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      KCI등재후보

      열처리조건이 BSCCO-2212 벌크의 특성에 미치는 영향 = Effect of Annealing Conditions on Properties of BSCCO-2212 Bulk

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      https://www.riss.kr/link?id=A100687780

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      다국어 초록 (Multilingual Abstract)

      We fabricated BSCCO-2212(2212) bulk superconductors by using a casting process and evaluated the superconducting properties. The effects of annealing conditions on microstructure and critical properties were studied. It was found that the homogeneous and uniform microstructure improved the critical properties and the microstructures of ingot and annealed rods were different with the size of 2212 rod and tube. The critical current($I_c$) of rods increased with increasing annealing time, probably due to increased grain size of 2212. Annealing time of the highest $I_c$ for the smaller rod(diameter of 10 mm) was shorter(150 hr) than that of the larger rod(diameter of 16 mm, 400 hr). This size effect seems to be related to different grain sizes of the intermediate phases such as 2201 and secondary phases in the ingot. In addition, we fabricated 2212 tubes from the rod by removing the center region which contained inhomogeneous microstructures. The $I_c$ of 2212 tube with the outer diameter of 16 mm and the thickness of 2 mm was measured to 844 A, which corresponds to the critical current density of $1017\;A/cm^2$ at 77 K.
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      We fabricated BSCCO-2212(2212) bulk superconductors by using a casting process and evaluated the superconducting properties. The effects of annealing conditions on microstructure and critical properties were studied. It was found that the homogeneous ...

      We fabricated BSCCO-2212(2212) bulk superconductors by using a casting process and evaluated the superconducting properties. The effects of annealing conditions on microstructure and critical properties were studied. It was found that the homogeneous and uniform microstructure improved the critical properties and the microstructures of ingot and annealed rods were different with the size of 2212 rod and tube. The critical current($I_c$) of rods increased with increasing annealing time, probably due to increased grain size of 2212. Annealing time of the highest $I_c$ for the smaller rod(diameter of 10 mm) was shorter(150 hr) than that of the larger rod(diameter of 16 mm, 400 hr). This size effect seems to be related to different grain sizes of the intermediate phases such as 2201 and secondary phases in the ingot. In addition, we fabricated 2212 tubes from the rod by removing the center region which contained inhomogeneous microstructures. The $I_c$ of 2212 tube with the outer diameter of 16 mm and the thickness of 2 mm was measured to 844 A, which corresponds to the critical current density of $1017\;A/cm^2$ at 77 K.

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      참고문헌 (Reference)

      1 X.-H. Gao, "The kinetics of the formation of the Bi-based superconducting phase" 24 : 321-332, 1995

      2 M. C. Flemmings, "Solidification processing" McGraw-Hill 6-12, 1974

      3 J. Bock, "Melt cast processed (MCP)-BSCCO 2212 tubes for power applicastions up to 10 kA" 5 : 1409-1412, 1995

      4 J. Bock, "Large shaped parts of melt cast BSCCO for applications in electrical engineering" 3 : 1659-1662, 1993

      5 S. Elschner, "Influence of granularity on the critical current density in melt-cast processed Bi2Sr2CaCu2Ox" 6 : 413-420, 1993

      6 W. Paul, "Inductive measurements of intergranular critical currents in ceramic rings: A comparison between sintered and melt processed Y-, Bi- and Tl-based superconductor" 175 : 102-110, 1991

      7 S. Elschner, "High currents in MCP BSCCO 2212 bulk material" 32 : 2724-2727, 1996

      8 H. Kumakura, "Effect of high oxygen partial pressure heat treatment on the superconducting properties of Bi2Sr2CaCu2Ox/Ag tapes" 80 : 5162-5168, 1996

      9 F. Jean, "Dependence of oxygen stoichiometry and critical temperature of Bi2Sr2CaCu2O8+Δ on oxygen partial pressure between 300 and 700℃" 13 : 1167-1169, 2000

      10 D. Buhl, "Critical current density of Bi-2212 thick films processed by partial melting" 10 : 32-40, 1997

      1 X.-H. Gao, "The kinetics of the formation of the Bi-based superconducting phase" 24 : 321-332, 1995

      2 M. C. Flemmings, "Solidification processing" McGraw-Hill 6-12, 1974

      3 J. Bock, "Melt cast processed (MCP)-BSCCO 2212 tubes for power applicastions up to 10 kA" 5 : 1409-1412, 1995

      4 J. Bock, "Large shaped parts of melt cast BSCCO for applications in electrical engineering" 3 : 1659-1662, 1993

      5 S. Elschner, "Influence of granularity on the critical current density in melt-cast processed Bi2Sr2CaCu2Ox" 6 : 413-420, 1993

      6 W. Paul, "Inductive measurements of intergranular critical currents in ceramic rings: A comparison between sintered and melt processed Y-, Bi- and Tl-based superconductor" 175 : 102-110, 1991

      7 S. Elschner, "High currents in MCP BSCCO 2212 bulk material" 32 : 2724-2727, 1996

      8 H. Kumakura, "Effect of high oxygen partial pressure heat treatment on the superconducting properties of Bi2Sr2CaCu2Ox/Ag tapes" 80 : 5162-5168, 1996

      9 F. Jean, "Dependence of oxygen stoichiometry and critical temperature of Bi2Sr2CaCu2O8+Δ on oxygen partial pressure between 300 and 700℃" 13 : 1167-1169, 2000

      10 D. Buhl, "Critical current density of Bi-2212 thick films processed by partial melting" 10 : 32-40, 1997

      11 S. M. Khalil, "Annealing temperature effect on the properties of Bi:2212 superconducting system" 35 : 299-304, 2005

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