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Optimum Processing Conditions For The Fabrication Of Large, Single Grain Ag-doped Ybco Bulk Superconductors

机译:制备大型单晶掺银Ybco体超导体的最佳工艺条件

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A pseudo Time-Temperature-Transformation (TTT) diagram has been constructed for the optimum melt processing conditions for the fabrication of large, single grain Ag-doped Y-Ba-Cu-O (YBCO/Ag) bulk super-conductors. The thermal conditions for the formation of homogeneous nuclei have been investigated and the boundary between this region and that for no grain nucleation has been mapped as a function of holding time. YBCO/Ag bulk samples grow typically in the form of single grains when the processing temperature profile lies within the 'no nucleation' region of the pseudo TTT diagram. However, by studying the YBCO/Ag growth process, some samples have been grown in the form of single grains by employing a temperature profile within the homogeneous grain nucleation region of the phase diagram. Such growth may be achieved when the YBCO/Ag phase constitutes the majority of the volume of the pellet before the growth temperature reaches that at the nucleation boundary. A large, single YBCO/Ag grain of diameter 30 mm has been fabricated successfully based on these studies by both cold-seeding and seeded infiltration growth techniques.
机译:伪时间-温度-转变(TTT)图已被构造出来,以用于制造大型单晶粒掺杂银的Y-Ba-Cu-O(YBCO / Ag)块状超导体的最佳熔融工艺条件。已经研究了形成均相核的热条件,并且已将该区域与没有晶粒成核的区域之间的边界映射为保持时间的函数。当加工温度曲线位于伪TTT图的“无成核”区域内时,YBCO / Ag块状样品通常以单颗粒形式生长。但是,通过研究YBCO / Ag的生长过程,通过在相图的均匀晶粒成核区域内采用温度分布图,一些样品已经以单晶粒的形式生长。当在生长温度达到成核边界的温度之前,当YBCO / Ag相占丸粒体积的大部分时,可以实现这种生长。基于这些研究,通过冷播和种子渗透生长技术成功地制造了直径为30 mm的大的单一YBCO / Ag晶粒。

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