• Title/Summary/Keyword: BSCCO/Ag

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Synethisis of fine BSCCO precursor powder by spray pyrolysis (분무 열분해에 의한 미세 BSCCO 전구체 분말의 합성)

  • 김성환;유재무;고재웅;김영국;박성창
    • Proceedings of the Korea Institute of Applied Superconductivity and Cryogenics Conference
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    • 2003.10a
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    • pp.99-102
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    • 2003
  • Many researches on synthesis process for BSCCO precursor powders have been developed for high J$_{c}$ BSCCO-2223/Ag tape. Spray pyrolysis method for fabrication of precursor powder has many advantages, such as high purity, fine particle size of BSCCO precursor powder. Fine, spherical powders were prepared by ultrasonic spray pyrolysis from the aqueous solution of metal nitrates. BSCCO precursor powders were synthesized with 0.1 M concentration and heat treatment conditions. Average particle size for spray pyrolysis powders was 1.5 ~ 3 ${\mu}{\textrm}{m}$. BSCCO -2223/Ag tape was prepared by PIT method and followed by various sintering conditions. The critical current density of BSCCO-2223/Ag tape sintered in low oxygen partial pressure was ~ 23 kAcm$^{-2}$.

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Control of Cracking on Superconducting Wire by Electrophoresis (전기영동 초전도 선재의 크랙발생 억제)

  • 소대화;이영매;조용준;김태완;박정철;코로보바나탈리아
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2000.07a
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    • pp.270-273
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    • 2000
  • For the well-preparation of the superconducting wire by electrophoresis, the control of the cracking on the YBCO, BSCCO superconductor deposited on Ag wire in acetone and buthanol solution with PEG(poly-ethylenglycol) was investigated with XRD and SEM analysis. After deposition, drying and heat treatment process, the cracks on the deposited surface of YBCO and BSCCO samples was clearly removed and decreased, which was perpared in suspension with addition of PEG from 1 to 3ml. However, in the case of the addition rate of PEG in acetone suspension was exceeded in 3ml, BSCCO superconductor deposited on Ag wire was slightly melted at 90$0^{\circ}C$ which was the same heat treatment condition of other samples with different additin rate of PEG. In the process of electrophoretic deposition, drying and heat treatment, PEG added into the suspension solution as a binder was very useful to prepare the crack-free thick film-wire of YBCO and BSCCO.

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A study on the Joining Properties of Bi-2212 High-Tc Superconducting Tube and Indium Solder (Bi-2212 고온초전도튜브와 인듐솔더의 접합특성연구)

  • Oh, S.Y.;Hyun, O.B.;Kim, Chan-Joong
    • Progress in Superconductivity
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    • v.7 no.2
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    • pp.179-183
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    • 2006
  • As a material for SFCL(Superconducting Fault Current Limiter), BSCCO tube with metal stabilizer is a promising candidate, assuring the stability and large power capacity, For the application, the proper soldering technique, which overcome the difficulties of the joining between BSCCO and metal stabilizer, is required. In this study, after soldering In-Bi solder and In-Sn solder with BSCCO superconductor, welding properties between BSCCO and solders were investigated. Because ceramic materials is difficult to weld, Ag electro-plating on BSCCO 2212 is used for intermetallic layer. To find out the best welding condition for superconductor, soldering is tested in the maximum temperature from $155^{\circ}C\;to\;165^{\circ}C$ in the reflow oven. By investigating the composition and thickness of IMC (lntermetallic Compound) created in the reaction of Ag with solder, we analyzed the welding properties of High-Tc superconductor from a micro point of view.

