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The Connection Between Local Icosahedral Order in Metallic Liquids and the Nucleation of Ordered Phases

Authors :
Kelton, K. F
Gangopadhyay, A. K
Lee, G. W
Hyers, R. W
Rathz, T. J
Rogers, J. R
Robinson, M. B
Schenk, T
Simonet, V
Holland-Moritz, D
Curreri, Peter A
Publication Year :
2002
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2002.

Abstract

Over fifty years ago, David Turnbull showed that the temperature of many metallic liquids could be decreased far below their equilibrium melting temperature before crystallization occurred. To explain those surprising results, Charles Frank hypothesized that the local structures of undercooled metallic liquids are different from those of crystal phases, containing a significant degree of icosahedral order that is incompatible with extended periodicity. Such structural differences must create a barrier to the formation crystal phases, explaining the observed undercooling behavior. If true, the nucleation from the liquid of phases with extended icosahedral order should be easier. Icosahedral order is often favored in small clusters, as observed recently in liquid-like clusters of pure Pb on the (111) surface of Si(3), for example. However, it has never been shown that an increasing preference for icosahedral phase formation can be directly linked with the development of icosahedral order in the undercooled liquid. Owing to the combination of very recent advances in levitation techniques and the availability of synchrotron X-ray and high flux neutron facilities.

Details

Language :
English
Database :
NASA Technical Reports
Publication Type :
Report
Accession number :
edsnas.20030001049
Document Type :
Report