• Title/Summary/Keyword: Bi-2223 tapes

Search Result 195, Processing Time 0.022 seconds

Study on fabricated RF coil using high-temperature superconductor tape and matching circuit for low field MRI system (고온초전도 선재와 정합회로를 이용한 RF coil 제작에 대한 기초연구)

  • Kim, D.H.;Ko, R.K.;Kang, B.M.;Ha, D.W.;Sohn, M.H.;Mun, C.W.
    • Progress in Superconductivity and Cryogenics
    • /
    • v.14 no.1
    • /
    • pp.44-47
    • /
    • 2012
  • The substantial improvement of the signal-to-noise ratio (SNR) can be achieved with small-size samples or low-field MRI system by high-temperature superconducting(HTS) RF coil. The typical HTS RF coil made of HTS thin film is expensive and is limited the coil geometry to planar surface coil. In this study, commercial Bi-2223 HTS tapes was used as RF coil for a 0.35T permanent MRI system. It has advantages of both much lower cost and easier fabrication over HTS thin film coil. SNR gain of the image obtained from the HTS RF coil over a conventional Cu RF coil at room temperature was about 2.4-fold and 1.9-fold using the spin echo pulse sequence and gradient echo pulse sequence respectively.

Insulation Test for the 22.9 kV Class HTS Power Transmission Cable

  • J.W. Cho;Kim, H.J.;K.C. Seong;H.M. Jang;Kim, D.W.;Kim, S.H.
    • Progress in Superconductivity and Cryogenics
    • /
    • v.5 no.3
    • /
    • pp.48-51
    • /
    • 2003
  • HTS power transmission cable is expected to transport large electric power with a compact size. We are developing a 3-core, 22.9 kV, 50 MVA class HTS power cable, and each core consists of a conductor and shield wound with Bi-2223 tapes, electrical insulation with laminated polypropylene paper (LPP) impregnated with liquid nitrogen. This paper describes the design and experimental results of the model cable for the 22.9 kV, 50 MVA class HTS power transmission cable. The model cable was used the SUS tapes instead of HTS tapes because of testing the electrical characteristics only. The model cable was 1.3 m long and electrical insulation thickness was 4.5 mm. The model cable was evaluated the partial discharge (PD), AC and Impulse withstand voltage in liquid nitrogen. The AC and Impulse withstands voltage and PD inception stress was satisfied with the standard of Korea Electric Power Corporation (KEPCO) in the test results. The 3-core 22.9 kV, 50 MVA class HTS power cable has been designed and manufactured based on these experimental results.

The Preparation of Bi-2223 Superconducting Powder and Tape by Emulsion Drying Method (에멀젼 건조법에 의한 Bi-2223 초전도 분말과 테이프 제조)

  • 장중철;이응상;이희균;홍계원
    • Journal of the Korean Ceramic Society
    • /
    • v.34 no.2
    • /
    • pp.115-122
    • /
    • 1997
  • The powder preparation by using emulsion drying method, one of the chemical powder fabrication methods has the advantages; easy to control the chemical stoichiometry and to fabricate homogeneously fine particles. In the present study, the initial morphology and size distribution of the powder fabricated by using emulsion dry-ing method were controlled and were improved the homogeneity. By carefully controlling the mixing ratio of oil phase and aqueous solution and surfactant of preventing emulsion separation, the Bi(Pb)-Sr-Ca-Cu-O su-perconducting powders were prepared. The properties of the superconducting powder fabricated by this method and the microstructures and superconducting properties of the pelletized samples were investigated. The microstructures and electric properties of the tapes prepared by oxide powder-in-tube method were in-vestigated. The fabricated powder was spherical with less than 1$\mu$m but most of them was agglomerated with 2~5$\mu$m in size. The critical temperature of the pelletized sample annealed at 84$0^{\circ}C$ for 72 hours in oxygen par-tial pressure of 1/13atm in Ar atmosphere was 108K. And the critical current of the first and second annealed tapes in air prepared by oxide powder-in-tube process were 0.4A and 1.5A, respectively.

