Effect of vacuum on solidification process and microstructure of LFC magnesium alloy Effect of vacuum on solidification process and microstructure of LFC magnesium alloy

Effect of vacuum on solidification process and microstructure of LFC magnesium alloy

  • 期刊名字:中国有色金属学会会刊(英文版)
  • 文件大小:
  • 论文作者:LIU Zi-li,LIU Xi-qin,XU Jiang,
  • 作者单位:College of Materials Science and Engineering ,School of Materials Science and Engineering
  • 更新时间:2022-10-15
  • 下载次数:
论文简介

Lost foam casting (LFC) is regarded as a cost-effective, environment-friendly vital option to the conventional casting process for production of near-net shape castings with high quality. Effect of vacuum on the solidification process and microstructure of LFC magnesium alloy were explored. The results indicate that vacuum plays a very important role in the heat transfer during mould filling and solidification periods, it increases the cooling rate of the filling melt, but greatly decreases the cooling rate of the casting during solidification period, and the solidification time of the casting is greater than that without vacuum. The microstructure of LFC magnesium alloy is rather coarse. Compared with that without vacuum, the microstructure of the LFC magnesium alloy under vacuum is more refined and has less precipitated β-phase, which is formed at the grain boundry and around the Al-Mn compound particle.

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