Title of article :
Mesoscale modeling of amorphous metals by shear transformation zone dynamics Original Research Article
Author/Authors :
Eric R. Homer، نويسنده , , Christopher A. Schuh and Thomas W. Eagar.، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2009
Abstract :
A new mesoscale modeling technique for the thermo-mechanical behavior of metallic glasses is proposed. The modeling framework considers the shear transformation zone (STZ) as the fundamental unit of deformation, and coarse-grains an amorphous collection of atoms into an ensemble of STZs on a mesh. By employing finite element analysis and a kinetic Monte Carlo algorithm, the modeling technique is capable of simulating glass processing and deformation on time and length scales greater than those usually attainable by atomistic modeling. A thorough explanation of the framework is presented, along with a specific two-dimensional implementation for a model metallic glass. The model is shown to capture the basic behaviors of metallic glasses, including high-temperature homogeneous flow following the expected constitutive law, and low-temperature strain localization into shear bands. Details of the effects of processing and thermal history on the glass structure and properties are also discussed.
Keywords :
Metallic glass , Shear transformation zone , Micromechanical modeling , Shear bands , Activated processes
Journal title :
ACTA Materialia
Journal title :
ACTA Materialia