  • PDF

The mechanism of Bi$_{0.5}Pb_3Sr_2Ca_2CuO_{\delta}$ and (Ca,Sr)$_2$(BiPb)O$_4$ phase as a flux-pinning center in (Bi,Pb)$_2Sr_2Ca_2CuO_{10}$ superconductor ((Bi,Pb)$_2Sr_2Ca_2CuO_{10}$ 초전도체에l서 flux-pinning center로서 Bi$_{0.5}Pb_3Sr_2Ca_2CuO_{\delta}$ 및 (Ca,Sr)$_2$(BiPb)O$_4$ 상의도입 기구)

  • Chung, Jun-Ki;Kim, Cheol-Jin;Lee, Sang-Hee;Yoo, Jae-Moo;Kim, Hae-Doo;Koh, Jae-Woong
    • 한국초전도학회:학술대회논문집
    • /
    • v.9
    • /
    • pp.300-304
    • /
    • 1999
  • To tap the feasibility of exploiting the 2$^{nd}$ phases as flux-pinning centers in the (Bi,Pb)$_2Sr_2Ca_2CuO_{10}$ superconductor, the size and the distribution of the precipitates have been controlled by changing reaction temperature and time, oxygen partial pressure Po$_2$ and annealing condition. Various annealing heat treatments were also conducted on the as-received 61 filament Bi-2223 tapes with Bi$_{1.8}Pb_{0.4}Sr_2Ca_{2.2}Cu_3O_8$ starting composition and annealed specimen were analyzed with XRD, SEM, EDS and TEM.. The grain size of (Ca,Sr)$_2$(BiPb)O$_4$ or Bi$_{0.5}Pb_3Sr_2Ca_2CuO_{\delta}$ was controllable by optimizing the heat treatment condition and critical current density (J$_c$) showed dependence on the size of the 2$^{nd}$ phases.

  • PDF

Study on Transport Current Properties on YBCO Coated Conductor according to Aspect of Spiral Former Diameter (나선형 Former의 직경에 따른 YBCO Coated Conductor의 사고전류 통전특성 분석)

  • Kim, Min-Ju;Du, Ho-Ik;Doo, Seung-Gyu;Kim, Yong-Jin;Lee, Dong-Hyeok;Han, Byung-Sung
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
    • /
    • v.22 no.12
    • /
    • pp.1067-1072
    • /
    • 2009
  • YBCO coated conductor is named by second generation superconductor tapes. It is different with first generation superconductor tapes. YBCO coated conductor's specific difference with Bi-2223/Ag tape is more strong mechanical durability. This is important role to apply to superconducting machines. For mechanical transforming of YBCO coated conductors, we are using the well designed former. The merit of transformation is several. First, we vary the superconducting characteristics according to mechanical stress. Second, we reduce the volume of superconductor, so we achieve reducing the volume of superconducting machines. On this study, we experiment the transporting current characteristics of one types YBCO coated conductor. YBCO coated conductor with Ie of 70 A and voltage grade of 0.6 V/cm were connected to spiral former to conduct current application test.

Electromagnetic properties of HTS coated conductors fabricated by PLD and MOD (PLD 및 MOD법으로 제조된 2세대 HTS 선재의 전자기 특성)

  • Oh, Sang-Soo;Hwang, Sun-Yuk;Song, Kyu-Jeong;Kang, Suk-Il;Ha, Dong-Woo;Ko, Rock-Kil;Park, Chan
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
    • /
    • 2004.11a
    • /
    • pp.65-68
    • /
    • 2004
  • A lot of R&D efforts are being concentrated on the development of high performance HTS coated conductors(CC). Unlike the HTS Bi-2223 tape, a variety of processes have been tried to fabricate CC tapes. PLD and MOD are believed to be very effective methods, and high critical currents of long length CC tape have been reported. In this study, we prepared two kinds of YBCO CCs to evaluate electromagnetic property. One is YBCO tape deposited on IBAD template by PLD and the other is AMSC's MOD CC tape Critical current (Ic) in magnetic fields, its angular dependency, and n-value were measured and analyzed. Magnetic field property of Ic was appeared to be different due the fabrication process. MOD tape showed higher in-field property, n-value of both PLD and MOD tapes exponentially decreased with magnetic field. MOD tape showed higher n-value in whole magnetic fields.

