Prediction of solid-state amorphization in binary metal systems
Citation
C. Lin et al., Prediction of solid-state amorphization in binary metal systems, PHYS REV B, 61(23), 2000, pp. 15649-15652
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
PHYSICAL REVIEW B
SICI code
0163-1829(20000615)61:23<15649:POSAIB>2.0.ZU;2-Z
Abstract
A criterion is proposed for predicting the possibility of solid-state amorp
hization in the binary metal systems based on thermodynamic and kinetic con
siderations. A thermodynamic factor Delta F is defined to be the Gibbs free
-energy difference between the initial multilayered films and the resultant
amorphous phase, while a kinetic factor kappa is defined to correlate not
only with the atomic volume ratio but also with the melting point differenc
e of the constituent metals. It turns out that if kappa Of a system is grea
ter than a critical value of 0.6 together with a negative Delta F, solid-st
ate amorphization is likely to take place in the system. The prediction is
relevantly compatible with the experimental observations in the previously
studied systems featuring either positive or negative heat of mixing as wel
l as various values of atomic size difference.