Search Results - "WATAZAWA, K"

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  1. 1

    Reliability of Bi-2223/AgAu Current Leads for Cryocooled Superconducting Magnet by Tsurudome, T., Yoshida, J., Ookubo, H., Mikami, Y., Mitsubori, H., Kato, T., Sakuraba, J., Watazawa, K.

    “…A current lead for a cryocooled superconducting magnet (CSM) was designed and fabricated using a high-temperature superconductor (HTS) tape, which could easily…”
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    Journal Article Conference Proceeding
  2. 2

    Improvement of a Large Bore Cryogen-Free Superconducting Magnet for a Hybrid Magnet by Tsurudome, T., Mikami, Y., Hashimoto, A., Mitsubori, H., Ookubo, H., Sakuraba, J., Kato, T., Watazawa, K., Watanabe, K., Awaji, S., Oguro, H., Hanai, S., Ioka, S.

    “…A 360-mm room-temperature bore cryogen-free superconducting magnet (CSM), consisting of Nb 3 Sn coils and NbTi coils, for a hybrid magnet (HM) has generated…”
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    Journal Article
  3. 3

    11 T liquid helium-free superconducting magnet by Watanabe, K., Awaji, S., Sakuraba, J., Watazawa, K., Hasebe, T., Jikihara, K., Yamada, Y., Ishihara, M.

    Published in Cryogenics (Guildford) (1996)
    “…An 11 T liquid helium-free superconducting magnet designed at 6 K in vacuum using high temperature superconducting current leads was developed. The NbTi Nb 3Sn…”
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    Journal Article
  4. 4
  5. 5

    Development of a 7 tesla superconducting wiggler by Mikami, Y., Yamada, S., Matsubara, Y., Watazawa, K., Ogawa, S.

    “…A 7 T three poles superconducting wiggler has been constructed to be used as a light source in AURORA-2D, a 700 MeV compact SR ring. The wiggler is cooled by…”
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    Journal Article Conference Proceeding
  6. 6

    A cryocooler cooled 6 T NbTi superconducting magnet with room temperature bore of 220 mm by Watazawa, K., Sakuraba, J., Hata, F., Hasebe, T., Chong, C.K., Yamada, Y., Watanabe, K., Awaji, S., Fukase, T.

    Published in IEEE transactions on magnetics (01-07-1996)
    “…We are developing a cryocooler cooled 6 T superconducting magnet without liquid helium and/or liquid nitrogen. This magnet, which is directly cooled by two 4 K…”
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    Journal Article
  7. 7

    A cryocooler cooled 5 T superconducting magnet with a horizontal and vertical room temperature bore by Jikihara, K., Watazawa, K., Mitsubori, H., Sukuraba, J., Sugizaki, Y., Hasebe, T., Okubo, H., Ishihara, M., Watanabe, K.

    “…We designed and constructed a cryocooler cooled 5 T superconducting magnet with a horizontal room temperature bore of 50 mm and a vertical room temperature…”
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    Journal Article Conference Proceeding
  8. 8

    Cryocooled large bore superconducting magnet for a hybrid magnet system employing highly strengthened (Nb,Ti)(3)Sn wires with CuNb stabilizer by Watanabe, K, Awaji, S, Motokawa, M, Iwasaki, S, Goto, K, Sadakata, N, Saito, T, Watazawa, K, Jikihara, K, Sakuraba, J

    “…Employing newly developed high strength and good conductive (Nb,Ti)(3)Sn wires with CuNb composite stabilizer, it is possible to reduce a coil weight of a…”
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    Journal Article
  9. 9

    Cryocooled large bore superconducting magnet for a hybrid magnet system employing highly strengthened (Nb,Ti)/sub 3/Sn wires with CuNb stabilizer by Watanabe, K., Awaji, S., Motokawa, M., Iwasaki, S., Goto, K., Sadakata, N., Saito, T., Watazawa, K., Jikihara, K., Sakuraba, J.

    “…Employing newly developed high strength and good conductive (Nb,Ti)/sub 3/Sn wires with CuNb composite stabilizer, it is possible to reduce a coil weight of a…”
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    Journal Article
  10. 10

    Cryocooled large bore superconducting magnet for a hybrid magnet system employing highly strengthened (Nb,Ti) sub(3)Sn wires with CuNb stabilizer by Watanabe, K, Awaji, S, Motokawa, M, Iwasaki, S, Goto, K, Sadakata, N, Saito, T, Watazawa, K, Jikihara, K, Sakuraba, J

    “…Employing newly developed high strength and good conductive (Nb,Ti) sub(3)Sn wires with CuNb composite stabilizer, it is possible to reduce a coil weight of a…”
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    Journal Article
  11. 11

    Cryocooler cooled 6T NbTi superconducting magnet with room temperature bore of 220 mm by Watazawa, K, Sakuraba, J, Hata, F, Hasebe, T, Chong, C K, Yamada, Y, Watanabe, K, Awaji, S, Fukase, T

    Published in IEEE transactions on magnetics (01-01-1996)
    “…We are developing a cryocooler cooled 6 T superconducting magnet without liquid helium and/or liquid nitrogen. This magnet, which is directly cooled by two 4 K…”
    Get full text
    Journal Article
  12. 12