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Effect of secondary phases evolution in the first sintering process on the critical current density of Bi-2223/Ag tapes

机译:第一次烧结过程中次级相演变对Bi-2223 / Ag胶带临界电流密度的影响

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摘要

Effect of the evolution of the secondary phases in the first sintering process on the microstructure and critical current density of Bi-2223/Ag tapes has been studied. The amount and grain size of secondary phases were characterized by XRD and SEM/EDS. It has been found that both the microstructure and critical current of the fully reacted tapes depended strongly on the secondary phases formed in the first sintering process. The (Ca,Sr)(2)CuO3 and (Ca,Sr)(14)Cu24O41 phases were easily formed and to be stable at higher temperature, however, at lower temperature, the CuO particles appeared easily and keeping stable with dwelling time. The best conversion to Bi-2223, together with the lowest amount of the total secondary phases was achieved when samples treated at 830 degrees C in 8.5% O-2, Samples with the lowest amount and minimum size of secondary phase produced in the first sintering process will obtain the best performance of the fully reacted tapes. The optimum sintering parameters are obtained by controlling the evolution of the secondary phases during the first sintering process.
机译:研究了第一次烧结过程中第二相的演变对Bi-2223 / Ag胶带的微观结构和临界电流密度的影响。通过XRD和SEM / EDS表征了第二相的数量和晶粒尺寸。已经发现,完全反应的带的微观结构和临界电流都强烈地依赖于在第一烧结过程中形成的第二相。 (Ca,Sr)(2)CuO3和(Ca,Sr)(14)Cu24O41相很容易形成并且在较高温度下稳定,但是在较低温度下,CuO颗粒容易出现并随停留时间保持稳定。在830℃,8.5%O-2中处理过的样品中,向Bi-2223的转化最佳,而次生相的总量也最低,第一次烧结时产生的次生相的量最少且尺寸最小的样品过程将获得完全反应的胶带的最佳性能。最佳的烧结参数是通过控制第一次烧结过程中第二相的发展而获得的。

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