Hostname: page-component-84b7d79bbc-g5fl4 Total loading time: 0 Render date: 2024-07-26T19:27:56.135Z Has data issue: false hasContentIssue false

Synthesis of Nickel and Iron Ultrafine Powders and Mechanical Properties of Their Compacts

Published online by Cambridge University Press:  15 February 2011

M. I. Alymov
Affiliation:
Balkov Institute of Metallurgy Russian Academy of Sciences, Leninsky pr. 49, 117334 Moscow, Russia
O. N. Leontieva
Affiliation:
Balkov Institute of Metallurgy Russian Academy of Sciences, Leninsky pr. 49, 117334 Moscow, Russia
M. M. Myshilyaev
Affiliation:
Balkov Institute of Metallurgy Russian Academy of Sciences, Leninsky pr. 49, 117334 Moscow, Russia
Get access

Abstract

Nickel and iron ultraflne powders have been produced by the method of hydrogen reduction of the low-water hydroxides obtained by geterogeneous interaction between solid salt and alkaline solution. Suggested method allows to obtain ultrafine powders with narrow particle size distribution and low impurity contents. Bulk samples based on nickel and iron ultrafine powders were produced by hot Isostatic pressing and high-temperature gas extrusion methods.

Type
Research Article
Copyright
Copyright © Materials Research Society 1995

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

1. Glelter, H., Nanostructured Mater. 1, 1 (1992).Google Scholar
2. Schaefer, H.E., Wurschum, R., Birringer, R. and Gleiter, H., J. Less-Common Metals, 140, 161 (1988).Google Scholar
3. Koch, C.C. and Cho, Y.S., Nanostructured Mater. 1, 207 (1992).Google Scholar
4. Sundaresan, R. and Froes, F.H., J. Metals, 39, 22 (1987).Google Scholar
5. Valiev, R.Z., Mulyukov, R.R. and Ovchinnikov, V.V., Philos. Mag. Letters. 62, 253 (1990).Google Scholar
6. Nieman, G.W., Weertman, J.R. and Siegel, R.W., Nanostructured Mater. 1, 185 (1992).Google Scholar
7. Leontleva, O.N., Tregubova, I.V. and Alymov, M.I., Phisika i chimlya obrabotki materialov, 5, 167 (1993).Google Scholar
8. Hayashi, K. and Etoh, H., Mater. Trans. 30, 925 (1989).Google Scholar
9. Babichev, L., Babushkina, N., Bratkovskiy, L. et al., Physical Values: Reference Book, ed. Grigoriev, I., Meylikhov, E., (Energoatomizdat, Moscow, 1991), p. 1232.Google Scholar