Related Experiment Video
Updated: Apr 30, 2026

Methods of Ex Situ and In Situ Investigations of Structural Transformations: The Case of Crystallization of Metallic Glasses
Published on: June 7, 2018
Bulk metallic glasses deform via slip avalanches.
James Antonaglia1, Wendelin J Wright2, Xiaojun Gu3
1Department of Physics and Institute of Condensed Matter Theory, University of Illinois at Urbana Champaign, 1110 West Green Street, Urbana, Illinois 61801, USA.
Researchers identified slip avalanches in metallic glasses, revealing distinct statistics and dynamics for small and large events. This finding supports a mean field model of shear transformation zones (STZs) as the primary deformation mechanism.
Area of Science:
- Materials Science
- Condensed Matter Physics
- Solid Mechanics
Background:
- Metallic glasses exhibit complex deformation behaviors under stress.
- Understanding the fundamental mechanisms of plastic deformation in amorphous materials is crucial.
- Previous models have struggled to fully capture the statistics and dynamics of deformation events.
Purpose of the Study:
- To characterize the nature, statistics, and dynamics of slip events in metallic glasses during slow deformation.
- To test a mean field model based on coupled shear transformation zones (STZs).
- To determine if the observed phenomena align with self-organized criticality.
Main Methods:
- Utilizing high temporal resolution experimental measurements.
- Applying a simple mean field model to simulate atomic rearrangements in coupled STZs.
- Extracting exponents and scaling functions describing slip event characteristics.
Main Results:
- Successfully extracted exponents and scaling functions for slip events.
- Observed distinct statistics and dynamics for small and large slip events, differing from predictions of self-organized criticality.
- Demonstrated strong agreement between experimental data and the mean field STZ model across multiple measures.
Conclusions:
- Slip avalanches of STZs are identified as the elementary mechanism for inhomogeneous deformation in metallic glasses.
- The findings exclude self-organized criticality as the governing principle for these deformation events.
- The study validates a mean field model for understanding plastic flow in metallic glasses.
Related Concept Videos
Stress-Strain Diagram - Brittle Materials
Imperfections in Crystal Structure: Point, Line and Plane Defects
Plastic Deformations
Plastic Deformations
Metallic Solids
All metallic solids exhibit high thermal and electrical conductivity, metallic luster, and...
Plasticity

