted by the liquid phase, limiting at the same time the formation of undesired intergrowths of lower To phases. In comparison with the usually adopted processes, the new method results in a dramatic decrease of the post-treatment times, which are typically limited to a few hours. By optimising the thermal as well as the temporal parameters governing a standard two-steps procedure, values of .Jc of the order of 103 Acm-2, at 77 K, can be obtained for a global process time not exceeding 6 hours.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/122705
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