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Fabrication of fine BSCCO-2223 precursor powder by spray pyrolysis process (분무 열분해방법에 의한 미세 BSCCO-2223 전구분말의 제조)

  • 김성환;유재무;고재웅;김영국;박기호
    • Progress in Superconductivity
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    • v.5 no.1
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    • pp.65-69
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    • 2003
  • Many researches on fabrication process for BSCCO precursor powders have been developed for high J$_{c}$ BSCCO-2223 tape. Spray pyrolysis method for fabrication of precursor powder has many advantages, such as high purity, fine particle size and low carbon content of BSCCO precursor powder. Fine, spherical powders were prepared by ultrasonic spray pyrolysis from the aqueous solution of metal nitrates. BSCCO precursor powders were synthesized with various solutes concentration and heat treatment conditions. Average particle size for spray pyrolysis powders was $1.5∼3\mu\textrm{m}$. Bi-2223/Ag tape was prepared by PIT method and followed by various sintering conditions. BSCCO precursor powders were characterized by XRD, SEM, EDS, Carbon content and particle size analysis.s.

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The effect of precursor powder on the properties of BSCCO 2223 Ag-sheathed tapes

  • Su, Xiao-Dong;Ko, Jae-Woong;Park, Sung-Chung;Kim, Hai-Doo;Chung, Hyung-Sik;Qiao, Gui-Wen
    • 한국초전도학회:학술대회논문집
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    • v.9
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    • pp.329-333
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    • 1999
  • The BSCCO 2223 Ag-sheathed tapes were prepared with spray dried precursor powders, which are of different starting condition. The J$_c$ in the short tapes varied from 24 kA/ cm$^2$ to 47 kA/ cm$^2$ at 77K and 0T. The largely improvement of J$_c$ in certain tape, which characterized with the large textured BSCCO 2223 grains, homogeneity of reactant and fewer tracks of second phases in final superconducting matrixes, could be due to optimization in the precursor powder.

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Analysis on Linear Voltage Components of Joints Ag-sheathed BSCCO tapes (은 피복 BSCCO 선재 접합부의 선형전압성분 분석)

  • 황보훈;최세용;강준선;나완수;김정호;주진호
    • Proceedings of the Korea Institute of Applied Superconductivity and Cryogenics Conference
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    • 2000.02a
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    • pp.166-169
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    • 2000
  • Usually, the critical current of jointed BSCCO tapes degrades quite a bit compared to the normal unjointed tape regions. It has been thought that the current redistribution around the jointed region is the main cause it. We experimentally found the linear voltage components around the jointed area, especially in the transition region, which suggests that the current redistribution around the jointed area is the main reason of the critical current degradations.

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Electronical Property of BSCCO Tube Fabricated by Centrifugal Melting Process (원심 용융 성형공정으로 제조된 BSCCO 튜브의 전기적 특성)

  • Choi, Jung-Suk;Oh, Sung-Young;Jun, Byung-Hyuk;Kim, He-Lim;Hyun, Ok-Bae;Kim, Hyoung-Seop;Kim, Chan-Joong
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2006.06a
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    • pp.267-267
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    • 2006
  • 전력에 큰 손실을 초래하는 고장전류를 차단하기 위한 한류기(FCL) 소재로서 고온 초전도체인 BSCCO 2212가 사용된다. 고온에서 용융된 BSCCO 2212 분말은 원심성형법에 의해 한류기용 튜브로 제조되었다. BSCCO 튜브의 기계적 특성을 높이고 용융온도를 낮추기 위해 $SrSO_4$(10wt-%)를 첨가하였다. 용탕은 $1200^{\circ}C$에서 완전히 용융되어 금속 몰드로 주입되었고 원심성형에 사용되는 금속 몰드는 $550^{\circ}C$ 온도로 2시간 예열 후 1020 ~ 2520 RPM으로 회전시켰다. 원심력에 의해 성형된 BSCCO 튜브는 약 48시간 동안 로에서 서냉 후 금속 몰드로부터 분리하였다. 튜브의 용이한 분리를 위해 이형제로서 BSCCO 2212 powder를 사용하였고 임계전류측정을 고려하여 Ag tape 단자를 튜브 끝단에 부착하였다. BSCCO 제조 공정에 있어서 몰드의 예열온도, 용융온도, 몰드 회전속도 등의 변수를 조절하여 최적의 조건을 확립하였다. 제조한 BSCCO 튜브의 임계전류($I_c$)와 임계전류밀도($J_c$)는 77K에서 536A와 $205A/cm^2$ 이었다. 본 연구에서는 BSCCO 2212 튜브를 제조하는 공정조건 변화와 각 조건에서 제조된 BSCCO 2212 튜브의 전기적 특성 및 그에 따른 분석에 대해 기술하였다.

