Title of article :
Modeling of precipitation hardening in Mg-based alloys
Author/Authors :
Alexander Katsman، نويسنده , , Shalom Cohen، نويسنده , , Menachem Bamberger، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2007
Abstract :
This work deals with the development of
Mg-based alloys with enhanced properties at elevated
temperatures. This is achieved by precipitation of binary
phases such as MgZn2 and Mg2Sn during the aging of these
alloys. The aim of the present work is to develop and
calibrate a model for precipitation hardening in Mg-based
alloys, as different types of precipitates form simultaneously.
The modified Langer-Schwartz approach, while
taking into account nucleation, growth and coarsening of
the new phase precipitations, was used for the analysis of
precipitates’ evolution and precipitation hardening during
aging of Mg-based alloys. Two strengthening mechanisms
associated with particle-dislocation interaction (shearing
and bypassing) were considered to be operating simultaneously
due to particle size-distribution. Parameters of the
model, RNi and kr i, were found by fitting of calculated
densities and average sizes of precipitates with ones estimated
from experiments. The effective diffusion coefficients
of phase formation processes, which determine the
strengthening kinetics, were estimated from the hardness
maximum positions on the aging curves.
Journal title :
Journal of Materials Science
Journal title :
Journal of Materials Science