By E. N. Cameron (auth.), A. F. Clark, R. P. Reed (eds.)
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Extra resources for Advances in Cryogenic Engineering Materials : Volume 26
Intermediate-size heat treatments are now more common, however. Critchlow, Gregory, and Zeitlin clearly identified the benefits of extending the heat-treatment time at some 4 to 6 times the final wire size for a Nb 45 wt. % Ti alloy C6 ]. 5 times the final wire diameter (Fig. 7). 2 K) to 1800 to 2000 A/mm2 in present Brookhaven and Fermilab conductors. A major difficulty in assessing the full potential of these alloys is the general lack of transmission electron microscopy work since that of Neal et al.
11. R. G. Hampshire and M. T. Taylor, J. Phys. F 2:89 (1972). 12. D. F. Neal, A. C. Barber, A. Woolcock, and J. A. F. Gidley, Acta Metall. 19:143 (1971). 13. A. F. Clark and R. L. Powell, Cryogenics 18:137 (1978). 14. B. P. Strauss, R. H. Remsbottom, and R. H. Flora, in Proceedings of 7th Symposium on Engineering Problems of Fusion Research, IEEE Publication No. 77CHI267-4-NPS 1271, Institute of Electrical and Electronic Engineers, New York (1977), p. 29. 15. D. A. Colling, T. A. de Winter, W. K.
West and D. C. Larbalestier, to be published. J. , San Diego, California, private communication. A-3 THE MAGNETIC CHARACTER OF AUSTENITIC STAINLESS STEELS* E. W. Collings Battelle Memorial Institute, Columbus, Ohio INTRODUCTION The results of a series of low-temperature magnetic and calorimetric studies relating to the magnetic character of austenitic stainless steels are summarized and discussed. Twelve members of both the AISI 300 series and the proprietary Nitronic series, as well as other alloys, have been investigated from time to time in collaboration with J.
Advances in Cryogenic Engineering Materials : Volume 26 by E. N. Cameron (auth.), A. F. Clark, R. P. Reed (eds.)