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고온초전도 BSCCO 2223상 형성시 나타나는 여러 가지 이차상들이 선재의 임계전류에 미치는 영향(토요일)

  • 박성창;김철진;유재무;고재웅;김영국
    • Proceedings of the Korea Crystallographic Association Conference
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    • 2003.05a
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    • pp.24-24
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    • 2003
  • 고온초전도 BSCCO 2223 ((Bi, Pb)₂Sr₂Ca₂Cu₃O/sub x/) 선재의 특성을 향상시키기 위해서는 반복적인 인발 및 압연과정을 통한 texturing향상, BSCCO 2223입자의 배향성 증대, 피복재내 초전도체의 충진율(밀도)향상, 이차상의 부피분율 감소등이 이루어져야 한다. 최적 열처리 조건을 통하여 열처리 시에 형성되는 이차상인 (Bi,Pb)₂Sr₂CuO/sub y/ (2201, amorphous phase)를 조절하면서, (Ca,Sr)₂CuO₃ (2/1 AEC), (Ca,Sr)/sub 14/Cu/sub 24/O/sub 41/ (14/24 AEC)와 같은 이차상들의 부피분율 및 크기를 감소시켜야만 한다. 본 실험에서는 BSCCO 2223 선재의 특성을 향상시킬수 있는 최적의 열처리 조건 확립 및 기계적 공정시 나타나는 여러 가지 문제점을 개선하여 높은 임계전류를 가지는 선재의 특성을 분석하고자 하였다. 최종적으로 제조된 선재는 2223상 결정이 피복재(Ag)와 평행하게 길게 성장하며, AEC상의 크기와 부피분율이 감소할수록 더 높은 임계전류특성을 나타내었다(I/sub c/~70A, J/sub c/~42,000 A/㎠). 또한 이 선재에서 나타나는 여러 가지 이차상들을 분석하기 위하여 XRD, SEM, EDS 분석을 행하였다.

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Fabrication and fault test of 12 kVA class BSCCO SFCL element (12 kVA급 BSCCO 한류소자 제작 및 특성 실험)

  • Oh, S.Y.;Yim, S.W.;Kim, H.R.;Hyun, O.B.;Jang, G.E.
    • Progress in Superconductivity and Cryogenics
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    • v.10 no.1
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    • pp.24-27
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    • 2008
  • For the development of superconducting fault current limiters(SFCLs) having large current capacity, we fabricated an SFCL element that consists of Bi-2212 superconductor and Cu-Ni alloy tubes. First, Ag was plated on the surface of the Bi-2212 for the enhancement of soldering process. On the Ag-plated Bi-2212 tube, a Cu-Ni alloy tube was soldered using optimized solders and soldering conditions. The BSCCO/Cu-Ni composite was processed mechanically to have a helical shape for the improvement of the SFCL characteristics. The total current path of the SFCL element was 1330 mm long with 12 turns, and had critical current of 340 A at 77 K. Finally, we carried out the fault test using the fabricated SFCL element. It showed successful current limiting performance under the fault condition of 50 $V_{rms}$ and 5.5 kA. From the results, the rated voltage of the SFCL element was decided to be 0.4 V/cm, and the power capacity was 12 kVA at 77 K. The fabrication process of the SFCL and the fault test results will be presented.