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Advances in Cryogenic Engineering Materials - download pdf or read online

By J. W. Morris Jr. (auth.), R. P. Reed, A. F. Clark (eds.)

The 6th foreign Cryogenic fabrics convention (ICMC) was once hung on the campus of Massachusetts Institute of expertise in Cambridge in col­ laboration with the Cryogenic Engineering convention (CEC) on August 12-16, 1985. The complementary software and the interdependence of those dis­ ciplines foster the convention. Its show up goal is sharing the newest advances in low temperature fabrics technology and know-how. both im­ portant, components of wanted study are pointed out, prioriti-es for brand spanking new study are set, and an elevated appreciation of interdisciplinary, interlaboratory, and overseas cooperation ensues. The luck of the convention is the results of the. capable management and difficult paintings of many of us: S. Foner of M.I.T. coordinated ICMC efforts as its convention Chairman. A. I. Braginski of Westinghouse R&D heart deliberate this system with the help of Cochairmen E. N. C. Dalder of Lawrence Livermore nationwide Laboratory, T. P. Orlando of M.I.T., D. O. Welch of Brookhaven nationwide Laboratory, and various different committee participants. A. M. Dawson of M.I.T., Chairman of neighborhood preparations, and G. M. Fitzgerald, Chairman of distinctive occasions, skillfully controlled the joint convention. The contributions of the CEC Board, and especially its convention chairman, J. L. Smith, Jr. of M.I.T., to the association of the joint convention also are gratefully acknm.ledged.

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Thus, their performance is 11mi ted by their physical properties. The electromagnetic farce increases proportionally with the size of a coil. The stress design margins for a large coil are automatically limited by present material properties. 26 Necessity of Structural Alloy Development It can be now understood that for realization of a large, high-field superconducting coils, especially coils for fusion, structural material development is as important as superconducting material development. REQUIREMENT FOR NEW CRYOGENIC ALLOYS The high-current Nb 3Sn conductor technique is well established for the high-field generation in a large bore, since 12-T generation was demonstrated with JAERI's Test Module Coil in June 1985.

P. Soldatov, V. D. Natsik and V. V. Abraimov, Phys. Stat. Solidi S9(A) :377 (1980). 45. L. D. Roth and E. N. C. Dalder, Creep of 304LN and 316L Stainless Steels at Cryogenic Temperatures, in "Advances in Cryogenic Engineering Materials," vol. 32, Plenum Press, New York (1986). 46. R. L. Tobler, D. T. Read and R. P. Reed, in "Materials Studies for Magnetic Fusion Energy Applications at Low Temperatures - II," NBSIR79-1609, NBS, Boulder, Colorado (1979) r. 81. 22 REQUIREMENTS FOR STRUCTURAL ALLOYS FOR SUPERCONDUCTING MAGNET CASES S.

23. J. W. , C. K. Syn, J. 1. Kim and B. Fultz, in "Proceedings, Interna t ional Conference on tfartens itic Transformations," Cambridge, llass. (1979). 24. H. J. Kim, Y. H. Kim and J. W. , Metall. Trans. (in press). 25. S. Jin, J. W. Horris, Jr. and V. F. Zackay, Metall. Trans. 6A:129 (1975). 26. H. J. Kim and J. W. , Lawrence Berkeley Laboratory, Unpublished Research (1985). 27. J. Glazer, S. L. Verzasconi, E. N. C. Dalder, W. Yu, R. A. Emigh, R. O. Ritchie and J. W. , Cryogenic Mechanical Properties of AI-Cu-Li-Zr Alloy 2090, in "Advances in Cryogenic Engineering Materials," vol.

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