By H. Kumakura, T. Hasegawa, H. Kobayashi, H. Kitaguchi, K. Togano, H. Maeda (auth.), Richard P. Reed, Fred R. Fickett, Leonard T. Summers, M. Stieg (eds.)
Superconductors: High-Temperature Superconductors: houses. High-Temperature Superconductors: Processing. High-Temperature Superconductors: functions. High-Temperature Superconductors: motion pictures and units. Cryconductors and Stabilizers. Low-Temperature Superconductors: AC Loss. Low-Temperature Superconductors: balance. Cryocooler fabrics. Cryoconductors. Low-Temperature Superconductors NbTi. Low-Temperature Superconductors: A15 Compounds. Structural fabrics: Nonmetallic Composites: homes and Radiation Resistance. Resins: houses and Radiation Resistance. Austenitic Steels: houses and Magnetic box results. Nickel-Base Alloys: houses. Aluminum Alloys: houses. unique Low-Temperature Mechanical-Property Phenomena. Coil Pack, Divertor, and Diode fabrics and Analyses. 183 articles. Index.
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Extra info for Advances in Cryogenic Engineering Materials : Volume 40, Part A
C. Grivel, A. Jeremie, A. Perin, A. Pollini, and R. Flükiger, "A model for the critical current in (Bi, Pb)zSrzCazCu30x silver-sheathed tapes," PhyiscaC 205:329 (1993). 11. H. Yamasaki, K. Endo, S. Kosaka, M. Umeda, S. Misawa, S. Yoshida, andK. Kajimura, "Magnetic-field angle dependence of the critical current density in high-quality BizSrzCazCu30x thin films" IEEE Trans. Appl. Superconductivity 3:1536 (1993). 16 ANISOTROPY OF CRITICAL CURRENT IN (Bi,Pb)-Sr-Ca-Cu-0 SILVER-SHEA THED TAPES ·t M.
Proc. 251, ed. Y. H. Kao et al. (American Institute ofPhysics, New York, 1992), p. 6. 32 ANISOTROPY OF IRREVERSIBILITY LINE IN A SUPERCONDUCTING Bi-2223 TAPE WIRE T. Matsushita, 1 E. S. Otabe, 1 M. Kiuchi, 1 T. Hikata2 and K. Sato2 1 Department of Computer Science and Electronics, Kyushu Institute of Technology, 680-4 Kawazu, Iizuka 820, Japan 2 0saka Research Laboratories, Sumitomo Electric Industries, Ltd. 1-1-3 Shimaya, Konohana-ku, Osaka 554, Japan INTRODUCTION Bi-based high temperature superconductors are easily textured by mechanical treatments such as pressing or rolling and are able to transport high current density without being influenced appreciably by weak links.
Zafar, ICMC Conference, Abuquerque NM, July 12-16, 1993; also G. N. Riley Jr. and W. L. Carter, Bull American Ceramic Society 72, 91 (1993). 6. M. P. Maley, P. J. Kung, 1. Y. Coulter, W. L. Carter, G. N. Riley Jr and M. E. McHenry, Phys Rev B 45, 7566 (1992). 7. LN. Bulaevsky, L. L. Daemen, M. P. Maley and J. Y. Coulter, Physica C, tobe published. 8. L. Civale, A. D. Marwick, T. K. Worthington, M. A. Kirk, J. R. Thompson, L. Krusin-Elbaum, Y. Sun, J. R. Clem and F. Holtzberg, Phys. Rev. Lett. 67, 648 (1991).