  • PDF

Design and fabrication of race-track type field coil for the high temperature superconduction generator

  • Baik, S.K.;Jo, Y.S.;Ha, H.S.;Lee, E.Y.;Jeong, D.Y.;Kwon, Y.K.;Ryu, K.S.;Sohn, M.H.
    • 한국초전도학회:학술대회논문집
    • /
    • v.10
    • /
    • pp.248-251
    • /
    • 2000
  • The fabrication and characteristics of HTS race-track type field coil for generators was carried out. Field coils are composed of 3 pancake coils wound by 37-filamental Bi-2223/Ag-alloy tapes. The winding machine is horizontal type. The critical currents (I$_c$) of the superconducting tapes were measured with variation of bending strain and external magnetic fields. I$_c$ of both whole field coils and 3 pancake coils were measured as a function of temperature. At 77K under the self-field, I$_c$ of whole field coils was 12A, while in the case of middle pancake coil, I$_c$ was 15A. The distribution of magnetic field B was obtained, using 3-D FEM. Our simulation showed that maximums of B${\bot}$A in x-y plane were locally distributed in both the upper and the lower coils. In addition, the fabrication processes and the characteristics of field coil are described.

  • PDF

Effect of the voltage lead configurations on AC Loss Measurement in a Single Layer High-Tc Superconducting Model Cable (전압리드의 배치가 단층 고온초전도 모델케이블의 교류손실 측정에 미치는 영향)

  • 류경우;정재훈;황시돌;김석환
    • The Transactions of the Korean Institute of Electrical Engineers B
    • /
    • v.51 no.12
    • /
    • pp.670-675
    • /
    • 2002
  • AC loss is an important issue in the design of high-T$_{c}$ superconducting Power cables. The cables consists of a number of Bi-2223 tapes wound on a former. In such cables tapes have different critical current characteristics intrinsically. And they are electrically connected to each other and current leads by soldering. These make loss measurements considerably complex, especially for short samples of laboratory size. Special cautions are required in the positioning of voltage leads for measuring the true loss voltage. In this work the at losses in a single layer model cable have been experimentally investigated for different contacts and arrangements of voltage leads. The results show that the losses are not dependent on both arrangements and contact positions of the voltage leads. This implies that loss flux is only in a cylindrical conductor section. The measured losses also agree well with those based on a monoblock model and are independent of frequencies. This means that the measured AC loss of the model cable is purely hysteretic in nature.e.

Optimum Design of Multi-Stacking Current Lead Using HTS Tapes (고온초전도 테이프를 이용한 적층형 전류 도입선의 최적설계)

  • 설승윤;김민수;나필선
    • Progress in Superconductivity and Cryogenics
    • /
    • v.3 no.1
    • /
    • pp.35-39
    • /
    • 2001
  • The optimum cross-sectional area profile of gas-cooled high-temperature superconductor(HTS) current lead is analyzed to have minimum helium boil-off rate. The conventional constant area HTS lead has much higher helium consumption than the optimum HTS lead considered in this study. The optimum HTS lead has variable cross-sectional area to have constant satiety factor. An analytical formula of optimum shape of lead and temperature profile are obtained. For multi-stacking HTS current leads, the optimum tape lengths and minimum heat dissipation rate are also formulated. The developed formulations are applied to the Bi-2223 material, and the differences between constant area, constant safety-factor, and multi-stacking current leads are discussed.

  • PDF

Design of High Temperature Superconducting Magnet with Magnetic Material (자성체를 포함하는 고온초전도 마그네트의 설계)

  • Jo, Young-Sik;Kwon, Young-Kil;Kim, Young-Kyoun;Lee, Geun-Ho;Hong, Jung-Pyo;Ryu, Kang-Sik
    • The Transactions of the Korean Institute of Electrical Engineers B
    • /
    • v.50 no.8
    • /
    • pp.367-373
    • /
    • 2001
  • This paper presents racetrack High Temperature Superconducting (HTS) magnet with iron plates to achieve the maximum current-carrying capacity and the simple shape that can easily be wound and jointed. On the basis of the magnetic field analysis using Biot-Savart's law and 3 Dimensional Finite Element Analysis (3D FEA), this study is focused on the function of iron plates, which is to obtain smaller B${\perp}$, and stress and strain condition of Ag-sheathed Bi-2223 37-filament HTS tapes are considered. Moreover, the measured performance of the magnet with iron plates improved by 50% on the basis of initial magnet.

  • PDF