Search Results - "Surin, M. I."

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  1. 1

    Progress Towards a REBCO Homopolar Motor With the Gallium-Indium-Tin Sliding Contacts by Naumov, A. V., Polyakov, A. V., Surin, M. I., Shcherbakov, V. I.

    “…Development of homopolar electric machines is a promising superconducting application. A homopolar motor with a 2G high-temperature superconducting (HTSC)…”
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    Journal Article
  2. 2

    High Temperature Superconducting Magnetic System for Neuron Activity Researches by Diev, D. N., Kovalev, I. A., Makarenko, M. N., Naumov, A. V., Polyakov, A. V., Surin, M. I., Shutova, D. I., Shcherbakov, V. I.

    Published in Technical physics (01-12-2023)
    “…The paper describes a high-temperature superconducting magnetic system (HTS SMS) to equip an experimental stand intended for neuron activity researches under…”
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    Journal Article
  3. 3

    High Temperature Superconducting Magnetic System for High Gradient Magnetic Separator by Diev, D. N., Lepehin, V. M., Makarenko, M. N., Polyakov, A. V., Surin, M. I., Shutova, D. I., Shcherbakov, V. I.

    Published in Physics of atomic nuclei (01-12-2018)
    “…High gradient magnetic separation is an effective method for ores enrichment and industrial wastes recycling (including radioactive wastes). The possibilities…”
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    Journal Article
  4. 4

    DEVELOPMENT OF CRYOMAGNETIC SYSTEMS TO CONTROL NEURAL ACTIVITY BY A MAGNETIC FIELD by Naumov, A. V., Kovalev, I. A., Diev, D. N., Olenev, A. O., Polyakov, A. V., Surin, M. I., Shcherbakov, V. I.

    Published in Nanotechnologies in Russia (01-11-2019)
    “…Magnetic field sources are developed and manufactured for experiments in order to activate neuron channels. The designed cryogenic magnetic systems are part of…”
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    Journal Article
  5. 5

    The design and development of high-current leads on the basis of 2G HTS conductors by Ilyin, A. A., Keilin, V. E., Kovalev, I. A., Makarenko, M. N., Naumov, A. V., Novikov, S. I., Novikov, M. S., Polyakov, A. V., Surin, M. I., Shcherbakov, V. I.

    “…The feasibility of creating high-current leads on the basis of second-generation (2G) high-temperature superconductors (HTSs) was demonstrated. A method for…”
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    Journal Article
  6. 6

    Test results of 12/18 kA ReBCO coated conductor current leads by Kovalev, I.A., Surin, M.I., Naumov, A.V., Novikov, M.S., Novikov, S.I., Ilin, A.A., Polyakov, A.V., Scherbakov, V.I., Shutova, D.I.

    Published in Cryogenics (Guildford) (01-07-2017)
    “…A pair of hybrid current leads (brass + stacked & soldered ReBCO tapes) rated for 12 kA in steady state and for up to 18 kA at pulsed over current conditions…”
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    Journal Article
  7. 7

    HTS current leads for the NICA accelerator complex by Diev, D.N., Galimov, A.R., Ilin, A.A., Khodzhibagiyan, H.G., Kovalev, I.A., Makarenko, M.N., Naumov, A.V., Novikov, M.S., Novikov, S.I., Polyakov, A.V., Shcherbakov, V.I., Shevchenko, S.A., Shutova, D.I., Surin, M.I.

    Published in Cryogenics (Guildford) (01-09-2018)
    “…•Two 12 kA and 20 10.5 kA 1G HTS current leads were manufactured for the NICA accelerator.•An original stack-and-soldering technique for 1G HTS tapes was…”
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    Journal Article
  8. 8

    Results of preliminary testing of blip and cancellation coils for the Samsung Superconductor Test Facility (SSTF) by Baang, S., Lee, S., Chung, W., Kim, K., Wang, Q., Alexeev, M.P., Anashkin, O.P., Ivanov, D.P., Keilin, V.E., Lysenko, V.V., Miklyaev, S.M., Shchegolev, I.O., Shcherbakov, V.I., Shevchenko, S.A., Shugaev, I.O., Surin, M.I.

    “…The background magnet system of SSTF (Samsung Superconductor Test Facility) for KSTAR (Korea Superconducting Tokamak Advanced Research) will be equipped with a…”
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    Journal Article Conference Proceeding
  9. 9

    The comparison of active and passive cancellation coils for SSTF by Baang, S., Baek, S., Chu, Y., Kim, K., Kim, M., Kim, Y., Lee, Y., Wang, Q., Ivanov, D.P., Keilin, V.E., Miklyaev, S.M., Shchegolev, I.O., Surin, M.I.

