Mechanical Properties of Extruded Bars of Gas Atomized AZ31+1wt%MM Alloy Powders

진공가스분무한 AZ31+1%MM합금 분말 압출재의 기계적 성질

  • Kim, Yeon-Wook (Department of Materials Science and Engineering, Keimyung University) ;
  • Do, Dal-Hyun (Department of Materials Science and Engineering, Keimyung University)
  • Published : 2000.04.20

Abstract

In this study, the powders of Mg-3wt%Al-1wt%Zn-1wt%MM alloy were produced under vacuum condition by the inert gas atomization and the rapidly solidified powders were consolidated by the vacuum hot extrusion. Then the structural change of powders during extrusion was investigated. The effects of misch metal addition to AZ31 on mechanical properties of extruded bars were also examined. During extrusion of the rapidly solidified powders, their dendrite structure was broken into fragments and remained as grains of 2 ${\mu}m$ size in extruded bar. The Mg-Al-Ce intermetallic compounds formed in the interdendritic regions of powders were broken finely, too. The yield stress, tensile strength and ductility obtained in as-extruded Mg-3wt%Al-1wt%Zn-1wt%MM alloy were ${\sigma}_{0.2}=325$ MPa, ${\sigma}_{T.S.}=417$ MPa and ${\varepsilon}=16.8%$. All of these improvements on mechanical properties result from the refined micostructure and second-phase dispersions.

Keywords