Heat Treatment of Metals ›› 2025, Vol. 50 ›› Issue (5): 79-85.DOI: 10.13251/j.issn.0254-6051.2025.05.013

• MATERIALS RESEARCH • Previous Articles     Next Articles

Growth kinetics of intermetallic compounds at interface of 4343/AZ31B/4343 alloy laminate

Liu Hongjie1, Li Chen1, Wu Xinyuan1, Liang Wei1,2   

  1. 1. School of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan Shanxi 030024, China;
    2. Analysis and Test Center, Taiyuan University of Technology, Taiyuan Shanxi 030024, China
  • Received:2024-12-12 Revised:2025-04-04 Published:2025-06-25

Abstract: In order to solve the problem of intermetallic compounds produced during diffusion annealing of 4343/AZ31B/4343 alloy laminate, the growth kinetics of intermetallic compounds at the interface of 4343/AZ31B/4343 alloy laminate was studied with 1060/AZ31B/1060 alloy laminate as the control group. Two kinds of laminates were diffusion annealed between 200-400 ℃ for 0.5-3.0 h, respectively. The thickness of intermetallic compound layers at different diffusion annealing temperatures and time was obtained through BSE characteristic and EDS line scanning of the Mg-Al interface. The diffusion kinetics equation was derived, and the growth kinetics models of intermetallic compounds for two kinds of laminates were established based on the obtained thickness of the intermetallic compounds. Comparing the model calculated values with the actual results, it can be seen that the model can simulate the growth of intermetallic compounds during the actual diffusion annealing process, and provide a theoretical basis for the heat treatment of laminates. In addition, in the annealing experiment at 250 ℃ for 0.5 h, there is no intermetallic compound in the 4343/AZ31B/4343 alloy laminate, while 1060/AZ31B/1060 alloy laminate shows a layer of intermetallic compounds with uniform thickness, showing that 1060/AZ31B/1060 alloy laminate is more prone to the precipitation of intermetallic compounds at 250 ℃. During the diffusion annealing process at higher temperatures, both laminates produce two types of intermetallic compounds, with Al3Mg2 on the Al side and Mg17Al12 on the Mg side.

Key words: magnesium aluminum alloy laminate, annealing treatment, intermetallic compounds, growth dynamics

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