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Phase equilibria of the Ba-Sm-Y-Cu-O system for coated conductor applications
Authors:G Liu  Z Yang  LP Cook
Institution:a Ceramics Division, Materials Science and Engineering Laboratory, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA
b Poly Crystallography Inc., Naperville, IL 60540, USA
c PhazePro Technologies LLC, Hustontown, PA 17229, USA
Abstract:The complex phase relationships near the BaO-poor region of the quaternary Ba-Sm-Y-Cu-O oxide system prepared in pure air (O2p=22 kPa, 950 °C) and in 0.1% O2 (O2p=100 Pa, 810 °C) have been determined. This investigation also included the subsolidus compatibilities in ten subsystems (Ba-Sm-Y-O, Ba-Sm-Cu-O, Ba-Y-Cu-O, Sm-Y-Cu-O, Ba-Sm-O, Ba-Y-O, Ba-Cu-O, Sm-Y-O, Sm-Cu-O, and Y-Cu-O), and the homogeneity range of five solid solutions (Ba(SmxY2−x)CuO5, (Sm,Y)2O3, (Sm,Y)2CuO4, (Y,Sm)2Cu2O5, and Ba(Sm,Y)2O4). The single phase range of the superconductor solid solution, (Ba2−xSmx)(Sm1−yYy)Cu3O6+z, and the phase compatibilities in its vicinity, which are particularly important for processing, are described in detail. The phase equilibrium data of the Ba-Sm-Y-Cu-O system will enable the improvement of the intrinsic superconducting properties of second-generation wires, and facilitate the flux-pinning process.
Keywords:Ba-Sm-Y-Cu-O phase diagrams  (Ba2&minus  xSmx)(Sm1&minus  yYy)Cu3O6+z solid solution  Coated conductors
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