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Preparation and properties of spray dried precursor powder for melt-processed bulk YBCO ceramics

Published online by Cambridge University Press:  31 January 2011

Wai Lo
Affiliation:
IRC in Superconductivity, University of Cambridge, Madingley Road, Cambridge, CB3 0HE, United Kingdom
David A. Cardwell
Affiliation:
IRC in Superconductivity, University of Cambridge, Madingley Road, Cambridge, CB3 0HE, United Kingdom
Shiang-Lung Dung
Affiliation:
IRC in Superconductivity, University of Cambridge, Madingley Road, Cambridge, CB3 0HE, United Kingdom
Richard G. Barter
Affiliation:
IRC in Superconductivity, University of Cambridge, Madingley Road, Cambridge, CB3 0HE, United Kingdom
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Abstract

YBa2Cu3O7−δ precursor powder suitable for the fabrication of melt-processed ceramic has been prepared by spray drying and subsequent calcination. The dehydration and decomposition processes in the nitrate-based spray-dried powder and the formation processes of the YBa2Cu3O7−δ and Y2BaCuO5 phases have been studied in detail using thermal analysis and powder x-ray diffractometry. The morphology, microstructure, and size distribution of the particles in the calcined powder have been investigated using high resolution scanning electron microscopy and particle size analysis and found to contain a significant proportion of submicron sized particles of Y2BaCuO5. Melt-processed samples prepared using the spray-dried powder have been observed to exhibit a significantly finer distribution of the 211 phase than is typically obtained in similar specimens prepared via a mixed oxide route. This provides direct evidence of the suitability of spray-dried precursor powder for the fabrication of large grain, high Jc melt-processed YBCO ceramics.

Type
Articles
Copyright
Copyright © Materials Research Society 1996

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References

REFERENCES

1.Campbell, A. M., Cardwell, D. A., Ashworth, S. P., and Coombs, T. A., IRC Research Review (University of Cambridge, U.K., 1994), p. 174.Google Scholar
2.Fukuyama, H., Seki, K., Takizawa, T., Endou, S., Murakami, M., Takaichi, H., and Koshizuka, N., Advances in Superconductivity 5, 1313 (1993).Google Scholar
3.Takahata, R., Ueyama, H., and Kubo, A., Advances in Superconductivity 5, 1309 (1993).Google Scholar
4.Johnson, J. D., Zheng, D-N., and Campbell, A. M., IRC in Superconductivity Research Review (University of Cambridge, U.K., 1994), p. 165.Google Scholar
5.Jones, A. R., Doyle, R. A., Blunt, F. J., and Campbell, A. M., Physica C 196, 6367 (1992).CrossRefGoogle Scholar
6.Murakami, M., Supercond. Sci. Technol. 5, 185203 (1992).CrossRefGoogle Scholar
7.Salama, K., Selvamanickam, V., and Lee, D. F., Processing and Properties of High-Tc Superconductors, Vol. 1: Bulk Materials, edited by Jin, S. (World Scientific Press, Singapore, 1993), pp. 155212.CrossRefGoogle Scholar
8.Morita, M., Takebayashi, S., Tanaka, M., Kimura, K., Miyamoto, K., and Sawano, K., Advances in Superconductivity III, Proc. 3rd Int. Symp. Sup., Sendai, November (1990) pp. 733736.Google Scholar
9.Murakami, M., Morita, M., Doi, K., and Miyamoto, K., Jpn. J. Appl. Phys. 28, 1189 (1989).CrossRefGoogle Scholar
10.Sengupta, S., Shi, D., Wang, Z., Biondo, A. C., Balachandran, U., and Goretta, K. C., Physica C 199, 43 (1992).CrossRefGoogle Scholar
11.Murakami, M., Gotoh, S., Koshizuka, N., Tanaka, S., Matsushita, T., Kambe, S., and Kitazawa, K., Cryogenics 30, 390 (1990).CrossRefGoogle Scholar
12.Yamaguchi, K., Murakami, M., Fujimoto, H., Gotoh, S., Oyama, T., Shiohara, Y., Koshizuka, N., and Tanaka, S., J. Mater. Res. 6, 1404 (1991).CrossRefGoogle Scholar
13.Ossandon, J. G., Thompson, J. R., Christen, D. K., Sales, B. C., Kerchner, H. R., Thomson, J. O., Sun, Y. R., Lay, K. W., and Tkaczyk, L. J., Phys. Rev. B 45, 12534 (1992).CrossRefGoogle Scholar
14.Yan, Y., Cardwell, D. A., Campbell, A.M., and Stobbs, W.M., unpublished.Google Scholar
15.Niou, C. S., Ma, Y. T., Li, W. P., Javapour, J., and Murr, L. E., J. Mater. Sci.: Mater. Electronics 3, 181 (1992).Google Scholar
16.Shieh, S. H. and Thomson, W. J., Physica C 204, 135 (1992).CrossRefGoogle Scholar
17.Hibino, A. and Watanabe, R., J. Mater. Sci.: Mater. Electronics 1, 13 (1990).Google Scholar
18.Coppa, N. V., Myer, G. H., Salomon, R. E., Bura, A., O'Reilly, J. W., Crow, J. E., and Davis, P. K., J. Mater. Res. 7, 2017 (1992).CrossRefGoogle Scholar
19.Lacour, C., Laher-Lacour, F., Dubon, A., Lagues, N., and Mocaer, Ph., Physica C 167, 287 (1990).CrossRefGoogle Scholar
20.Hoste, S., Vlaeminck, H., De Ryck, P. H., Persyn, F., Mouton, R., and Van der Kelen, G. P., Supercond. Sci. Technol. 1, 239 (1989).CrossRefGoogle Scholar
21.Wang, Y. L., Tan, Z.Q., Zhu, Y., Moodenbaugh, A. R., and Suenaga, M., J. Mater. Res. 7, 3175 (1992).CrossRefGoogle Scholar
22.Biswas, P., Zhou, D., Zitkovsky, I., Blue, C., and Boolchand, P., Mater. Lett. 8, 233 (1989).CrossRefGoogle Scholar
23.Sawano, K., Morita, M., Tanaka, M., Sasaki, T., Kimura, K., Takebayashi, S., Kimura, M., and Miyamoto, K., Jpn. J. Appl. Phys. 30, L1157 (1991).CrossRefGoogle Scholar
24.Cardwell, D. A. and Campbell, A. M., IRC in Superconductivity Research Review (University of Cambridge, U.K., 1994), p. 145.Google Scholar
25.Aselage, T. and Keefer, K., J. Mater. Res. 3, 1279 (1989).CrossRefGoogle Scholar
26.Barus, A. M. M. and Taylor, J.A.T., Physica C 225, 347 (1994).CrossRefGoogle Scholar
27.Lindemar, T. B., Washburn, F. A., MacDougall, C. S., Feenstra, R., and Cavin, O. B., Physica C 178, 93 (1991).CrossRefGoogle Scholar
28.Ullman, J. E., McCallum, R. W., and Verhoeven, J. D., J. Mater. Res. 4, 752 (1989).CrossRefGoogle Scholar
29.Tanaka, J., Kitaguchi, H., Osaka, A., Miura, Y., Takahashi, K., Tanako, M., Ikeda, Y., Bando, Y., Yamamoto, N., Oka, Y., and Tomii, Y., Jpn. J. Appl. Phys. 26, L1707 (1987).Google Scholar
30.CRC Handbook of Chemistry and Physics, 71st ed., edited by Lide, D. R. (CRC Press, Boca Raton, FL, 1990), pp. 448.Google Scholar