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Empirical correlation between melting temperature and cohesive energy of binary Laves phases
Journal article   Peer reviewed

Empirical correlation between melting temperature and cohesive energy of binary Laves phases

Chonghe Li, Joo Lim Hoe and Ping Wu
The Journal of physics and chemistry of solids, Vol.64(2), pp.201-212
01/02/2003

Abstract

A. Alloys A. Intermetallic compounds D. Crystal structure D. Phase transitions D. Thermodynamic properties
A list of 143 binary Laves phases with their melting temperature and melting type is collected, and used to study a correlation between melting temperature and cohesive energy. It is found that the melting temperature of Laves phases is roughly proportional to its cohesive energy calculated by Miedema's empirical model from their intrinsic atomic properties. The average predicted error of melting temperature of compounds is as low as 8.0%. This empirical rule is consistent with the result of the universal binding energy theory of solids.

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