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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Isothermal melt processing of Bi-2212 tapes
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Isothermal melt processing of Bi-2212 tapes

机译:Bi-2212胶带的等温熔融加工

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摘要

Isothermal melt processing (IMP) has been used to produce phase-pure, high critical current density (Jc) Bi-2212 tapes at temperatures as low as 780°C, Bi-2212 tapes processed by IMP have yielded Jc values up to 250 kA/cm2 (Ic=345 A) at liquid helium temperatures. Small test coils have been produced with Jc values up to 150 kA/cm2. The effects of the oxidation rate, processing temperature, and time spent in the partial melt on the superconducting properties and microstructure were investigated. Optimal superconducting properties result from the interplay of these parameters such that the grain size of the Bi-2212 phase in the polycrystalline core is allowed to coarsen and align itself with the silver sheath to form a well connected superconductor. Deviations from optimal conditions result in either too little coarsening to form a well aligned structure or instabilities in the coarsening process that lead to the formation of large secondary phases which disrupt connectivity
机译:等温熔体加工(IMP)已用于在低至780°C的温度下生产纯相,高临界电流密度(Jc)Bi-2212胶带,通过IMP处理的Bi-2212胶带产生的Jc值高达250 kA / cm2(Ic = 345 A)在液氦温度下。小型测试线圈的Jc值高达150 kA / cm2。研究了氧化速率,加工温度和部分熔融所花费的时间对超导性能和微观结构的影响。最佳的超导特性是由这些参数的相互作用所导致的,从而使多晶核中Bi-2212相的晶粒尺寸变粗,并使其自身与银护套对齐,从而形成一个连接良好的超导体。偏离最佳条件会导致太少的粗化而无法形成良好排列的结构,或者导致粗化过程中的不稳定性,从而导致形成较大的次级相,从而破坏连通性

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