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Method of producing improved microstructure and properties for ceramic superconductors

机译:制备陶瓷超导体的改善的微结构和性能的方法

摘要

A ceramic superconductor is produced by close control of oxygen partial pressure during sintering of the material. The resulting microstructure of YBa.sub.2 Cu.sub.3 O.sub.x indicates that sintering kinetics are enhanced at reduced p(O.sub.2). The density of specimens sintered at 910° C. increased from 79 to 94% theoretical when p(O. sub.2) was decreased from 0.1 to 0.0001 MPa. The increase in density with decrease in p(O.sub.2) derives from enhanced sintering kinetics, due to increased defect concentration and decreased activation energy of the rate-controlling species undergoing diffusion. Sintering at 910° C. resulted in a fine-grain microstructure, with an average grain size of approximately 4 &mgr;m. Such a microstructure results in reduced microcracking, strengths as high as 191 MPa and high critical current density capacity.
机译:陶瓷超导体是通过在材料烧结过程中对氧分压的严格控制来生产的。所得的YBa 2 Cu 3 O x的微观结构表明,烧结动力学在降低的p(O 2)下得以增强。当p(O.sub.2)从0.1降低到0.0001MPa时,在910℃下烧结的样品的密度从理论值的79%增加到94%。密度随p(O.sub.2)的减小而增加,是由于提高了烧结动力学,这归因于缺陷浓度的增加和进行扩散的速率控制物质的活化能的降低。在910℃下烧结产生细晶粒的微结构,其平均晶粒尺寸为约4μm。这样的微结构导致微裂纹的减少,强度高达191 MPa和高临界电流密度容量。

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