TIME-SCALING PROPERTIES AND CRYSTALLIZATION KINETICS OF AMORPHOUS-ALLOYS
Citation
Y. Takahara, TIME-SCALING PROPERTIES AND CRYSTALLIZATION KINETICS OF AMORPHOUS-ALLOYS, Materials transactions, JIM, 37(9), 1996, pp. 1453-1457
Categorie Soggetti
Metallurgy & Metallurigical Engineering","Material Science
SICI code
0916-1821(1996)37:9<1453:TPACKO>2.0.ZU;2-M
Abstract
We have investigated the time-scaling properties of the isothermal cry
stallization kinetics for amorphous Co75B25, Fe80B20,Fe40Ni40B20,Fe81B
17Si2 and Fe60Ni20B10Si10 alloys by differential scanning calorimetry.
All the alloys exhibit a single crystallization stage. The time scale
was defined as the time when the crystallization has reached half com
pletion. All the time-scaled crystallization curves of each alloy fall
onto a single muster curve of the Johnson-Mehl-Avrami form in each ca
se. The Avrami exponent indicates that the crystallization process of
the Fe60Ni20B10Si10 is governed by interface-controlled growth with a
constant nucleation rate, whereas those of the other alloys are by int
erface-controlled growth of a fixed number of nuclei. The Williams-Lan
del-Ferry equation based on a free-volume consideration gives a univer
sal function of time-scaling parameter as a function of temperature fo
r all the alloys. This suggests that we have to take into account the
relaxation occurring in the amorphous phase outside the crystallite in
the crystallization process.