    “…The Samsung superconductor test facility (SSTF) at SAIT (Samsung Advanced Institute of Technology, Taejon, Korea) is to be equipped with a 740 mm inner…”
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    Journal Article
  10. 10

    The conductors of the 50 kA superconducting transformer for SSTF by Baang, S., Keilin, V.E., Kim, K., Kim, S., Kim, Y.J., Kovalev, I.A., Kruglov, S.L., Park, H., Rychagov, A.V., Shchegolev, I.O., Surin, M.I., Sytnikov, V.E., Wang, Q., Yoon, C.S.

    Published in Physica. C, Superconductivity (01-05-2001)
    “…The 50 kA transformer for Samsung Superconductor Test Facility (SSTF), which will charge the Korean Superconducting Tokamak Advanced Research cable-in-conduit…”
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    Journal Article
  11. 11

    Superconducting magnet systems with induction up to 16.2 T at 4.2 K by Keilin, V.E., Miklyaev, S.M., Surin, M.I., Shevchenko, S.A.

    Published in IEEE transactions on magnetics (01-01-1992)
    “…Describes the specific features of design, the manufacturing technique, and test results for some superconducting magnet systems (SMSs) developed and produced…”
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  12. 12
  13. 13

    Compact high field superconducting coil by Keilin, V.E., Miklyaev, S.M., Surin, M.I., Shevchenko, S.A.

    “…In the frame of the program to fabricate compact laboratory superconducting high-field magnets (of order of 18 T @ 4.2 K and 20 T @ 1.8 K) a 17.7 T @ 4.2 K…”
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  14. 14

    The superconducting transformer of the Samsung Superconductor Test Facility (SSTF) by Sungkeun Baang, Hyunjung Choi, Keeman Kim, Sangbo Kim, Yongjin Kim, Hyunki Park, Qiuliang Wang, Boev, A.I., Ivanov, D.P., Keilin, V.E., Kovalev, I.A., Kruglov, S.L., Lysenko, V.V., Shchegolev, I.O., Shcherbakov, V.I., Shugaev, I.O., Surin, M.I.

    “…In the frames of designing the SSTF (Samsung Superconductor Test Facility) for the KSTAR (Korea Superconducting Tokamak Advanced Research), the 50 kA…”
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  15. 15

    Development and test results of a double 0.5 MJ coil SMES system by Keilin, V.E., Agalakov, V.P., Anashkin, O.P., Britousov, N.N., Dudarev, A.V., Krivykh, A.V., Kulikov, A.S., Lysenko, V.V., Miklyaev, S.M., Shevchenko, S.A., Surin, M.I.

    Published in IEEE transactions on magnetics (01-07-1996)
    “…The design and test results of a SMES system built for the Korea Electrical Power Company are described. The system consists mainly of two superconducting (SC)…”
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  16. 16

    A prototype of a superconducting magnet for a 170-GHz gyrotron by Surin, M. I., Keilin, V. E., Miklyaev, S. M., Shevchenko, S. A.

    “…Within the framework of the “International Thermonuclear Experimental Reactor” (ITER) program, a prototype of a superconducting magnet for a 170-GHz gyrotron…”
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  17. 17

    A Prototype Superconducting Magnet for 170 GHz Gyrotrons by Surin, M.I., Fix, A.S., Keilin, V.E., Kudriavsev, N.I., Miklyaev, S.M., Shevchenko, S.A., Sokolov, E.V.

    “…In the frame of ITER program a prototype superconducting magnet for 170 GHz Gyrotrons was designed, manufactured and tested. The operating field (7.17 T in the…”
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    The background magnets of the Samsung Superconductor Test Facility (SSTF) by Sungkeun Baang, Keeman Kim, Yongjin Kim, Hyunki Park, Sangbo Kim, Qiuliang Wang, Alexeev, M.P., Anashkin, O.P., Ivanov, D.P., Keilin, V.E., Kovalev, I.A., Kruglov, S.L., Lysenko, V.V., Miklyaev, S.M., Shchegolev, I.O., Shcherbakov, V.I., Shevchenko, S., Shugaev, I.O., Surin, M.I.

    “…The background magnet system of SSTF (Samsung Superconductor Test Facility) for KSTAR (Korea Superconducting Tokamak Advanced Research) is now under design…”
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    Journal Article Conference Proceeding