Phase transformation and critical current density of (Bi, Pb)-2223/Ag superconducting tapes by a low temperature-low oxygen pressure post-annealing method

Citation
H. Deng et al., Phase transformation and critical current density of (Bi, Pb)-2223/Ag superconducting tapes by a low temperature-low oxygen pressure post-annealing method, PHYSICA C, 339(3), 2000, pp. 171-180
Citations number
27
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
PHYSICA C
ISSN journal
09214534 → ACNP
Volume
339
Issue
3
Year of publication
2000
Pages
171 - 180
Database
ISI
SICI code
0921-4534(20001015)339:3<171:PTACCD>2.0.ZU;2-3
Abstract
A low temperature-low oxygen pressure post-annealing method was introduced for a series of Bi(Pb)-2223/Ag multifilamentary meter-length rolled tapes m anufactured using the different precursor powders. The universal effectiven ess of the transformation of Bi2212 into BiPb2212 by the post-annealing on the improvement of the critical current density as reported earlier for the short pressed samples is examined. The results indicate that for most of t he air-sintered tapes the critical current densities are improved up to 1.5 -2.5 times after the short time post-annealing at 780 degrees C under 90% N -2-10% O-2 atmosphere and only a little exception with J(c) slightly decrea sed or increased after the treatment was observed. XRD and SEM measurements reveal that there are two different phase assemblages in the fully reacted tapes with J(c) increased (Bi2223 + 2212 + Bi3Pb0.6Sr2CaCu3Ox + (Pb, Bi)(4 -alpha)(Sr, Ca)(5-beta)CuOx(Pb451) + (Sr, Ca)(14)Cu24Ox and Bi2223 + 2212 Pb451 + (Sr, Ca)(14)Cu24Ox, respectively) due to the difference of Pb cont ent in the precursor powders. Therefore, there have been different phase as semblage changes of Bi2223 + 2212*(increased) + Pb451(decreased) + (Sr, Ca) (14)Cu24Ox and Bi2223 + 2212* (increased) + (Sr, Ca)(24)Cu24Ox, respectivel y, after the post-annealing. An improved grain alignment and colony boundar y can also be observed besides the decrease of the non-superconducting impu rities and the increase of 2212. XRD measurements also indicate that some u ndesired reactions may happen for the slightly decreased or increased tapes during the post-annealing, which should be responsible for the ineffective ness of the treatment in these tapes. Ac susceptibility measurements for th e J(c) improved samples show an obvious increase of the transition temperat ure of 2212 from 68 to 76 K after the post-annealing. It can be concluded t hat the low temperature-low oxygen pressure post-annealing method is an eff ective means considering the eliminating of the weak links. The mechanism o f the treatment can be determined as the overcoming of the main weak links of Pb-poor Bi2212 by the transformation of this lower T-c phase (68 K) to t he higher T-c phase (76 K) cooperated simultaneously with the elimination o f the weak links of the non-superconducting impurities during the transform ation. This mechanism, which concentrates on the increase of the transition temperature of the low T-c phase instead of the exhausted efforts of makin g the single Bi2223 phase, may imply a shorter sintering time and a decreas ed number of the intermediate deformation. Therefore, it may present some n ew ideas on the manufacture of the Bi2223 tapes operated at the liquid nitr ogen temperature, which makes the method noteworthy and further investigate d. (C) 2000 Elsevier Science B.V. All rights reserved.