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Correlation of critical current density and phase conversion atdifferent final cooling rate in Ag-sheathed PbBi2223 tapes

机译:Ag包覆的PbBi2223胶带在不同最终冷却速率下的临界电流密度和相变的相关性

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As shown by Parrell et al., a final reduced cooling rate can produce an improvement of the optimum critical current in field. In this paper we present results on the critical current density and magnetic field dependence of Ag-sheathed (Pb,Bi)-2223 multifilamentary tapes as a function of the final sintering time for different cooling. Correlation between 2223 phase conversion, as determined by XRD, and the critical current density is also examined. For samples slow cooled to 800°C at 1°C/h followed by furnace cooling to room temperature, the critical current density remained almost constant at 20 KAcm-2 with different final sintering times between 10 to 150 hours. In contrast samples slow-cooled to 730°C at 1°C/h showed a decreased Jc of 7 KAcm-2 for a short final sintering time of 10 hours, rising gradually to 22 KAcm-2 at 200 hours. Corresponding to this, the samples cooled to 800°C show a phase composition of 90% apparent (Pb,Bi)-2223 for all times, as opposed to a gradual increase of the (Pb,Bi)-2223 phase from 65% to 90% with increasing sintering time for samples slow cooled to 730°C. As the conditions are exactly the same prior to the cooling below 800°C, the reduced conversion for the samples slow cooled to 730°C must be the result of 2212 precipitation from the apparent (Pb,Bi)-2223 phase present at 800°C
机译:如Parrell等人所示,最终降低的冷却速度可以改善现场的最佳临界电流。在本文中,我们介绍了不同冷却条件下,Ag护套(Pb,Bi)-2223复丝带的临界电流密度和磁场依赖性与最终烧结时间的关系。还检查了由XRD确定的2223相变与临界电流密度之间的相关性。对于以1°C / h的速度缓慢冷却至800°C,然后通过熔炉冷却至室温的样品,临界电流密度在20 KAcm-2下几乎保持恒定,最终烧结时间在10到150小时之间。相比之下,以1°C / h的速度缓慢冷却至730°C的样品在10小时的较短最终烧结时间内显示Jc降低了7 KAcm-2,在200小时后逐渐升高到22 KAcm-2。与此相对应,冷却至800°C的样品在所有时间内均表现出90%的表观(Pb,Bi)-2223相组成,而(Pb,Bi)-2223的相从65%逐渐增加至对于缓慢冷却至730°C的样品,烧结时间增加90%。由于冷却至800°C之前的条件完全相同,因此缓慢冷却至730°C的样品的转化率降低必须是由于800°C存在的表观(Pb,Bi)-2223相产生2212沉淀的结果C

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