中国有色金属学报(英文版)
Transactions of Nonferrous Metals Society of China
Vol. 18 No. 3 June 2008 |
(Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China)
Abstract:The effects of pulsed magnetic field on the solidified microstructure of an AZ91D magnesium alloy were investigated. The experimental results show that the remarkable microstructural refinement is achieved when the pulsed magnetic field is applied in the solidification of AZ91D alloy. The average grain size of the as-cast microstructure of AZ91D alloy is refined to 104 m. Besides the grain refinement, the morphology of the primary -Mg is changed from dendritic to rosette, then to globular shape with changing the parameters of the pulsed magnetic field. The pulsed magnetic field causes melt convection during solidification, which makes the temperature of the whole melt homogenized, and produces an undercooling zone in front of the liquid/solid interface by the magnetic pressure, which makes the nucleation rate increased and big dendrites prohibited. In addition, primary -Mg dendrites break into fine crystals, resulting in a refined solidification structure of the AZ91D alloy. The Joule heat effect induced in the melt also strengthens the grain refinement effect and spheroidization of dendrite arms.
Key words: AZ91D magnesium alloy; grain refinement; pulsed magnetic field; solidified microstructure