Related Experiment Video
Updated: Feb 13, 2026

Determining Tribocorrosion Rate and Wear-Corrosion Synergy of Bulk and Thin Film Aluminum Alloys
Published on: September 11, 2018
Improved Formability of Mg-AZ80 Alloy under a High Strain Rate in Expanding-Ring Experiments
Shmuel Samuha1, Eyal Kahana2,3, Oren Sadot4
1Department Materials Engineering, NRCN, P.O. Box 9001, Beer-Sheva 84190, Israel. samuha@post.bgu.ac.il.
Abstract:
Magnesium alloys offer a favored alternative to steels and aluminum alloys due to their low density and relatively high specific strength. Their application potentials are, however, impeded by poor formability at room temperature. In the current work, improved formability for the commercial magnesium AZ80 alloy was attained through the application of the high-rate electro-magnetic forming (EMF) technique. With the EMF system, elongation of 0.2 was achieved while only 0.11 is obtained through quasistatic loading. Systematic microstructural and textural investigations prior, during and post deformation under high strain-rate experiments were carried out using electron back-scattered diffraction (EBSD) and other microscopic techniques. The analysis indicates that enhanced elongation is achieved as a result of the combination of deformation, comprising basal and non-basal slip systems, twinning and dynamic recrystallization. An adopted EMF-forming technique is tested which results in enhanced elongation without failure and a higher degree of dynamically annealed microstructure.
More Related Videos
Related Concept Videos
Reaction Rate
The mathematical representation of the change in the concentration of reactants and products, over time, is the rate...
What is an Experiment?
Related Rates
Speciation Rates
Thermal Strain
Shearing Strain

