High Temperature Superconducting Magnetic Levitation

(やまだぃちぅ) #1
References Ë 57

[138]Bartolomé E, Roa JJ, Bozzo B, Segarra M, Granados X. Effective silver-assisted welding
of YBCO blocks: mechanical versus electrical properties. Supercond Sci Technol.
2010;23(4):045013.
[139]Fujimoto H, Teshima H, Morita M. Improvement of microstructure and mechanical properties
of large single domain GdBaCuO superconductor with low void density. Physica C.
2010;470(22):S23–S25.
[140]Koblischka-Veneva A, Sakai N, Tajima S, Murakami M. In: Cardwell DA, Ginley DS, editor.
Handbook of superconducting materials Vol I: Superconductivity, materials and processes,
Institute of Physics Publishing; 2003. p. 911.
[141]Tomita M, Murakami M, Katagiri K. Reliability of mechanical properties for bulk superconduc-
tors with resin impregnation. Physica C. 2002;378–381(5):783–787.
[142]Roa JJ, Morales M, Martinez M, Capdevila XG, Segarra M. Curva tensión-deformación
mediante indentación esférica para materiales cerámicos superconductores de YBCO-TSMG.
Anales de Mecanica de la Fractura. 2009;26(2):495.
[143]Fujimoto H. Preparation and mechanical properties of large single domain GdBaCuO
superconductor with low void density. IEEE Trans Appl Supercond. 2009;19(3):2933–2936.
[144]Fujimoto H, Murakami A. Fracture toughness properties of Gd123 superconducting bulks.
Physics procedia. 2012;36:458–462.
[145]Murakami A, Miyata H, Hashimoto R, Otaka K, Katagiri K, Iwamoto A. Mechanical properties of
low porosity Dy123 bulks with different Dy211 content. Physica C.2009;469(15):1207–1210.
[146]Murakamia A, Otakab K, Miurab T, Iwamoto A. Effects of Pt content on mechanical properties
of Dy123 bulks physics procedia. 2012;36:551–556.
[147]Murakami A, Fujimoto H, Iwamoto A. Low temperature mechanical properties of RE–
Ba–Cu–O large single-grain Bulk 150 mm in diameter. IEEE Trans on Appl Supercond.
2013;23(3):6800505–6800505.
[148]Roa JJ, Jiméez-Piqué E, Díz J, Morales M, Calleja A, Segarra M. Corrosion induced degradation
of textured YBCO under operation in high humidity conditions. Surface & Coatings
Technology. 2012;206(19–20):4256–4261.
[149]Wang JS, Wang SY, Zeng YW, Huang H, Luo F. The first man-loading high temperature
superconducting Maglev test vehicle in the world. Physica C. 2002; s378381 (1):809–814.
[150]Lange F. The effect of rates of change of magnetic field and of temperature on flux jumps in
Nb 3 Sn hollow cylinders. Cryogenics. 1965;5(3):143–145.
[151]Rabinowitz M, Arrowsmith HW, Dahlgren SD. Dependence of maximum trappable field on
superconducting Nb 3 Sn cylinder wall thickness. Appl Phys Lett. 1977;30(11):607–609.
[152]Takizawa T, Murakami M (Eds). Critical current in superconductors. Tokyo. Nihon University
College of Humanities and Sciences. Fuzambo International; 2005.
[153]Murakami M. Materials developments and applications of bulk RE–Ba–Cu–O superconduc-
tors.Berlin. In: Narlikar A, editor. Frontiers in superconducting materials, Springer Verlag;



  1. 569–884;81(2):481–488.
    [154]Oka T, Yokoyama K, Fujishiro H, Noto K. Thermal and magnetic behaviors of a melt-textured
    superconducting bulk magnet in the zero-field-cooling magnetizing process. Supercond Sci
    Technol. 2009;22(6):065014
    [155]Yanagi Y, Itoh Y, Yoshikawa M, Oka T, Hosokawa T, Ishihara H, et al. Trapped field distribution
    on Sm–Ba–Cu–O bulk superconductor by pulsed-field magnetization. Berlin. Springer Verlag.
    2000;470–472.
    [156]Sander M, Sutter U, Koch R, Klaser M. Pulsed magnetization of HTS bulk parts at T<77 K.
    Supercond Sci Technol. 2000;13(6):841.
    [157]Fujishiro H, Tateiwa T, Fujiwara A, Oka T, Hayashi H. Higher trapped field over 5 Ton HTSC bulk
    by modified pulse field magnetizing. Physica C Supercond. 2006;s445–448:334–338.

Free download pdf